Showing posts with label cancer. Show all posts
Showing posts with label cancer. Show all posts

Sunday, March 18, 2018

Top 12 Cancer-Fighting Foods

Cancer is a systemic disease with various causes, some of which include a poor diet, toxin exposure, nutrient deficiencies and to some extent genetics. One extremely important way to prevent and/or treat cancer is nutritionally, through eating a nutrient-dense diet and avoiding things that are known to increase cancer risk. But for many people navigating the modern-day food system often seems overwhelming. Ingredients found in ultra-processed foods are being blamed for everything health-related, from cancer and diabetes, to reduced kidney function and bone loss. Only adding to the confusion, sometimes even the way we cook otherwise-healthy foods puts them in the cancer-causing foods category.

Unfortunately, until food manufacturers are forced to clean up the ingredients they use in their products, it’s up to us to avoid the worst kinds and to choose cancer-fighting foods. Researchers have known about the dangers associated with some unhealthy habits and cancer-causing foods for decades, while others are just now emerging as possible culprits. Below I’m outlining the association between certain cooking techniques, unhealthy ingredients found in processed foods, and the risk for developing cancer.

In order to overcome their disease, many cancer survivors have been fortunate enough to use a combination of natural cancer treatments in conjunction with conventional medical treatments.  Today, the early combination of chemotherapy and nutrition therapy is able to save the lives of thousands of cancer patients. This duel approach can help support the entire body and mind in the healing process, which sometimes be long and very difficult. Certainly when it comes to cancer prevention, more research is still needed. But for now, I’ll share the types of foods and ingredients I’d recommend avoiding most, plus tips for how to transition to eating an anti-cancer diet.


Are You Eating Enough Cancer-Fighting Foods Every Day?

While we often think of the word “cancer” as one type of disease, this term actually encompasses over 100 different cellular disorders in the body. Cancer refers to uncontrolled cell division that leads to a tumor or abnormal cell growth. When abnormal cells divide without control, they can invade nearby tissues and spread to other parts of the body, including the blood and lymphatic systems.
What does work when it comes to lowering inflammation and fighting free radical damage? The key is consuming plenty of cancer-fighting foods with antioxidants and natural anti-inflammatory phytonutrients. This means avoiding packaged and processed foods and focusing on only those that do not contain antibiotics, chemicals or toxins. Buying foods that are organic, grass-fed, pasture-raised and additive-free can greatly lower the toxic load of your diet.

Findings from the 2010 European Prospective Investigation into Cancer and Nutrition (EPIC) that looked at dietary factors associated with higher cancer risks showed that there’s significant associations between cancer risk and low intakes of certain nutrients. (2) Data from the investigation that was published in the European Journal of Cancer showed an inverse association between higher intakes of vitamin C, carotenoids, retinol, α-tocopherol and fiber with overall cancer risk.

After following over 519,978 participants living in 10 European nations, results showed that those who most closely followed a style of eating similar to the Mediterranean diet had the most protection against cancer. High intake of cancer-fighting foods like vegetables, fruit, fish, calcium-rich foods and fiber was associated with a decreased risk of colorectal, lung and breast cancers, while red and processed meat intake, alcohol intake, unhealthy body mass index (BMI), and abdominal obesity were associated with an increased risk. Being physically active and obtaining enough vitamin D also helped lower cancer susceptibility.


Foods and Habits that Increase Your Cancer Risk

Inflammation is the underlying issue that dictates cancerous tumor initiation, progression and growth. Studies suggest that 30 percent to 40 percent of all kinds of cancer can be prevented with a healthy lifestyle and dietary measures! (3) And other sources claim that this number is in fact much higher, with around 75 percent of cancer cases being lifestyle-related.

What makes some foods carcinogens (in other words cancer-causing) and others cancer-fighters? Foods that potentially contribute to cancer can include any number of chemicals, pesticides, preservatives and additives. For example, these are some of the factors that cause certain foods to be very unhealthy— not only potentially increasing your risk for cancer, but also causing problems like allergies, leaky gut, obesity and inflammation:
  • Pesticides and Herbicides: Industrial farming practices have loaded our produce, air, water, soil and animals at the bottom of the food chain with noxious chemicals. The best way to avoid consuming pesticides is to buy organic and ideally locally-grown foods.
  • Animal Products with Hormones and Antibiotics: Conventional meat and dairy products are often produced using antibiotics and hormones which help increase production, but can also cause effects such as estrogen disruption once consumed. Don’t be fooled by “natural” or “free-range” labels, which don’t always say much about how food is produced. Buy pasture-fed, locally raised animal products that are labeled as hormone and antibiotic-free.
  • Added Sugar & Artificial Sweeteners: Recently studies have linked higher sugar diets to increased risk for certain types of cancer. Artificial sweeteners such as aspartame, saccharine and sucralose may generate damaging free radicals in the body. High fructose corn syrup, although manufacturers refer to it as a “natural” sweetener, is highly processed, artificial and capable of contributing to obesity and yeast growth, among other negative health effects.
  • Food Additives: Nitrates, sulfites, food dyes and coloring and MSG have all been linked to free radical damage in the body. The best way to avoid these is to stay away from products that contain unknown and unpronounceable ingredients.
  • Pasteurization: It’s not just milk that is pasteurized (heated to very high heats) in order to kill bacteria. Yogurts, fruit juices, and many of the foods in our grocery stores have been treated with a high heat process that destroys nutrients and generates free radicals in the body. Pasteurization is used as a substitute for proper sanitation and to unnaturally prolong the shelf life of foods.There isn’t much evidence directly linking pasteurization to cancer, but pasteurized foods can still be problematic when it comes to increasing inflammation and gut-related problems.
Here are examples of some cancer-causing foods you might not realize are in your diet:
1. Processed Meats
While quality meats, fish and dairy products can be included in an anti-cancer diet, processed meats are definitely something to avoid. The American Cancer Society states on their website that “The International Agency for Research on Cancer (IARC) has classified processed meat as a carcinogen, something that causes cancer. And it has classified red meat as a probable carcinogen, or something that probably causes cancer.” (4) A recent meta-analysis of 800 studies found evidence that eating 50 grams of processed meat every day (equal to about 4 strips of bacon or one hot dog) increased the risk of colorectal cancer by 18 percent.

Processed meats are those that have been treated, altered or preserved to improve taste and prolong freshness. They can contain additives such as nitrates and tend to be very high in sodium. A clue that is a meat is processed is if it’s been prepared in any of the following ways: salting, curing, smoking. Examples of processed meats include hot dogs, ham, bacon, sausage, and some deli meats/cold-cuts. (5)

2. Fried, Burnt & Overly-Cooked Foods
In early 2017, Britain’s Food Standards Agency launched a campaign to help people better understand, and to avoid, the toxin called acrylamide. Acrylamide is found in things like cigarette smoke and is also used in industrial processes like making dyes and plastics. What’s surprising is that acrylamide is also a chemical that forms on certain foods, especially starchy foods like bread, crackers, cakes and potatoes, when they are cooked for long periods at high temperatures. (6)

The International Agency for Research on Cancer classifies acrylamide as a “probable human carcinogen” based on data showing it can increase the risk of some types of cancer in lab animals. (7) Acrylamide is mainly found in highly-cooked plant foods like potato and grain products, such as French fries, potato chips, and to some extent coffee. The chemical reaction occurs when certain starchy foods are cooked above about 250° F. This causes sugars and the amino acid asparagine to create acrylamide.

Note: Acrylamide does not form (or forms at lower levels) in dairy, meat, and fish products.

3. Added Sugar
Sugar can do more than increase your calorie intake and contribute to an expanding waistline— high consumption of added sugar has also been associated with increased cancer risk. There’s evidence that added sugars, such as high fructose corn syrup, may increase the risk of esophageal cancer, small intestine cancer, colon cancer and breast cancer. (8, 9, 10) A number of studies have found that sugar not only contributes to problems like obesity and diabetes, but is also linked to increased growth of tumors and metastasis.
Here’s another reason to avoid too much sugar: studies have found that people getting 17 to 21 percent of calories from added sugar face a 38 percent higher risk of dying from cardiovascular disease compared to those who got just 8 percent of their calories from sugar. (11)

4. Foods High In Additives
A 2016 study published in Cancer Research discovered a link between common food additives and colon cancer. Researchers at Georgia State University’s Institute for Biomedical Sciences found that mice that regularly ingested the dietary emulsifiers called polysorbate-80 and carboxymethylcellulose experienced exacerbated tumor development and increased, low-grade inflammation and colon carcinogenesis. (12)

These emulsifiers act as “detergent-like” ingredients in the gut, significantly changing the species composition of the gut microbiome. Alterations in bacterial species can result in bacteria expressing more flagellins and lipopolysaccharides; in other words, changes in the microbiome can interfere with functions of the immune system, promote inflammation and increase harmful gene expressions. What types of processed foods and products contain these emulsifiers? Examples include dairy products such as ice cream, creamy beauty products, toothpaste, mouthwash, laxatives, diet pills, water-based paints, detergents and even vaccines.

5. Rice Products
Drinking water contaminated with arsenic can increase a person’s risk of lung, skin and bladder cancers. That’s why there are clear limits set for the amount of arsenic allowed in water. But what about the arsenic present in the food supply? Turns out, most Americans get more arsenic from the foods in their diet than from the water they drink. So is arsenic poisoning from foods like rice something you need to consider?

While babies potentially face the highest risk, excess arsenic isn’t good for any of us. A 2012 Consumer Reports investigation found arsenic in every brand of infant rice cereals it tested – nearly ten times the legal limit for drinking water! Subsequent testing was even more dire: just one serving of infant rice cereal can put children over the weekly maximum advised by Consumer Reports. (13)

According to the The Environmental Working Group’s (EWG) website, “Heavy metals like arsenic, cadmium and lead are naturally present in water and soil.  In some places, intense concentrations exist as a result of industrial pollution and decades of agricultural use of lead- and arsenic-based pesticides.” (11)

 Organizations like the EWG and the World Health Organization now recommend limiting consumption of rice and rice-based foods (including those containing rice flour) when possible and instead eat a varied diet of healthy lower-arsenic grains and sweeteners.
Just like with heart disease, diabetes, leaky gut syndrome and other autoimmune disorders, free radical damage or oxidative stress from inflammation is truly at the root of cancer formation. What does this mean in terms of choosing the very best cancer-fighting foods that you can? Lots of fruit and vegetables can help lower the risk of cancer and offer protective elements so these should be the bases of your diet. On top of that, obtaining enough healthy proteins and fatty acids keeps your immune system working properly and prevents muscle wasting, deficiencies, or hormonal and nerve problems.



Top 12 Cancer-Fighting Foods

1. Leafy Green Vegetables

Leafy greens are the cornerstone of any healthy diet since they’re exceptionally rich in vitamins, minerals, antioxidants and enzymes, yet very low in calories, fats, sodium and other toxins. Leafy greens of all kinds — nutritious spinach, kale, collard greens, romaine, arugula salad, watercress, etc. — are rich in antioxidants known to combat cancer, including vitamin C and beta-carotene (a type of vitamin A).

And the benefits keep coming; as natural sources of glucosinolates, they also contain antibacterial and antiviral properties, inactivate carcinogens, help reprogram cancer cells to die off, and prevent tumor formation and metastasis. These powerhouse chemicals are known to break down during the chewing and digestion process into biologically active compounds that prevent cancer cells growth, which are referred to as indoles, thiocyanates and isothiocyanates.

Isothiocyanates (ITCs) found in leafy greens, which are made from glucosinolates, have been reported to help detox your body at the cellular level. Add a handful of leafy greens to your lunch and dinner to increase your nutrient intake; to make obtaining them simpler, try juicing vegetables for near perfect health. Vegetable juices are very easy to digest and make yourself at home. The Gerson diet meal plan even advises cancer patients to drink 13 glasses of freshly prepared juice daily!

2. Cruciferous Vegetables

Cruciferous vegetables are known to be powerful cancer killers and some of the best vitamin C foods widely available. Many are rich in glutathione, known as the body’s “master antioxidant” since it has high free-radical-scavenging abilities. Nearly all members of the brassica family of cruciferous vegetables are nutrient-dense sources of a family of phytochemicals called isothiocyanates that are linked to cancer prevention. In addition to isothiocyanates, cruciferous veggies like cabbage and broccoli also contain sulforaphanes and indoles — two types of strong antioxidants and stimulators of detoxifying enzymes that protect the structure of DNA.

Add one or two kinds — including broccoli, cauliflower, cabbage or Brussels sprouts — to three mostly plant-based meals daily in the form of roasted veggies, soups or stir fries, or dip them into hummus or Greek yogurt for a healthy, fast snack. Additionally, many other vegetables are beneficial for lowering cancer risk, including onions, zucchini, asparagus, artichokes, peppers, carrots and beets.

3. Berries

The ORAC scores of nearly all berries are very high, making them some of the top high-antioxidant foods in the world. Blueberries, raspberries, cherries, strawberries, goji berries, camu camu and blackberries are easy to find and use in numerous types of recipes — which is good news considering they supply vitamin C, vitamin A and gallic acid, a powerful antifungal/antiviral agent that increases immunity.

Berries are especially rich in proanthocyanidin antioxidants, which have been observed to have anti-aging properties in several animal studies and are capable of lowering free radical damage. High amounts of phenols, zeaxanthin, lycopene, cryptoxanthin, lutein and polysaccharides are other berry benefits. Less familiar “superfoods”  mulberry, camu camu and goji berries have been used in traditional Chinese medicine since around 200 B.C. to increase immunity and energy, so look for those in powder or dried form in health food stores and online.

4. Brightly Orange-Colored Fruits and Veggies (Citrus Fruits, Squash, Sweet Potatoes, etc.)

Brightly colored pigments found in plant foods are a sure sign that they’re beaming with phytochemicals, especially carotenoid antioxidants. This is exactly the reason you want to “eat the rainbow” and vary the colors of the foods on your plate.
Carotenoids (alpha-carotene, beta-carotene, lycopene, lutein, cryptoxanthin) are derivatives of vitamin A found in many citrus fruits, sweet potatoes, berries, pumpkin, squashes and other plant foods. (14) One of the most researched is beta-carotene, an essential nutrient for immune functioning; detoxification; liver health; and fighting cancers of the skin, eyes and organs. Two nutrients that give these foods their signature dark hues include lutein and zeaxanthin, which have been shown to help prevent eye and skin-related disorders since they act as antioxidants that filter harmful high-energy blue wavelengths, protecting healthy cells in the process.

When it comes to carbohydrate-rich veggies, studies show that complex carbs, including sweet potatoes, carrots, beets, other tubers and whole-grain foods, is related to a reduced risk of several types of cancer, particularly of the upper digestive tract. This is likely due to a favorable role of fiber, but the issue is still open to discussion. In contrast, refined grain intake and high glycemic load foods are not apart of an anti-cancer diet. These have been associated with increased risk of different types of cancer, including breast and colorectal. (15)

5. Fresh Herbs and Spices

Turmeric, which contains the active ingredient curcumin, is one of the most powerful ingredients in an anti-cancer diet because it’s been shown to decrease tumor size and fight colon and breast cancer. Along with easy-to-use black pepper, turmeric absorption is enhanced and better able to fight inflammation. Aim for one teaspoon of turmeric powder and 1/4 teaspoon of black pepper or more daily, which can easily be used in a tonic drink, with eggs or in a veggie stir fry. You can also take curcumin supplements; aim for 1,000 milligrams daily.

Additionally, other herbs that act as immune system boosters include ginger, raw garlic, thyme, cayenne pepper, oregano, basil and parsley — which can easily be used in many recipes, juices, dressings and smoothies.

6. Organic Meats

Organic meats including beef or chicken liver are recommended on many cancer-fighting diets since they’re considered some of the most nutrient-dense foods on the planet and extremely high in vitamin B12. Consuming organic meats as part of a “nose to tail” approach to eating animal proteins provides minerals that help cleanse the liver and enhance the ability to remove toxins from the blood and digestive tract.

Detoxifying with rich sources of selenium, zinc and B vitamins helps purify blood; produce the bile needed to digest fats; balance hormones naturally; and store essential vitamins, minerals and iron. These mineral-rich foods can help counteract the effects of alcohol, prescription drugs, hormone disruptions, high triglyceride levels, low potassium, obesity and viral infections.

7. Cultured Dairy Products

Cultured dairy products are a rich source of “good bacteria” probiotics, which are microorganisms that promote a natural bacterial balance in your intestinal microflora and help increase immunity. Over 80 percent of your immune system is housed in your gut, so it’s no surprise that probiotic foods and supplementation can stop tumor growth and help cells renew.

One of the easiest ways to consume more probiotics is in their most natural state, which includes raw milk products such as cheese, kefir and yogurt. Raw and cultured are key here, since fermentation produces probiotics but high heat processing used to pasteurize dairy can damage many of the vital nutrients, including the enzymes, proteins and probiotics. Most dairy today is loaded with hormones, antibiotics, pain killers and pesticide residue so buying organic is also important.

Aim for six ounces of cultured dairy daily (probiotic yogurt, cottage cheese, goat milk kefir or amasai). Cottage cheese, which is rich in sulfur protein and saturated fats, was found to be especially beneficial as part of the Budwig diet for cancer protocolYou can also increase your probiotic food intake without dairy by consuming cultured vegetables like kimchi, sauerkraut, coconut kefir, kombucha or natto.

Cultured dairy is also a great source of calcium. Calcium, particularly when combined with Vitamin D3 form, may reduce the incidence of cancer by 35 to 60 percent. Calcium seems to be especially beneficial for preventing cancer and rectal cancers. (16) Some studies have also found that it helps reduce breast cancer and ovarian cancer risk.  Sunlight exposure and marine oils such as cod liver oil or krill oil are great sources of vitamin D that help with calcium absorption. Calcium should ideally be obtained from foods like organic dairy products (I recommend

8. Nuts and Seeds

Chia seeds and flaxseeds are two of the most nutrient-dense seeds in the world. They provide fiber, omega-3 fatty acids and a range of important minerals. Hemp seeds, sesame seeds, pumpkin seeds and sunflower seeds are also beneficial and full of healthy fatty acids, as are walnuts, brazil nuts and almonds. Their health benefits and are best sprouted and can be used easily in smoothies, baked goods and with yogurt. Aim for two tablespoons daily.

9. Healthy Unrefined Oils (Coconut, Flax, Cod Liver and Extra Virgin Olive Oil)

Did you know that your brain and nervous system control the function of your entire body and that about 60 percent of your nervous system is made up of fatty acids? The problem is that many of the conventional processed fats and oils widely consumed today are hydrogenated oils that are capable of destroying the membranes of our cells, leading to diseased cells and toxicity.
Refined and rancid fats create problems throughout your entire body, leading to lower immune function, cell congestion and inflammation that kicks off disease. Replace refined vegetable oils, hydrogenated oils and trans fats with quality oils, including flax oil, extra virgin olive oil, cod oil and coconut oil. These nourish your gut and promote better immune function, help you reach and maintain a healthy weight, plus flaxseed and cod liver oil contain essential omega-3 fatty acids that can help energize your cells. Olive oil contains phytonutrients that seem to reduce inflammation in the body. It may reduce the risk of breast and colorectal cancers.

10. Mushrooms

Nutritious mushrooms vary in terms of their benefits, taste and appearance since hundreds of mushroom species are in existence today, but all are known to be immune-enhancers and many have been used to fight cancer for centuries.(17Reishi, cordyceps and maitake in particular can improve immune function, fight tumor growth and help with cell regeneration. Look for them in capsule or tincture form, and cook with them whole whenever possible too.

11. Traditional Teas

Metastasis is the most deadly aspect of cancer and results from several connected processes including cell proliferation, angiogenesis, cell adhesion, migration and invasion into the surrounding tissue. Metastasis is the principal cause of death among cancer patients, so it’s one of the most important issues in cancer research today. Several clinical and epidemiological studies have reported that the consumption of green tea can help decrease cancer risk. Green tea contains major polyphenolic compounds, including epigallocatechin-3-gallate, which has been shown to inhibit tumor invasion and angiogenesis, which are essential for tumor growth and metastasis. (18)

Teas derived from the leaves of the plant Camellia sinensis are commonly consumed as beverages around the world, including green, black or oolong tea. While all traditional teas seem to be beneficial, the most significant effects on human health have been attributed to green tea, such as matcha green tea. It contains the highest percetange of polyphenolic compounds, catechin, gallocatechin and EGCG.

The antioxidant EGCG appears to be the most potent of all the catechins, and its anticancer effects have activity about 25–100 times more effective than that of vitamins C and E! EGCG has been reported to be linked to the modulation of multiple signaling pathways, finally resulting in the downregulation of expression of proteins involved in the invasiveness of cancer cells.

12. Wild-Caught Fish

According to a 2004 study conducted by researchers at the Richerche Institute of Pharmacology, higher fish consumption is another favorable diet indicator of better immune function. (19) The study, which investigated the cancer-fighting effects of the Mediterranean diet, found that people who reported eating less fish and more frequent red meat showed several common neoplasms in their blood that suggested higher susceptibility.

Wild and especially small fish, including salmon, mackerel and sardines are anti-inflammatory omega-3 foods that are correlated with better brain, hormonal and nervous system health. Omega-3 fatty acids exert anti-inflammatory effects, and therefore recent studies have connected them to cancer prevention and natural enhancement of antitumour therapies. (20) Evidence suggests a role for omega-3 fatty acid supplementation in cancer prevention and reducing symptoms of treatments like chemotherapy. Omega-3s have been shown to preserve muscle mass and function in chemotherapy cancer patients and to contribute to a reduced inflammatory response resulting from the treatment’s toxicity.

Other Ways To Increase Effectiveness of An Anti-Cancer Diet

1. Lower Your Toxin Load
An anti-cancer diet consists of:
  • Lowering your toxin intake.
  • Supporting the body’s cleansing and detoxifying processes.
  • Eating healthy and nutrient-rich foods to support all of your body’s functions.
First and foremost, you can take these steps to reduce or eliminate the following products and substances from your life in order to halt toxin accumulation and reduce free radical, cellular damage:
  • Electromagnetic Waves: Cell phones, TV’s, computer screens, microwaves—even the wiring in our homes and basic appliances emit constant electromagnetic frequencies or EMF’s that disturb the bioelectrical functioning of our bodies. Cell phone use has been linked to a host of cancer-promoting processes. Limit your exposure by getting rid of your microwave, as it is your largest source for EMF’s, and making use of headphones with your cell phone.
  • Commercial Health and Beauty Products: The things we put in our mouths and use on our skin or hair, such as commercial shampoos, makeup and cleansing products, are often loaded with potential carcinogens. Visit the Environmental Working Group’s SkinDeep database to look-up your favorite products and determine if you should switch to another brand.
  • Household Cleaners: Indoor environments are often concentrated sources of pollution. Lower your toxin load by switching to natural cleaners or making your own instead of using products that are filled with chemicals.
  • Unnecessary Medications: All medications pass through and burden the liver. High use of acetaminophen is rapidly overtaking alcohol as the number one cause of liver disease. Work with your physician to lessen the amount of medications you are taking.
  • Plastics: Compounds in plastic containers, plastic wraps, the lining of metal cans, and paperboard containers can all leach compounds that disrupt the neuroendocrine system. This is especially true when plastic is heated, which is why it’s smart not to microwave plastic containers, store very hot food in plastic, or leave plastic water bottles anywhere where they will become very hot (such as in your car).
You may also want to periodically try fasting to help with detoxification. Even if you eat healthy foods regularly, environmental toxins bombard you at all turns. The organs that are responsible for detoxification and elimination–the skin, respiratory system, kidney, liver and digestive tract–often get overburdened and re-circulate toxins in the bloodstream. Practicing a cleanse or detox every few months can help these organs “catch up” and dispose of toxins stored in cells and tissue. Colon and liver cleanses can be accomplished with a variety of herbs, green drinks and easily digested whole foods such as juiced vegetables or those that are lightly steamed.

2. Drink Clean Water
Our drinking (tap) water can contain hundreds of unregulated substances, from pesticides and heavy metals to hormones and other pollutants. Bottled water is even less regulated, which means it’s not necessarily a good alternative. Your best bet is buying a filter that can be used as home to remove chlorine, fluoride and other pollutants from the water you drink and cook with.

3. Cook Foods At Lower Temperatures & Avoid Burnt Food
  • Don’t fry your foods! Greatly reduce the amount of fast food, french fries, chips, cakes, cereals and crackers you eat.
  • It’s virtually impossible to completely eliminate acrylamide that can accumulate on fried foods. But eating a balanced diet mostly free of processed foods and avoiding a high-starch diet can greatly reduce acrylamide levels.
  • Frying, baking, broiling or roasting are more likely to create acrylamide. On the other hand, boiling and steaming appear less likely to do so. Longer cooking times and cooking at higher temperatures can increase the amount of acrylamide in foods further. 
  • Don’t store potatoes in the refrigerator. That can cause acrylamide levels to surge. If you’re planning on cooking potatoes at higher temperatures, soak the cut-up spuds first. Soaking in water for 2 hours before high-temp cooking can reduce acrylamide levels by nearly 50 percent. Even a simple 30-second rinse can slash acrylamide levels by 20-plus percent. (21)
I don’t eat much bread, but when I do eat an occasional sandwich or toast, I make sure it’s made with sprouted bread, such as Ezekiel bread. Additionally, I definitely avoid over-toasting or burning the bread! The Food Standards Agency says as a general rule of thumb, aim for a golden yellow color or lighter when toasting, roasting, frying or baking.

4. Avoid Processed Grains & Added Sugar
Our bodies make best use of food in its natural state, which is why added sugar or processed/refined grains are difficult to break down and can cause gut trouble. The more processed and altered that a food is, the more unnatural and harmful it becomes. Refined sugar, wheat flour, boxed pastas, frozen dinners, powdered cheese and heat-treated vegetable oils—these processed foods are at the heart of a whole host of diseases and disorders.

Wheat, soy and corn products are highly subsidized by the US government, making them very cheap and widely available for production of highly processed and refined products. Food allergies associated with these foods are subsequently on the rise and can contribute to leaky gut syndrome and improper nutrient absorption. These foods are also often loaded with pesticides, herbicides, GMOs and heavy metals. More and more, the seeds from which they are grown are genetically engineered. The solution? Buy organic, sprouted whole grains and avoid processed soy products.
  • Check ingredient labels to be sure you’re not consuming high amounts of added sugar/sweeteners. Brown rice syrup found in some snack bars and non-dairy beverages may contain high arsenic levels.
  • Be wary of foods that might seem healthy but are really not, such as low-fat or fat-free foods, dairy-free and gluten-free foods, rice milk and foods containing artificial sweeteners. Many times these foods contain chemical additives in order to replace fat, wheat or dairy ingredients.
  • Try working alternative grains like quinoa or buckwheat into some meals, rather than eating lots of bread, instant rice, pasta, cereal, etc.
  • Rinse, soak and sprout your grains. Rinse your rice and cook it like pasta to reduce the amount of antinutrients it will provide. According to a Cornell University researcher, rinsing brown rice until the water is clear (usually 5 to 6 washings), and then cooking in a ration of 1 cup of rice to 6 cups of water, can remove 40 to 55 percent of inorganic arsenic in rice. (22, 23) And researchers from the UK found that cooking rice in a coffee pot reduced arsenic by up to 85 percent. (24)
Consumer Reports testing found that basmati rice grown in California contained the lowest levels of arsenic; all types of rice, except sushi and quick-cooking rice, from Texas, Louisiana, and Arkansas contained the highest levels of inorganic arsenic in a Consumer Reports testing. (25)

5. Use Essential Oils
Frankincense essential oil (Boswellia serrata) has been clinically shown to be a vital treatment for various forms of cancer, including breast, brain, colon and prostate cancers. Frankincense has the ability to help regulate cellular epigenetic function, which positively influences genes to promote healing. Rub frankincense essential oil on your body (neck area) three times daily and take three drops internally in eight ounces of water three times daily as part of a natural prevention plan. Other helpful anti-inflammatory essential oils include clove, rose, tea tree and oregano oils.

6. Get Enough Sunshine and Vitamin D
 Vitamin D is a fat-soluble vitamin that acts similarly to a hormone in our bodies. The best way to naturally obtain enough is through direct exposure to the sun, although eating certain vitamin D-rich foods like salmon and eggs can help, as can taking a high-quality supplement.

Clinical research shows that vitamin D can help prevent cancer best when you acquire about 50–70 nanograms per milliliter daily. (26) Cover your bases of vitamin D3 through getting 20 minutes of sun exposure every day, ideally between 10 a.m. and 2 p.m. with 40 percent of your entire body exposed to the sun. You can also take an oral supplement containing around 5,000 to 10,000 IUs of D3 every day; I recommend an effective combination formula of astaxanthin and omega-3 fish oils with vitamin D3 taken together.
 
7. Boost Detoxification With Supplements & Herbs
Some experts recommend drinking alkaline water which you can create by adding lemon or lime juice and/or a few drops of hydrogen peroxide.To help with detoxification you may also want to increase your intake of raw foods and green juices.  Although fiber is an important part of digestion, elimination, detoxification and a source of probiotic support—too much fiber can stress a weakened or hyper-reactive immune system. Juicing, steaming and lightly cooking raw foods, using green powders and cutting back on or eliminating whole grains can ease digestion and make many nutrients more readily available.

Eating a healthy diet is number one when it comes to cancer prevention. But there are also certain herbs and supplements that have been shown to help lower inflammation, boost the immune system, and therefore help to decrease cancer risk. These include:
  • Alpha-linolenic acid (Omega-3 fatty acid): Omega-3 fatty acids are getting so much attention because the Western diet is so unbalanced with an overabundance of omega-6’s. Omega-3’s have a host of health benefits and research is still underway to validate their benefits in combating cancer.
  • Chorella, Blue-green algae and Spirulina:  These single-celled animals are a source of Vitamin B12 and bind with heavy metals, helping to eliminate them from the body.
  • CLA: Conjugated linoleic acid boosts the immune system and may reduce the risk of developing colon, rectal and breast cancers. (27)
  • Coriolus Mushrooms: These disease fighting mushrooms have specific polysaccharides that boost the immune system, reduce tumor growth and combat cancer. (28)
 
  • Folate/Vitamin B9: Folate (vitamin B9) is crucial to DNA production and has been found to be effective against breast, colorectal and pancreatic cancers.
  • Melatonin: Melatonin is a hormone that helps to regulate our sleep and waking cycles. This hormone’s levels are closely linked to immune system function. Getting at least 8 hours of sleep and reducing stress will boost your melatonin levels.

Cancer-Fighting Foods Recipes

The No. 1 thing to do immediately to protect yourself from cancer is to improve your diet. Focus on filling your plate with nutrient-dense vegetables first, and then add in all of the other components that make up a healthy diet.

Precautions Regarding An Anti-Cancer Diet

The quality of your diet is undoubtably linked to your overall health and ability to prevent cancer. However other factors are also important for cancer-prevention, such as exercising, avoiding medication and toxin exposure, not smoking or consuming too much alcohol, sleeping well and controlling stress. A variety of foods can be included in an anti-cancer diet, and your diet doesn’t need to be “perfect” to be healthy. Start by making one or two changes at a time to your diet, removing foods that you consume a lot of but that are known to increase cancer risk.

Final Thoughts on Cancer-Fighting Foods

  • Cancer-causing foods include those that contain pesticides, additives, added sugar or artificial sweeteners, processed meats, burnt foods, fried foods and other chemicals. Examples of cancer-causing foods and ingredients are: french fries, hot dogs, deli meats, sausage, ice cream, refined rice and other gains, high fructose corn syrup, processed vegetable oils, and trans-fats.
  • To follow an anti-cancer diet lower your toxin intake, support the body’s cleansing and detoxifying processes, get enough vitamin D, upgrade your water, and eat unprocessed nutrient-rich foods.
  • Some of the top cancer-fighting foods include cruciferous veggies, leafy greens, berries, orange and yellow veggies, herbs and spices, cultured dairy products, nuts, seeds and healthy fats like coconut or olive oil.



Sunday, February 25, 2018

Reversing Cancer: A Journey from Cancer to Cure


Reversing Cancer: A Journey from Cancer to Cure

 Paperback – April, 2004
by Gerald H. Smith (Author)

This book was borne out of a powerful personal journey involving the author’s wife being diagnosed with a stage III ovarian cancer. Faced with traditional medicine’s 14% to 20% treatment "success" rate, Dr. Smith was determined to reverse the "death" sentence imposed on his wife. By tracing the intelligent evolution of alternative cancer therapies, the author was able to formulate a treatment approach using alternative medicine integrated with conventional treatment. Doctor Smith’s 25 plus years of clinical experience with alternative approaches to healing guided him through numerous documents that provided the basis for his treatment protocol. The book provides an in-depth description of the effective, non-invasive advanced technologies that were used to build up his wife’s immune system and also destroy the ovarian cancer. The bonus of his research was two fold: First, it proved that the patient’s quality of life can be preserved even with use of chemo therapeutic agents and second, that the concepts discovered in solving his wife’s ovarian cancer can be applied to help reverse any type of cancer.

The contents focus on helping cancer patients and physicians define the underlying factors contributing to the cause of cancer and reasons for relapse. It also contributes new information on the key role mercury and dental infections play in the formation of cancer. The book also presents new technological advances to improve accuracy of selecting nutritional supplements. Another major find was Dr. Yoshiaki Omura’s advanced research, Selective Drug Uptake Enhancement Method, that targets affected areas with medications and nutrients by stimulating the appropriate acupuncture points.  The book offers an extensive resource for both cancer patients and physicians to guide them through the vast maze of alternative therapies. It also contains user-friendly inks to helpful websites to obtain essential products for the healing process. The information is also designed to empower cancer patients by teaching them how to remove toxic wastes, choose foods to regenerate and improve the immune system and use natural remedies to cope with the psychological component.  The reader is presented with Nobel Prize research that explains the true nature of cancer. The ultimate goal of this comprehensive book is to educate patients about the true nature of cancer in order to resolve their fears when being diagnosed with the big "C." The scientific model presented reveals the mechanism of cancer and gives patients the tools to assist in the reversing process. To convey all the above, the information was written in easy to understand language.

The Bi-Digital O-Ring Test performed by a licensed M.D., D.O., D.D.S., D.M.D., L.Ac., or O.M.D. trained by Dr. Yoshiaki Omura, M.D., Sc.D., is an early non-invasive diagnostic test for intractable medical problems with their safe and effective treatment. It can involve the detection and treatment of early stages of cardiovascular disease, Alzheimer's disease, Autism, and cancer (often long before any known laboratory test can detect any abnormality or malignancy). It may be the ultimate in preventive medicine available today. BDORT evaluation can diagnose many medical problems early, and can also help manage conditions such as malignant tumors, chronic severe pain, cardiovascular diseases, Alzheimer's disease, Autism and neuromuscular diseases.
This method can save and prolong lives, because of effective medicines can be determined and administered quickly. By the "Selective Drug Uptake Enhancement Method", developed by Dr. Omura, most of the effective medication can be delivered selectively to the pathological areas, reducing the drug going to normal tissue and thus minimizing side effects. Such precise, non-toxic, effective treatment customized to each individual can achieve amazing results in hours or days depending on the pathogenic factors unique to each individual.
Through virtual drug testing, by Omura's Bi-Digital O-Ring Test, harmful drug interactions among multiple beneficial drugs (taken together), allergies, and toxic doses can be detected and
avoided before administration.
Screening:
Most of the cancer & other malignancies can be screened in 5 minutes & after that the pathological diagnosis takes an additional 10 – 20 minutes for each malignancy.
Treatment:
Safe & effective treatment can be selected for each medical problem. For the cancer treatment increasing the normal cell telomere & or increasing longevity gene significantly can reduce cancer cell telomeres to practically zero & can inhibit cancer cellular activities safely & effectively & non-invasively.
Optimal Dose of Medicine:
In treating with any medicine, optimal dose is most important. If overdose is given, instead of improvement, the opposite effect will take place. Dr Omura will demonstrate all this during the meeting using participants. Many patients die from overdose of chemotherapy. An overdose of chemotherapy promotes the growth of cancer.
Acupuncture Point Localization & Stimulation:
Dr Omura will also discuss a simple method of stimulating a most important acupuncture point True ST 36 which increases normal cell telomere & longevity gene. His Bi-Digital O-Ring Test is the only method that can localize the exact location, shape, size & depth of the acupuncture point as well as the neurotransmitters inside the acupuncture point all non-invasively.
This is a rare opportunity to study with the Founder of the Bi-Digital O-Ring Test who performed the first acupuncture anesthesia outside of China for a surgical procedure in 1972 in New York University Hospital of Albert Einstein College of Medicine at .

EXAMPLES OF HOW BDORT MAY BE APPLIED:
- Diagnosis
- Treatment
- Material Evaluation
- Optimal Dosing
- Electromagnetic Field Effects
- Environmental Toxin Evaluation
- Selective Drug Uptake Enhancement
- Acupuncture Point Localization
- Meridian Location
- Shape, Diameter, and Depth of acupuncture points


CEREBROPHYSIOLOGICAL RESPONSE MECHANISM IN BI-DIGITAL O-RING TEST BY FREQUENCY ANALYSIS OF HUMAN BRAIN WAVES - EFFECT OF CHEMICAL SUBSTANCES
Noriyuki Tani D.D.S., Shigeyuki Tanaka, Masaru Ono and Yoshihiro Yagyu First Department of Prosthodontics Meikai University School of Dentistry 1-1, Keyakidai, Sakado-shi, Saitama Prefecture
 
ABSTRACT
The Bi-Digital O-Ring test (O-ring test) developed in 1978 by Y. Omura as a new diagnostic approach has gained a wide-spread recognition in many countries of the world as a clinically useful test. In spite of and contrary to the simplicity of its procedure, its mechanism has remained largely unknown. It is especially obscure what cerebro-physiological changes are induced or how sensitive the cerebral recognition level is. In other words, since a stimulant applied in the O-ring test or given by a chemical substance produces very feeble stimulation, it still remains unknown whether the reaction occurring in the O-ring test is identical to the conventionally-defined cerebral evoked response or whether the reaction is induced through a completely different response mechanism. To determine the mechanism on a cerebro-physiologial level, it is necessary to define the potentiality of this test as a human cerebral sensor as so described in 1965 by Tsunoda and in 1986 by Kikuchi et al. Our presentation at the Third International Symposium on Acupuncture and Elerctro-Therapeutics has confirmed the potentiality of the O-ring test as a human cerebral sensor, because the reaction could be recognized as a cerebral response to weak light of 80 luxs. This study was undertaken to further confirm our previous results. Experiment was carried out using the same experimental system as in our previous study presented at the symposium to confirm the existence of cerebral responses to non-contact stimulation with chemical substances delivered at a distance of 1 or 15cm from the stimulation points at the regions of the oral cavity and stomach in 10 subjects. The chemical substances used as stimuli consisted of potassium cyanide, arsenic, paraformaldehyde, methyl methacrylate monomer, vitamin C and toothpaste. The following results were obtained:
1. When stimulated by a conventional manner of stimulation, cerebral evoked potential tended to appear acutely at stimulation. In the O-ring test with chemical substances, the appearance of the response (integration of 10-second values )tended to be suppressed.
2. The cerebral responses produced by stimulation of the oral cavity and stomach in a resting state with closed eyes were not symmetrical over both sides. Especially at the d, ?, a and ß1 regions, the responses were dominant on the right temporal and left occipital areas. This finding does not agree with the earlier described symmetry of the cerebral response.
3. The characteristic finding in this experiment was the left-hemispheric dominance at the ß2 region unlike the right-hemispheric dominance at other regions.
4. A distinct difference was found between the responses by stimulation with harmful substances and those by stimulation with harmless substances. However, there were no substance-related differences between the group of harmful substances and that of harmless substances.
5. Distance-related differences were demonstrated in the intensity of cerebral responses. Stimulation at a distance of 1cm frontally to the oral cavity induced strong cerebral responses to methyl methacrylate monomer, vitamin C and toothpaste.
6. In stimulation with potassium cyanide, arsenic and paraformaldehyde, the difference in distance produced no differences in the intensity of responses. It is considered that since the both substance groups induced cerebral responses at either distance as described in 4, potassium cyanide, arsenic and paraformaldehyde induced cerebral responses to almost the same degree at either distance, which accounts for the lack of significant differences.
 
Dr. Yoshiaki Omura, MD is general practitioner and Cardiologist of more than 50 years of experience. He is also the president and founder of the International College of Acupunc-ture & Electro-Therapeutics, president and founder of the International Bi-Digital O-Ring Test Medical Association, and medical research director of the Heart Disease Research Foundation
Highlights of his contributions include:
 
· Director of Medical Research, Heart Disease Research Foundation, New York
 
· President, International College of Acupuncture and Electro-Therapeutics, New York
 
· Adjunct Prof. Dept. of Community and Preventive Medicine, New York Medical College, New York
 
· Prof., Non-Orthodox Medicine Dept., Ukrainian National Medical University, Kiev, Ukraine
 
· Former Visiting Research Prof., Dept. of Electrical Engineering, Manhattan College, New York
 
. Former Adjunct Prof. of Pharmacology, Chicago Medical School
 
· Former Adjunct Prof. of Physiology, Showa University of Medicine, Tokyo, Japan
 
· Founder and Editor-in-Chief, Acupuncture & Electro-Therapeutics Research, The International Journal
 
· President, Japan Bi-Digital O-Ring Test Association
 
· Former Attending Physician, Neuroscience Dept., New York Pain Center, Long Island College Hospital
 
· Former Consultant, New York Pain Center, Long Island College Hospital
 
Doctor of medicine - Medical School - Yokohama City University 1958
 
 


LIFE FELLOW OF THE ROYAL SOCIETY OF MEDICINE (LONDON, ENGLAND)

FELLOW PRESIDENT INTERNATIONAL COLLEGE OF ACUPUNTURE AND ELECTRO-PHARAPEUTICS

LIFE FELLOW, AMERICAN COLLEGE OF ACUPUNCTURE

LIFE FELLOW OF THE ROYAL SOCIETY OF MEDICINE (LONDON, ENGLAND)

LIFE FELLOW, DIPLOMATE AND EXECUTIVE MEMBER AMERICAN ASSOCIATION OF INTEGRATIVE MEDICINE

FELLOW PRESIDENT INTERNATIONAL COLLEGE OF ACUPUNTURE AND ELECTRO-PHARAPEUTICS

LIFE FELLOW, AMERICAN COLLEGE OF ACUPUNCTURE

LIFE FELLOW, DIPLOMATE AND EXECUTIVE MEMBER AMERICAN ASSOCIATION OF INTEGRATIVE MEDICINE

DIPLOMAT OF THE AMERICAN ACADEMY OF THE PAIN MANAGEMENT

FELLOW AND PRESIDENT OF THE INTERNATIONAL COLLEGE OF ACUPUNTURE AND ELECTRO-THERAPEUTICS

LIFE FELLOW, DIPLOMATE OF THE AMERICAN ASSOCIATION OF INTEGRATIVE MEDICINE
 
 
 
 

Radiotion Therapy

What is radiation therapy?

Radiation therapy uses high-energy radiation to shrink tumors and kill cancer cells . X-rays, gamma rays, and charged particles are types of radiation used for cancer treatment.

The radiation may be delivered by a machine outside the body (external-beam radiation therapy), or it may come from radioactive material placed in the body near cancer cells (internal radiation therapy, also called brachytherapy).

Systemic radiation therapy uses radioactive substances, such as radioactive iodine, that travel in the blood to kill cancer cells.

About half of all cancer patients receive some type of radiation therapy sometime during the course of their treatment.

How does radiation therapy kill cancer cells?

Radiation therapy kills cancer cells by damaging their DNA (the molecules inside cells that carry genetic information and pass it from one generation to the next). Radiation therapy can either damage DNA directly or create charged particles (free radicals) within the cells that can in turn damage the DNA.

Cancer cells whose DNA is damaged beyond repair stop dividing or die. When the damaged cells die, they are broken down and eliminated by the body’s natural processes.

Does radiation therapy kill only cancer cells?

No, radiation therapy can also damage normal cells, leading to side effects.

Doctors take potential damage to normal cells into account when planning a course of radiation therapy. The amount of radiation that normal tissue can safely receive is known for all parts of the body. Doctors use this information to help them decide where to aim radiation during treatment.

Why do patients receive radiation therapy?

Radiation therapy is sometimes given with curative intent (that is, with the hope that the treatment will cure a cancer, either by eliminating a tumor, preventing cancer recurrence, or both). In such cases, radiation therapy may be used alone or in combination with surgery, chemotherapy, or both.

Radiation therapy may also be given with palliative intent. Palliative treatments are not intended to cure. Instead, they relieve symptoms and reduce the suffering caused by cancer.

Some examples of palliative radiation therapy are:
  • Radiation given to the brain to shrink tumors formed from cancer cells that have spread to the brain from another part of the body (metastases).
  • Radiation given to shrink a tumor that is pressing on the spine or growing within a bone, which can cause pain.
  • Radiation given to shrink a tumor near the esophagus, which can interfere with a patient’s ability to eat and drink.

How is radiation therapy planned for an individual patient?

A radiation oncologist develops a patient’s treatment plan through a process called treatment planning, which begins with simulation.
During simulation, detailed imaging scans show the location of a patient’s tumor and the normal areas around it. These scans are usually computed tomography (CT) scans, but they can also include magnetic resonance imaging (MRI), positron emission tomography (PET), and ultrasound scans.

Computed Tomography Scanner. CT scans are often used in treatment planning for radiation therapy. During CT scanning, pictures of the inside of the body are created by a computer linked to an x-ray machine.

During simulation and daily treatments, it is necessary to ensure that the patient will be in exactly the same position every day relative to the machine delivering the treatment or doing the imaging. Body molds, head masks, or other devices may be constructed for an individual patient to make it easier for a patient to stay still. Temporary skin marks and even tattoos are used to help with precise patient positioning.

Patients getting radiation to the head may need a mask. The mask helps keep the head from moving so that the patient is in the exact same position for each treatment.

After simulation, the radiation oncologist then determines the exact area that will be treated, the total radiation dose that will be delivered to the tumor, how much dose will be allowed for the normal tissues around the tumor, and the safest angles (paths) for radiation delivery.

The staff working with the radiation oncologist (including physicists and dosimetrists) use sophisticated computers to design the details of the exact radiation plan that will be used. After approving the plan, the radiation oncologist authorizes the start of treatment. On the first day of treatment, and usually at least weekly after that, many checks are made to ensure that the treatments are being delivered exactly the way they were planned.

Radiation doses for cancer treatment are measured in a unit called a gray (Gy), which is a measure of the amount of radiation energy absorbed by 1 kilogram of human tissue. Different doses of radiation are needed to kill different types of cancer cells.

Radiation can damage some types of normal tissue more easily than others. For example, the reproductive organs (testicles and ovaries) are more sensitive to radiation than bones. The radiation oncologist takes all of this information into account during treatment planning.
If an area of the body has previously been treated with radiation therapy, a patient may not be able to have radiation therapy to that area a second time, depending on how much radiation was given during the initial treatment. If one area of the body has already received the maximum safe lifetime dose of radiation, another area might still be treated with radiation therapy if the distance between the two areas is large enough.

The area selected for treatment usually includes the whole tumor plus a small amount of normal tissue surrounding the tumor. The normal tissue is treated for two main reasons:
  • To take into account body movement from breathing and normal movement of the organs within the body, which can change the location of a tumor between treatments.
  • To reduce the likelihood of tumor recurrence from cancer cells that have spread to the normal tissue next to the tumor (called microscopic local spread).

How is radiation therapy given to patients?

Radiation can come from a machine outside the body (external-beam radiation therapy) or from radioactive material placed in the body near cancer cells (internal radiation therapy, more commonly called brachytherapy). Systemic radiation therapy uses a radioactive substance, given by mouth or into a vein, that travels in the blood to tissues throughout the body.
The type of radiation therapy prescribed by a radiation oncologist depends on many factors, including:
  • The type of cancer.
  • The size of the cancer.
  • The cancer’s location in the body.
  • How close the cancer is to normal tissues that are sensitive to radiation.
  • How far into the body the radiation needs to travel.
  • The patient’s general health and medical history.
  • Whether the patient will have other types of cancer treatment.
  • Other factors, such as the patient’s age and other medical conditions.
External-beam radiation therapy
External-beam radiation therapy is most often delivered in the form of photon beams (either x-rays or gamma rays). A photon is the basic unit of light and other forms of electromagnetic radiation. It can be thought of as a bundle of energy. The amount of energy in a photon can vary. For example, the photons in gamma rays have the highest energy, followed by the photons in x-rays.

Linear Accelerator Used for External-beam Radiation Therapy.
Many types of external-beam radiation therapy are delivered using a machine called a linear accelerator (also called a LINAC). A LINAC uses electricity to form a stream of fast-moving subatomic particles. This creates high-energy radiation that may be used to treat cancer.

Patients usually receive external-beam radiation therapy in daily treatment sessions over the course of several weeks. The number of treatment sessions depends on many factors, including the total radiation dose that will be given.

One of the most common types of external-beam radiation therapy is called 3-dimensional conformal radiation therapy (3D-CRT). 3D-CRT uses very sophisticated computer software and advanced treatment machines to deliver radiation to very precisely shaped target areas.

Many other methods of external-beam radiation therapy are currently being tested and used in cancer treatment. These methods include:
  • Intensity-modulated radiation therapy (IMRT): IMRT uses hundreds of tiny radiation beam-shaping devices, called collimators, to deliver a single dose of radiation (2). The collimators can be stationary or can move during treatment, allowing the intensity of the radiation beams to change during treatment sessions. This kind of dose modulation allows different areas of a tumor or nearby tissues to receive different doses of radiation.
    Unlike other types of radiation therapy, IMRT is planned in reverse (called inverse treatment planning). In inverse treatment planning, the radiation oncologist chooses the radiation doses to different areas of the tumor and surrounding tissue, and then a high-powered computer program calculates the required number of beams and angles of the radiation treatment (3). In contrast, during traditional (forward) treatment planning, the radiation oncologist chooses the number and angles of the radiation beams in advance and computers calculate how much dose will be delivered from each of the planned beams.
  • The goal of IMRT is to increase the radiation dose to the areas that need it and reduce radiation exposure to specific sensitive areas of surrounding normal tissue. Compared with 3D-CRT, IMRT can reduce the risk of some side effects, such as damage to the salivary glands (which can cause dry mouth, or xerostomia), when the head and neck are treated with radiation therapy (4). However, with IMRT, a larger volume of normal tissue overall is exposed to radiation. Whether IMRT leads to improved control of tumor growth and better survival compared with 3D-CRT is not yet known (4).
  • Image-guided radiation therapy (IGRT): In IGRT, repeated imaging scans (CT, MRI, or PET) are performed during treatment. These imaging scans are processed by computers to identify changes in a tumor’s size and location due to treatment and to allow the position of the patient or the planned radiation dose to be adjusted during treatment as needed. Repeated imaging can increase the accuracy of radiation treatment and may allow reductions in the planned volume of tissue to be treated, thereby decreasing the total radiation dose to normal tissue (5).
  • Tomotherapy: Tomotherapy is a type of image-guided IMRT. A tomotherapy machine is a hybrid between a CT imaging scanner and an external-beam radiation therapy machine (6). The part of the tomotherapy machine that delivers radiation for both imaging and treatment can rotate completely around the patient in the same manner as a normal CT scanner. Tomotherapy machines can capture CT images of the patient’s tumor immediately before treatment sessions, to allow for very precise tumor targeting and sparing of normal tissue.
    Like standard IMRT, tomotherapy may be better than 3D-CRT at sparing normal tissue from high radiation doses (7). However, clinical trials comparing 3D-CRT with tomotherapy have not been conducted.
  • Stereotactic radiosurgery: Stereotactic radiosurgery (SRS) can deliver one or more high doses of radiation to a small tumor (5, 8). SRS uses extremely accurate image-guided tumor targeting and patient positioning. Therefore, a high dose of radiation can be given without excess damage to normal tissue. SRS can be used to treat only small tumors with well-defined edges. It is most commonly used in the treatment of brain or spinal tumors and brain metastases from other cancer types. For the treatment of some brain metastases, patients may receive radiation therapy to the entire brain (called whole-brain radiation therapy) in addition to SRS.
    SRS requires the use of a head frame or other device to immobilize the patient during treatment to ensure that the high dose of radiation is delivered accurately.
  • Stereotactic body radiation therapy: Stereotactic body radiation therapy (SBRT) delivers radiation therapy in fewer sessions, using smaller radiation fields and higher doses than 3D-CRT in most cases. By definition, SBRT treats tumors that lie outside the brain and spinal cord. Because these tumors are more likely to move with the normal motion of the body, and therefore cannot be targeted as accurately as tumors within the brain or spine, SBRT is usually given in more than one dose (8). SBRT can be used to treat only small, isolated tumors, including cancers in the lung and liver (8). Many doctors refer to SBRT systems by their brand names, such as the CyberKnife®.
  • Proton therapy: External-beam radiation therapy can be delivered by proton beams as well as the photon beams described above. Protons are a type of charged particle. Proton beams differ from photon beams mainly in the way they deposit energy in living tissue. Whereas photons deposit energy in small packets all along their path through tissue, protons deposit much of their energy at the end of their path (called the Bragg peak) and deposit less energy along the way.
    In theory, use of protons should reduce the exposure of normal tissue to radiation, possibly allowing the delivery of higher doses of radiation to a tumor (9). Proton therapy has not yet been compared with standard external-beam radiation therapy in clinical trials (10, 11).
  • Other charged particle beams: Electron beams are used to irradiate superficial tumors, such as skin cancer or tumors near the surface of the body, but they cannot travel very far through tissue (1). Therefore, they cannot treat tumors deep within the body.
Patients can discuss these different methods of radiation therapy with their doctors to see if any is appropriate for their type of cancer and if it is available in their community or through a clinical trial.

Internal radiation therapy
Internal radiation therapy (brachytherapy) is radiation delivered from radiation sources (radioactive materials) placed inside or on the body (12). Several brachytherapy techniques are used in cancer treatment. Interstitial brachytherapy uses a radiation source placed within tumor tissue, such as within a prostate tumor. Intracavitary brachytherapy uses a source placed within a surgical cavity or a body cavity, such as the chest cavity, near a tumor. Episcleral brachytherapy, which is used to treat melanoma inside the eye, uses a source that is attached to the eye.

In brachytherapy, radioactive isotopes are sealed in tiny pellets or “seeds.” These seeds are placed in patients using delivery devices, such as needles, catheters, or some other type of carrier. As the isotopes decay naturally, they give off radiation that damages nearby cancer cells.

If left in place, after a few weeks or months, the isotopes decay completely and no longer give off radiation. The seeds will not cause harm if they are left in the body (see permanent brachytherapy, described below).

Brachytherapy may be able to deliver higher doses of radiation to some cancers than external-beam radiation therapy while causing less damage to normal tissue (1, 12).

Brachytherapy can be given as a low-dose-rate or a high-dose-rate treatment:
  • In low-dose-rate treatment, cancer cells receive continuous low-dose radiation from the source over a period of several days (1, 12).
  • In high-dose-rate treatment, a robotic machine attached to delivery tubes placed inside the body guides one or more radioactive sources into or near a tumor, and then removes the sources at the end of each treatment session. High-dose-rate treatment can be given in one or more treatment sessions. An example of a high-dose-rate treatment is the MammoSite® system, which is being studied to treat patients with breast cancer who have undergone breast-conserving surgery.
The placement of brachytherapy sources can be temporary or permanent (1, 12):
  • For permament brachytherapy, the sources are surgically sealed within the body and left there, even after all of the radiation has been given off. The remaining material (in which the radioactive isotopes were sealed) does not cause any discomfort or harm to the patient. Permanent brachytherapy is a type of low-dose-rate brachytherapy.
  • For temporary brachytherapy, tubes (catheters) or other carriers are used to deliver the radiation sources, and both the carriers and the radiation sources are removed after treatment. Temporary brachytherapy can be either low-dose-rate or high-dose-rate treatment.
Doctors can use brachytherapy alone or in addition to external-beam radiation therapy to provide a “boost” of radiation to a tumor while sparing surrounding normal tissue (12).

Systemic radiation therapy
In systemic radiation therapy, a patient swallows or receives an injection of a radioactive substance, such as radioactive iodine or a radioactive substance bound to a monoclonal antibody.

Radioactive iodine (131I) is a type of systemic radiation therapy commonly used to help treat some types of thyroid cancer. Thyroid cells naturally take up radioactive iodine.

For systemic radiation therapy for some other types of cancer, a monoclonal antibody helps target the radioactive substance to the right place. The antibody joined to the radioactive substance travels through the blood, locating and killing tumor cells. For example:
  • The drug ibritumomab tiuxetan (Zevalin®) has been approved by the Food and Drug Administration (FDA) for the treatment of certain types of B-cell non-Hodgkin lymphoma (NHL). The antibody part of this drug recognizes and binds to a protein found on the surface of B lymphocytes.
  • The combination drug regimen of tositumomab and iodine I 131 tositumomab (Bexxar®) has been approved for the treatment of certain types of NHL. In this regimen, nonradioactive tositumomab antibodies are given to patients first, followed by treatment with tositumomab antibodies that have 131I attached. Tositumomab recognizes and binds to the same protein on B lymphocytes as ibritumomab. The nonradioactive form of the antibody helps protect normal B lymphocytes from being damaged by radiation from 131I.
Many other systemic radiation therapy drugs are in clinical trials for different cancer types.
Some systemic radiation therapy drugs relieve pain from cancer that has spread to the bone (bone metastases). This is a type of palliative radiation therapy. The radioactive drugs samarium-153-lexidronam (Quadramet®) and strontium-89 chloride (Metastron®) are examples of radiopharmaceuticals used to treat pain from bone metastases (13).

Why are some types of radiation therapy given in many small doses?

Patients who receive most types of external-beam radiation therapy usually have to travel to the hospital or an outpatient facility up to 5 days a week for several weeks. One dose (a single fraction) of the total planned dose of radiation is given each day. Occasionally, two treatments a day are given.
Most types of external-beam radiation therapy are given in once-daily fractions. There are two main reasons for once-daily treatment:
  • To minimize the damage to normal tissue.
  • To increase the likelihood that cancer cells are exposed to radiation at the points in the cell cycle when they are most vulnerable to DNA damage (1, 14).
In recent decades, doctors have tested whether other fractionation schedules are helpful (1), including:
  • Accelerated fractionation—treatment given in larger daily or weekly doses to reduce the number of weeks of treatment.
  • Hyperfractionation—smaller doses of radiation given more than once a day.
  • Hypofractionation—larger doses given once a day or less often to reduce the number of treatments.
Researchers hope that different types of treatment fractionation may either be more effective than traditional fractionation or be as effective but more convenient.

When will a patient get radiation therapy?

A patient may receive radiation therapy before, during, or after surgery. Some patients may receive radiation therapy alone, without surgery or other treatments. Some patients may receive radiation therapy and chemotherapy at the same time. The timing of radiation therapy depends on the type of cancer being treated and the goal of treatment (cure or palliation).

Radiation therapy given before surgery is called pre-operative or neoadjuvant radiation. Neoadjuvant radiation may be given to shrink a tumor so it can be removed by surgery and be less likely to return after surgery (1).

Radiation therapy given during surgery is called intraoperative radiation therapy (IORT). IORT can be external-beam radiation therapy (with photons or electrons) or brachytherapy. When radiation is given during surgery, nearby normal tissues can be physically shielded from radiation exposure (15). IORT is sometimes used when normal structures are too close to a tumor to allow the use of external-beam radiation therapy.

Radiation therapy given after surgery is called post-operative or adjuvant radiation therapy.

Radiation therapy given after some types of complicated surgery (especially in the abdomen or pelvis) may produce too many side effects; therefore, it may be safer if given before surgery in these cases (1).

The combination of chemotherapy and radiation therapy given at the same time is sometimes called chemoradiation or radiochemotherapy. For some types of cancer, the combination of chemotherapy and radiation therapy may kill more cancer cells (increasing the likelihood of a cure), but it can also cause more side effects (1, 14).

After cancer treatment, patients receive regular follow-up care from their oncologists to monitor their health and to check for possible cancer recurrence. Detailed information about follow-up care can be found at NCI's Follow-up Medical Care page.

Does radiation therapy make a patient radioactive?

External-beam radiation does not make a patient radioactive.
During temporary brachytherapy treatments, while the radioactive material is inside the body, the patient is radioactive; however, as soon as the material is removed, the patient is no longer radioactive. For temporary brachytherapy, the patient will usually stay in the hospital in a special room that shields other people from the radiation.

During permanent brachytherapy, the implanted material will be radioactive for several days, weeks, or months after the radiation source is put in place. During this time, the patient is radioactive. However, the amount of radiation reaching the surface of the skin is usually very low. Nonetheless, this radiation can be detected by radiation monitors and contact with pregnant woman and young children may be restricted for a few days or weeks.

Some types of systemic radiation therapy may temporarily make a patient’s bodily fluids (such as saliva, urine, sweat, or stool) emit a low level of radiation. Patients receiving systemic radiation therapy may need to limit their contact with other people during this time, and especially avoid contact with children younger than 18 and pregnant women.
A patient’s doctor or nurse will provide more information to family members and caretakers if any of these special precautions are needed. Over time (usually days or weeks), the radioactive material retained within the body will break down so that no radiation can be measured outside the patient’s body.

What are the potential side effects of radiation therapy?

Radiation therapy can cause both early (acute) and late (chronic) side effects. Acute side effects occur during treatment, and chronic side effects occur months or even years after treatment ends (1). The side effects that develop depend on the area of the body being treated, the dose given per day, the total dose given, the patient’s general medical condition, and other treatments given at the same time.
Acute radiation side effects are caused by damage to rapidly dividing normal cells in the area being treated. These effects include skin irritation or damage at regions exposed to the radiation beams. Examples include damage to the salivary glands or hair loss when the head or neck area is treated, or urinary problems when the lower abdomen is treated.

Most acute effects disappear after treatment ends, though some (like salivary gland damage) can be permanent. The drug amifostine (Ethyol®) can help protect the salivary glands from radiation damage if it is given during treatment. Amifostine is the only drug approved by the FDA to protect normal tissues from radiation during treatment. This type of drug is called a radioprotector. Other potential radioprotectors are being tested in clinical trials.

Fatigue is a common side effect of radiation therapy regardless of which part of the body is treated. Nausea with or without vomiting is common when the abdomen is treated and occurs sometimes when the brain is treated. Medications are available to help prevent or treat nausea and vomiting during treatment.
Late side effects of radiation therapy may or may not occur. Depending on the area of the body treated, late side effects can include (1):
  • Fibrosis (the replacement of normal tissue with scar tissue, leading to restricted movement of the affected area).
  • Damage to the bowels, causing diarrhea and bleeding.
  • Memory loss.
  • Infertility (inability to have a child).
  • Rarely, a second cancer caused by radiation exposure.
Second cancers that develop after radiation therapy depend on the part of the body that was treated (16). For example, girls treated with radiation to the chest for Hodgkin lymphoma have an increased risk of developing breast cancer later in life. In general, the lifetime risk of a second cancer is highest in people treated for cancer as children or adolescents (16).
Whether or not a patient experiences late side effects depends on other aspects of their cancer treatment in addition to radiation therapy, as well as their individual risk factors. Some chemotherapy drugs, genetic risk factors, and lifestyle factors (such as smoking) can also increase the risk of late side effects.
When suggesting radiation therapy as part of a patient’s cancer treatment, the radiation oncologist will carefully weigh the known risks of treatment against the potential benefits for each patient (including relief of symptoms, shrinking a tumor, or potential cure). The results of hundreds of clinical trials and doctors’ individual experiences help radiation oncologists decide which patients are likely to benefit from radiation therapy.
A more comprehensive discussion of acute and late side effects from radiation therapy, as well as ways to cope with these side effects, can be found in the NCI publications Radiation Therapy and You: Support for People With Cancer and the Radiation Therapy Side Effects Series.

What research is being done to improve radiation therapy?

Doctors and other scientists are conducting research studies called clinical trials to learn how to use radiation therapy to treat cancer more safely and effectively. Clinical trials allow researchers to examine the effectiveness of new treatments in comparison with standard ones, as well as to compare the side effects of the treatments.

Researchers are working on improving image-guided radiation so that it provides real-time imaging of the tumor target during treatment. Real-time imaging could help compensate for normal movement of the internal organs from breathing and for changes in tumor size during treatment.

Researchers are also studying radiosensitizers and radioprotectors, chemicals that modify a cell's response to radiation:
  • Radiosensitizers are drugs that make cancer cells more sensitive to the effects of radiation therapy. Several agents are under study as radiosensitizers. In addition, some anticancer drugs, such as 5-fluorouracil and cisplatin, make cancer cells more sensitive to radiation therapy.
  • Radioprotectors (also called radioprotectants) are drugs that protect normal cells from damage caused by radiation therapy. These drugs promote the repair of normal cells exposed to radiation. Many agents are currently being studied as potential radioprotectors.
The use of carbon ion beams in radiation therapy is being investigated by researchers, but, at this time, the use of these beams remains experimental. Carbon ion beams are available at only a few medical centers around the world. They are not currently available in the United States. Researchers hope that carbon ion beams may be effective in treating some tumors that are resistant to traditional radiation therapy.

People with cancer who are interested in taking part in a clinical trial should talk with their doctor. A comprehensive list of current clinical trials is available on NCI’s website.
NCI's Cancer Information Service (CIS) can also provide information about clinical trials and help with clinical trial searches. Call the CIS at 1–800–4–CANCER (1–800–422–6237).
Selected References
  1. Lawrence TS, Ten Haken RK, Giaccia A. Principles of Radiation Oncology. In: DeVita VT Jr., Lawrence TS, Rosenberg SA, editors. Cancer: Principles and Practice of Oncology. 8th ed. Philadelphia: Lippincott Williams and Wilkins, 2008.
  2. Taylor A, Powell ME. Intensity-modulated radiotherapy—what is it? Cancer Imaging 2004; 4(2):68–73. [PubMed Abstract]
  3. Gaspar LE, Ding M. A review of intensity-modulated radiation therapy. Current Oncology Reports 2008; 10(4):294–299. [PubMed Abstract]
  4. Veldeman L, Madani I, Hulstaert F. et al. Evidence behind use of intensity-modulated radiotherapy: A systematic review of comparative clinical studies. Lancet Oncology 2008; 9(4):367–375. Erratum in: Lancet Oncology 2008; 9(6):513. [PubMed Abstract]
  5. Noda SE, Lautenschlaeger T, Siedow MR, et al. Technological advances in radiation oncology for central nervous system tumors. Seminars in Radiation Oncology 2009; 19(3):179–186. [PubMed Abstract]
  6. Detorie NA. Helical tomotherapy: A new tool for radiation therapy. Journal of the American College of Radiology 2008; 5(1):63–66.
  7. Fenwick JD, Tomé WA, Soisson ET, et al. Tomotherapy and other innovative IMRT delivery systems. Seminars in Radiation Oncology 2006; 16(4):199–208. [PubMed Abstract]
  8. Kavanagh BD, Timmerman RD. Stereotactic radiosurgery and stereotactic body radiation therapy: An overview of technical considerations and clinical applications. Hematology/Oncology Clinics of North America 2006; 20(1):87–95. [PubMed Abstract]
  9. Schulz-Ertner D, Jäkel O, Schlegel W. Radiation therapy with charged particles. Seminars in Radiation Oncology 2006; 16(4):249–259. [PubMed Abstract]
  10. Brada M, Pijls-Johannesma M, De Ruysscher D. Proton therapy in clinical practice: Current clinical evidence. Journal of Clinical Oncology 2007; 25(8):965–970.
  11. Olsen DR, Bruland OS, Frykholm G, Norderhaug, IN. Proton therapy—a systematic review of clinical effectiveness. Radiotherapy and Oncology: Journal of the European Society for Therapeutic Radiology and Oncology 2007; 83(2):123–132. [PubMed Abstract]
  12. Patel RR, Arthur DW. The emergence of advanced brachytherapy techniques for common malignancies. Hematology/Oncology Clinics of North America 2006; 20(1):97–118. [PubMed Abstract]
  13. Lam MG, de Klerk JM, van Rijk PP, Zonnenberg, BA. Bone seeking radiopharmaceuticals for palliation of pain in cancer patients with osseous metastases. Anti-cancer Agents in Medicinal Chemistry 2007; 7(4):381–397. [PubMed Abstract]
  14. Connell PP, Hellman S. Advances in radiotherapy and implications for the next century: A historical perspective. Cancer Research 2009; 69(2):383–392.
  15. Calvo FA, Meirino RM, Orecchia R. Intraoperative radiation therapy first part: Rationale and techniques. Critical Reviews in Oncology/Hematology 2006; 59(2):106–115. [PubMed Abstract]
  16. Travis LB, Hodgson D, Allan JM, Van Leeuwen FE. Second Cancers. In: DeVita VT Jr., Lawrence TS, Rosenberg SA, editors. Cancer: Principles and Practice of Oncology. 8th ed. Philadelphia: Lippincott Williams and Wilkins, 2008.
  • Reviewed: June 30, 2010
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Radiation Therapy Side Effect Series has practical steps and advice to help you manage nine (9) side effects from radiation therapy, so you feel better during treatment:
  • Diarrhea (PDF)
  • Fatigue (PDF)
  • Hair loss (PDF)
  • Mouth and throat changes (PDF)
  • Nausea and vomiting (PDF)
  • Sexuality and fertility in men (PDF)
  • Sexuality and fertility in women (PDF)
  • Skin changes (PDF)
  • Urination changes (PDF)
These colorful sheets are designed to help you learn how to manage these side effects. They include engaging quotes and questions to ask your health care provider, so you can learn more. Health conditions that may need urgent medical care are highlighted.