Showing posts with label vitamin. Show all posts
Showing posts with label vitamin. Show all posts

Monday, August 28, 2017

NKCP :

NKCPイメージ

NKCP, a purified filtrate of Bacillus subtilis var. natto culture is a food based extract of “natto”, a Japanese traditional fermented food made from soybean. Purification to remove most of distinctive odor of natto and its vitamin K2 yields an easy-to-eat food that has a wide variety of uses as a functional food. NKCP contains proteolytic enzymes secreted by Bacillus subtilis var. natto (Bacillus subtilis var. natto-produced protein), which balance clotting mechanisms in the blood. 

In vitro and clinical studies have demonstrated that the consistent intake of NKCP over a prolonged period helps to maintain normal circulation. The safety of NKCP has been demonstrated in safety studies. *In vitro (Latin for "within the glass") refers to the technique of performing a given procedure in a controlled environment outside of a living organism.

Patents (Production process for purified filtrate of Bacillus subtilis var. natto culture)
Japan (No.3532503)

NKCP stands for Purified Natto Culture Filtrate. NKCP tablets launched April 2001. Daiwan Health Development Inc. (DHD) began export of NKCP on November 2001.

Development Background

The “People's Health Promotion Campaign for the 21st Century (Healthy Japan 21)” was launched in 2000 by the Ministry of Health, Labour and Welfare. The purposes of this campaign are to reduce premature death, prolong optimal health, and improve the quality of life. Simply put, it focuses on longevity accompanied by optimal health. Cardiovascular and cerebrovascular diseases account for about 30% of causes of death in Japan, about 25% in the world. To lower mortality rates while in the prime of life, it is very important to prevent cardiac and cerebrovascular diseases. 

A patient with cardiovascular disease may evade a fatal cardiovascular event, but eventually their quality and duration of life will be compromised.

Contemporary lifestyles choices are associated with an increased risk of thrombus formation and subsequent ischemic heart disease and cerebrovascular disease. It has recently been demonstrated that the etiology of travel induced thrombosis, also known as “economy class syndrome”, is Deep Vein Thrombosis (DVT), which may result in a pulmonary embolism. DVT may develop as a result of prolonged sitting in cramped quarters related to both air and auto travel. Additionally, common ailments such as stiff shoulder muscles and leg edema may be caused by insufficient peripheral circulation, caused by excess blood viscosity. The key to preventing DVT and insufficient peripheral circulation is to balance coagulation and fibrinolysis, to prevent thrombus formation and to enhance overall cardiovascular health and longevity. NKCP may be a critical component to achieve such balance.

Development

NKCP was developed based on the traditional Japanese food, natto. Natto contains constituents that enhance the fibrinolysis system in favor of clot lysis. Naturally occurring proteolytic enzymes produced by Bacillus subtilis var. natto dissolve clots in a balanced manner, without causing excessive blood thinning. Recent research has shown that other additional constituents from Bacillus subtilis var. natto produce a substance that acts to inhibit blood coagulation, thereby complementing the known fibrinolytic activity to improve blood viscosity. Based on these insights, it is probable that consistent consumption of natto may lower the overall risk of thrombus formation. However, compliance of such a recommendation may be poor, due to natto's potentially objectionable odor and flavor. Additionally, natto consumption may be contraindicated for patients on anti-coagulant therapy due to its high vitamin K2 content. Furthermore, the proteolytic enzyme content may vary greatly in commercially available natto, resulting in inconsistent anti-coagulant activity.

NKCP was therefore developed to provide a raw material for food products which corrects the drawbacks of natto. NKCP is produced by fermenting the bacillus in a liquid medium containing soybean extract and then partially purifying the peptidase. The odor, bacterial body and vitamin K2 content are reduced to a negligible level. NKCP is designed to contain a constant amount of peptidase.

Characteristics of NKCP

• NKCP is extracted from Bacillus subtilis var. natto and it is free of the undesirable odor and viscous texture of natto.
• NKCP's purpose is three-fold.
To function as (1) an anticoagulant (2) thrombolytic and (3) decreases blood viscosity.
• The majority of the vitamin K2 has been eliminated, therefore it is less antagonistic to other drugs such as warfarin.
• NKCP is standardized to contain specific levels of proteolytic enzymes secreted by Bacillus subtilis var. natto.
• The principal functional enzyme (protease) is stable at pH 6.0-10.0 and at temperatures 60℃ or below.
• The safety of NKCP has been confirmed in many animal and human studies.
• The production process for this purified filtrate of Bacillus subtilis var. natto culture is registered under Patent No. 3532503 in Japan.

Suggested daily dose
Image result for nkcp tablets

125-500mg/day


Mechanism of Action


NKCP is shown to have the following effects:
a. Inhibiting thrombus formation in vitro and in vivo. 
b. Decreasing the viscosity of blood in vitro and in vivo
c. Lysing thrombi in vitro and in vivo
*In vivo (of processes) performed or taking place in a living organism."fluid transport was measured in vivo"

The coagulation/fibrinolysis system is comprised of a series of complicated reactions designed to maintain the balance between healthy circulation and prevention of excess bleeding. Many factors can influence this system, however, it is not easily disrupted. In the event that the system shifts towards excess thrombus formation, it is challenging to return the system back to balance. Because it is difficult to lyse a formed thrombus, the emphasis should be placed on prevention of thrombus formation rather than on thrombolysis.

By inhibiting thrombus formation and decreasing blood viscosity, orally administered NKCP helps maintain balance, shifts blood away from clot formation, and enhances circulation throughout the body.



Scientific Data

1. NKCP Actions

Reduced risk of thrombus formation requires: 1) clot formation prevention 2) maintenance of normal blood viscosity and 3) lysing blood clots (thrombi).
NKCP, derived from Bacillus subtilis var. natto, has been shown to perform these three functions.

2. Supporting Scientific Data

(1) Anticoagulant effect

▶Anticoagulant effect of NKCP in human blood.
▶Anticoagulant effect of NKCP in rat model of thrombosis formation.

(2) Action of preventing increase in blood viscosity.

▶Effect of NKCP on the viscosity of human blood

(3) Thrombolytic effect.

▶Thrombolytic effect of NKCP on artificial thrombi.
In vivo thrombolytic effect of oral NKCP in experimental thrombolysis model.
▶Identification of proteases derived from Bacillus subtilis var. natto related to thrombolysis.

3. Clinical Study Results

▶Effect of Bacillus subtilis var. natto-derived protein on the human blood coagulation/fibrinolysis system.

Safety

Single-dose:
LD50>5,000mg/kg

Repeated-dose:
NOAEL
Males: > 1,325mg/kg body weight/day.

Females: > 1,541mg/kg body weight/day.

Mutagenicity:
Negative (± metabolic activation).

Antigenicity (guinea pigs): Negative for active systemic anaphylactic reaction (ASA) and passive cutaneous anaphylactic reaction (PCA).

Effect on bleeding time (rats):
In rats orally given NKCP, a 0.5mm incision was made in the tail tip after 1 hour to measure bleeding time. NKCP at 300mg/kg did not prolong the bleeding time.

Interaction with warfarin (rats):
NKCP at 250mg/kg was administered into the duodenum by the in situ loop method in rats, in which bleeding time was delayed by treatment with warfarin, and blood collected after 6 hours was measured for coagulation time. The warfarin treatment significantly prolonged the coagulation time in comparison with the control group, but no added delay of coagulation was observed in the warfarin + NKCP treatment group compared with warfarin treatment group.

Long-term administration (humans):
Twenty-three healthy adults were given NKCP at 250mg/day for 12 weeks, and no clinically significant adverse events were observed. There were no statistically significant changes in hematological or biochemistry tests.

Five healthy adults were given NKCP at 750mg/day for 6 consecutive weeks to study and observe changes in laboratory test values (hematological tests, biochemistry tests, and blood coagulation/fibrinolysis parameters) and adverse events. As a result, ELT shortened, t-PA decreased, and thromboplastinogen activity test (TAT) increased but all values were within normal range. In addition, no adverse events were observed, suggesting NKCP safety.

High dose administration(humans):
Eight healthy adults were given NKCP at 1,250mg/day for 7 consecutive days. Observation of clinical signs and laboratory tests were utilized to evaluate NKCP safety. There were no clinically significant adverse events. There were no abnormal changes in hematological or biochemistry tests.

Assays

1. Peptidase Activity (synthetic substrate method)

The sample solution is warmed at 37°C with the synthetic chromogenic substrate S-2251 (H-D-valyl-L-leucyl-L-lysine-p-nitroanilide dihydrochloride) as a substrate and the absorbance at 405nm is determined. The enzyme activity is defined as 1 unit when 1nmol of p-nitroaniline per minute is released.
*An assay is an investigative (analytic) procedure in laboratory medicine, pharmacology, environmental biology and molecular biology for qualitatively assessing or quantitatively measuring the presence, amount, or functional activity of a target entity (the analyte).

2. Bacillus subtilis var. natto-produced Protein

ELISA (enzyme-linked immunosorbent assay) uses rabbit-specific antibodies to the Bacillus subtilis var. natto-produced protein, responsible for the peptidase activity, to measure the amount of antigen reacting with the specific antibodies.

Anticoagulant effect of NKCP in human blood
Thirty micro litters of the test substance, NKCP, was added to 3mL of venous blood collected from healthy volunteers who had given informed consent, followed by inversion for mixing. The mixture was warmed at 37°C for 250 seconds and centrifuged, and the supernatant was measured for fibrin monomers (FM) indicative of thrombus formation, using a latex immunity analyzer. The concentration of FM was 160 ± 29.3μg/mL after addition of the control physiological saline and 6.0 ± 1.1μg/mL after addition of heparin sodium (0.5IU/mL). After addition of NKCP at concentrations from 0.005mg/mL to 0.5mg/mL, the concentration of FM decreased dose-dependently, but plateaued at 0.05mg/mL.
Anticoagulant effect of NKCP in human blood

The 54th Study Meeting of Rheology 2006;
Department of Legal Medicine, Dokkyo Medical University School of Medicine

Anticoagulant effect of NKCP in rat model of thrombosis formation
The anticoagulant effect of NKCP was studied in a rat model of thrombus formation. In this model, platelet aggregation was caused by injuring endothelial cells of the abdominal descending aorta to induce thrombus formation. NKCP was administered into the duodenum 2 hours after producing the thrombus formation model using in situ loop method. Blood was collected from the abdominal aorta 6 hours after administration to determine activated partial thromboplastin time (APTT) and prothrombin time (PT) as indicators of endogenous and exogenous coagulations, respectively. APTT was 33.5 ± 2.4 seconds for the control group (administered physiological saline), 52.0 ± 4.5 seconds for the NKCP 100mg/kg group, and 63.3 ± 2.9 seconds for the NKCP 250mg/kg group. A significant coagulation delay was observed in the NKCP treatment groups as compared to control. PT was 16.7 ± 0.5 seconds for the control group, 20.6 ± 0.9 seconds for the NKCP 100mg/kg group, and 21.3 ± 1.7 seconds for the NKCP 250mg/kg group. As with the APTT, a significant coagulation delay was observed in the NKCP group as compared to control. These results suggest NKCP inhibits thrombus formation.

Anticoagulant effect of NKCP in rat model of thrombosis formation
Research and Development Department, Daiwa Pharmaceutical Co., Ltd., 2001

Effect of NKCP on the viscosity of human blood

Eight healthy male adults who had given informed consent were given a single dose of placebo or NKCP at 1,250mg, and blood was collected at various points over 240 minutes to measure changes in blood viscosity. The viscosity of blood was determined by Hitosugi et al.'s method using an oscillating viscometer.
In the NKCP group, there was a significant decrease in blood viscosity at 105 and 180 minutes as compared to baseline. There was a significant decrease in blood viscosity in the NKCP group as compared to placebo at 180 minutes.

Effect of NKCP on the viscosity of human blood

Effect of NKCP on the viscosity of human blood:
Department of Legal Medicine, Dokkyo Medical University School of Medicine.

Thrombolytic effect of NKCP on artificial thrombi

A small amount of NKCP was added to test tubes containing an artificial thrombus in physiological saline. The thrombus began to lyse within several minutes and was almost completely lysed at 3 hours. To lyse is to cause dissolution or destruction of cells by lysins. Lysis is the disintegration of a cell by rupture of the cell wall or membrane.

Thrombolytic effect of NKCP on artificial thrombi

Thrombolytic effect of NKCP on artificial thrombi:
J. Pharmacol Sci 2005; 99: 247-251.

In vivo thrombolytic effect of oral NKCP in experimental thrombolysis model

The thrombolytic effect of NKCP on rat model was observed in a 14 week study. The NKCP was evaluated in two groups, in a mix of 0.2% and 1% in feed, as compared to a control group. Thrombolysis was evaluated using a He-Ne laser induced thrombosis model in mesenteric microvessels. The size of the artificially produced thrombus was measured from the time of formation to evaluate the thrombolytic effect of NKCP.

Thrombolytic activity clearly increased dose-dependently in the NKCP treatment groups compared with the control group. There was an 82% decrease in thrombus volume in the control group, as compared to 67% decrease in the 0.2% NKCP group, and a 51% decrease (statistically significant) in the 1% NKCP group. The extent of thrombolysis in the 1% group was equivalent to that seen in animals treated with a bolus intravenous infusion of 0.2mg/kg of tissue plasminogen activator (t-PA). Based on the body weight and feed intake of rats used in the study, the dose of NKCP was calculated to be about 160mg/kg/day for the 0.2% NKCP feed and 800mg/kg/day for the 1% NKCP feed.

In vivo thrombolytic effect of oral NKCP in experimental thrombolysis model

In vivo thrombolytic effect of oral NKCP in experimental thrombolysis model:
Pathophysiol Haemost Thromb 2003; 33: 138-143.

Identification of proteases derived from Bacillus subtilis var. natto related to thrombolysis

The thrombolytic effect of NKCP is attributable to a proteolytic enzyme named bacillopeptidase F, produced by Bacillus subtilis var. natto. Bacillopeptidase F is shown to be one of five proteases produced and secreted by Bacillus subtilis var. natto (Table 1).

Identification of proteases derived from Bacillus subtilis natto related to thrombolysis

Identification of proteases derived from Bacillus subtilis natto related to thrombolysis:
1)Journal of Bacteriology 1990; 172: 1019-1023
2)The Journal of Biological Chemistry 1990; 265: 6845-6850
3)Journal of Bacteriology 1990; 172: 1470-1477
4)Experientia 1987; 43: 1110-1111
5)The Journal of Biological Chemistry 2001; 276: 24690-24696
6)Mol Gen Genet 1990 May; 221(3): 486-490

Effect of Bacillus subtilis var. natto-derived protein on the human blood coagulation/fibrinolysis system

A total of 23 adults, including patients with metabolic diseases related to thrombosis, were given 250mg NKCP for two consecutive months. Coagulation/fibrinolysis parameters and symptoms were evaluated 1 and 2 months after starting treatment.

Euglobulin lysis time (ELT) significantly decreased from the baseline value at 1 and 2 months, and t-PA significantly increased at 2 months, showing the accelerated fibrinolysis system. However, the measured ELT and t-PA values were within the normal ranges. Fibrinogen degradation products (FDP) significantly decreased 1 month after starting ingestion but returned to the baseline value at 2 months.

Symptoms of shoulder stiffness significantly improved from baseline at 1 and 2 months.

Effect of Bacillus subtilis natto-derived protein on the human blood coagulation/fibrinolysis system

Effect of Bacillus subtilis natto-derived protein on the human blood coagulation/fibrinolysis system:
Journal of the Japanese Society of Biorheology 2004; 18 (1).

Monday, December 26, 2016

Alkaline water dangers: why you should not drink it

Alkaline water has been quite the buzz for many people. They are always wondering if the water can truly offer the stated health benefits or not. The manufacturers will at all times claim that their product is safe, but is it that safe? Any smart consumer would want to know not only about benefits of alkaline water, but also about its side effects. The best part is that nowadays people will post reviews about a new product stating the benefits and side effects to share their experience.

What is alkaline water?

Before getting into the whole idea that alkaline water is dangerous, we must understand what alkaline water really is. Alkaline water is commonly defined as a beverage that has a value greater than 7 on the pH scale. This means that the water is neither neutral nor acidic. Another name for alkaline water is ionized water.

The alkaline water is commonly characterized by having lots of electrons and a negative charge. The alkaline water is said to help in slowing down the aging process because of high electrone content. Whenever electrons are neutralized, the cell damage is reduced, which means that aging process is slowed down.

Where can a person buy alkaline water?

If you read about the benefits of alkaline water, the first instinct will be getting yourself a bottle or two of alkaline water. It is quite easy to lay your hands on alkaline water, as it is available in many stores around you. The other way would be converting your tap water to alkaline water. To do this, you need an alkaline water machine that does the conversion.

The possible negatives, risks and dangers of drinking alkaline water.

Having a balanced pH is crucial to your health

The pH of the body is measured in terms of the hydrogen ion concentration. If your body has a high number of hydrogen ions, then the body pH is said to be lower or acidic. Well, having a balanced pH is the core biochemical process and it’s extremely crucial that your body maintains an ideal or near ideal pH at all times.

What makes body pH so important after all? 

Well, if you’ve had the chance to study Chemistry in high school, you’d definitely know the answer to this question. But still, here is the answer for you. Our bodies are made of countless cells and cells have endless biochemical processes going on. These chemical processes are completed successfully by means of body enzymes. But, here is a catch! Body enzymes need a very precise pH to work properly. If the pH is more or less than the required pH, the enzymes will not work and the resultant biochemical processes will shut down as well! To be honest, a deranged body pH is a catastrophic condition and should be immediately treated because it can cause almost irreversible damage to body organs, such as kidneys, heart and brain.

Alkaline water, as the name suggests, tends to make your body alkaline. It’s true the body pH at several places, like blood, is slightly alkaline. So, drinking alkaline water once in a while may actually help strengthen these body systems. But, consuming it regularly is what you need to be very careful about. When you drink alkaline water too often, you’re actually overloading your body with a lot of alkali that your body doesn’t even need. This way, you’re increasing your body pH without any good reason and forcing the shutdown of different biochemical processes (1).

Alkaline water has nothing to do with cancer

The common selling point of alkaline water is that it can help in curing cancer and even prevent cancer. Keeping the body in the alkaline state for a long time has its side effects. Most people will end up having problems with their digestive systems and nutritional deficiencies. The nutritional deficiency will then result in having a weakened immune system.

The excessive alkaline water in the body will also result in overgrowth of pathogenic bacteria, yeast, and fungus. This may keep the immune system down for a long time. If the immune system is not rejuvenated it is very difficult to heal and/or prevent cancer.

Till date, there is no solid scientific which proof that using alkaline water can help, in any way, with any kind of cancer. In fact, the result of different clinical studies have proved just opposite - alkaline water has no benefit in treating or reversing cancer symptoms. In fact, till date, there is no human clinical trial that could support this idea.

Since there is no human evidence, we’ll have to stick to animal data. Even the results of data collected from animals have shown that use of alkaline water gives no benefit in treating cancer. Results of a clinical study conducted on rats showed that use of alkaline water didn’t affect the abnormal proliferation of cancer cells and had no effect on cancer burden.

Till we get more data, it can be safely stated that use of alkaline water has no benefit in treating cancer. In fact, using it may actually worsen the immune system.

Worsened nutrition deficiencies

Like your body enzymes, the function of gut depends on body pH as well. Gut performs a wide array of functions ranging from digestion to nutrient absorption. Take vitamin B12 for example. It binds to a protein from a saliva and passes to the stomach. In the stomach, due to stomach’s acidic pH, B12 leaves that protein and binds with another agent called the intrinsic factor. This process is extremely critical from the absorption of B12 because the intestine only recognizes intrinsic factor and absorbs only that B12 that is bound to intrinsic factor. That’s why, people using stomach acid decreasing medicines and having undergone gastric bypass, which decreases the level of stomach pH, can’t properly absorb vitamin B12.

Now, imagine you drinking alkaline water daily. It will definitely make the stomach pH more alkaline and will not let it perform its necessary steps in B12 absorption. And that’s only one nutrient. Relying heavily on alkaline water can significantly alter the absorption of a bunch of other nutrients like iron, calcium, folate and so on.

In fact, results of animal studies have proved that use of alkaline water can cause significant growth retardation due to poor nutrient absorption from the gut (2).

Alkaline water cannot be used with medication

According to research, close to 90% of Americans do depend on using over-the-counter medications for a condition of two. The worst part would be using the alkaline water to take medications. The alkaline water is highly reactive with most medications. The reaction between alkaline water and the medication can lead to the formation of dangerous by-products that are harmful to your health. It can be said that alkaline water is just ideal for those people who are completely healthy, which means that it is ideal for nobody as nobody is 100% healthy.

Again, the activation and absorption of drugs from the gut is dependent on ideal gut pH. If you’re messing up your gut pH, you’re more likely to make drugs ineffective too.

Alkaline promoting drugs are not effective in the longer run

The alkaline tablets are just the solid forms of alkaline water. The drugs are commonly used in the treatment of reflux problems. The idea is to have the drugs reduce the level of acidity in the stomach. The drugs are known to only work for a short time, but will not cure the stomach reflux problems. You need proper medication to eliminate such problems.

The alkaline water is sold by the multi-level marketers

Whenever a new health product or any other product, the multi-level marketers are likely to take it up and advertise it to anyone. The problem is that these marketers do not understand the effects of the product; their only objective is to sell it and gain the commissions. Those people that are gullible enough to believe them, they are likely to buy the product. Since many multi-level marketers are in the business of selling the alkaline water, people have started to doubt the information the marketers offer. You might even find the alkaline water being sold at very much discounted prices, which makes it even a bit more suspicious.

Common side effects associated with drinking alkaline water

Of course, you are likely to read about the many benefits of alkalinized water, but the disadvantages do outweigh the benefits. Not many people would be comfortable taking something that is likely to have a negative impact on their health rather than offering benefits. Here are some of the common side effects that a person drinking alkaline water is likely to face.

Digestion malfunctions

The common phrase the sellers would tell you is that the alkaline water helps in digestion to keep you healthy at all times. However, it is not true, as it actually hinders the normal digestion process. This is due to steep changes in pH levels. People who are over 60 years should not drink alkaline water as the digestion side effects are severe.

The digestion malfunctions are likely to lead to conditions such as hypochlorhydria. This is a sickness caused by calcium malabsorption, which gets worse with the continuous use of the alkaline water.

In fact, there is a well characterized syndrome due to the excessive alkalization of stomach. It is called milk alkali syndrome. In this syndrome, when the stomach acid is decreased a bit too much, the absorption of calcium gets compromised to dangerous levels. Decreased calcium levels can be dangerous because a normal calcium level is needed for proper brain, gut and muscle function (3).

Cardiovascular problems

The alkaline water was used on rats and the tests recorded. It was observed that the alkaline water had some severe and permanent side effects on the cardiovascular system of the rats. The same can be applied to humans who almost have the same composition. Your cardiovascular cells might be rejuvenated at first, but they will die when there is a continuous exposure to alkaline water.

The alkaline water can still lead to increased number of enzymes in the cardiovascular system. Many enzymes are likely to damage the muscles around the heart and other important parts of the cardiovascular system.

Metabolic abnormalities

Metabolism is an important process that must not be interfered with at any time. You need metabolism to get the necessary energy to stay healthy and do many other activities. The metabolism has to be regulated so as you get just enough energy whenever needed. The alkaline water is seen to cause metabolism abnormalities in a person. Such abnormalities can lead to diseases, such as metabolic alkalosis, which commonly causes discomfort in a person.

The other common side effects of alkaline water include conditions such as edema, mental confusion, and hypertension. No one would want to suffer from these conditions as they are frequently associated with severe complications.

The side effects of the alkaline water are likely to be more prevalent and severe if the water is not from the natural sources. The artificially alkalinized water has many chemicals added to make it more alkaline. It is best to use natural water as it will not have any additional harmful chemicals. Some of the side effects are not mentioned here, as sometimes the alkaline water will affect people differently based on their body composition.

Puts extra burden on kidneys

Kidneys are body’s major excretory structures. Another important function of kidneys is to keep your body pH within normal range. For instance, when the body pH increases- becomes more alkaline- the kidneys come into action and start to excrete more bicarbonate ions into the urine. That’s how kidneys function to keep the body pH close to ideal.

When you drink alkaline water, you’re actually making your body systems more alkaline and increasing the concentration of bicarbonate ions. At first, kidneys take on this problem and can keep the body pH normal by eliminating bicarbonate ions from body. But, once you start to rely heavily on such water, even kidneys fail to excrete all of the bicarbonate ions and this leads to metabolic alkalosis. When the body gets into alkalosis, kidneys start to function more than normal.

That’s a bad new for all, especially for those who are already suffering from some sort of kidney disease because this will further worsen the kidney damage. If you’re suffering from kidney disease, use of alkaline water is a BIG NO for you!

It can actually make you dehydrated

Using too much alkaline water can actually dehydrate your body quickly instead of hydrating it. When a lot of unnecessary ions make way to your gut, they actually squeeze out more water from it (Basic Chemistry Knowledge!). In fact, drinking too much alkaline water can dehydrate you at the cellular levels.

Types of alkaline water processing

If you are still yet to be convinced that the alkaline water is dangerous, wait until you go through the different types of alkaline water processing methods.

Free-standing electrical home method

These are the common units used by many people to make the alkaline water at home. The common brands include the Kaagen, i-Water, and many others. The water will pass through a carbon filter that removes the toxins and improve the taste. The problem arises when the filter becomes clogged and not removed. It will become the breeding ground for bacteria, parasites, and viruses. The water is finally passed over an electrified platinum-covered titanium plates. The process is meant to alkalinize the water. The platinum added to the water is toxic and harmful to the human health.

It is argued that this method will likely increase the chances of getting the Yin disease. Keep yourself away from the alkaline water to avoid such disease occurrence.

Water store alkaline water

You might be surprised what your water store is doing to get the best-selling alkaline water. The fresh water undergoes the process of reverse osmosis to form the alkaline water. In most cases, the also involves the addition of calcium powder or solution. Too much calcium in the body will of course have its own problems. The dominating problem is that you are likely to face the Yin disease again (4).

The process of reverse osmosis will not help the body hydrate at all. You are not to use such water for daily drinking.

The calcium used in this process is made from the coral calcium, which may contain some toxic metals. The water is likely to take up the toxic metals easily when the process of reverse osmosis is used. These toxic metals have been seen to affect the body cells and kidneys. Soon or later, you start to develop complications related to kidney failure.

Alkastream alkaline water unit

It is a different machine that is non-electric. The unit can be used under the sink being linked to the mains water supply. The unit will add magnesium compound into the water to alkalinize it. The process is meant to help in avoiding the expensive and dangerous platinum plates. However, the end product is still the same harmful alkaline water. The magnesium compound will ruin the poor quality water tap making it to cause complications in humans. You have to avoid this method as well.

Should I drink alkaline water?

If you want an unbiased opinion, the answer is NO. Reason being the side effects are way more than the good things about alkaline water. Drinking such water once in a while may help you with indigestion, but there is nothing more to it than this. It can’t miraculously cure any sort of cancer. Or it is not a magic elixir that is going to make all your health problems go away overnight. What makes the use of alkaline water even more question is lack of any scientific proof for its health benefits. 

If alkaline water is as healthy as the manufacturers claim it to be then why is there an absolute lack of clinical studies that can support this claim?

The alkaline water is likely to come with many health promises than many other health products. You should not be cheated to try alkaline water to deal with your issues. Some people are seen to take alkaline water to treat headaches or fatigue. Some of these conditions are caused by your lifestyle, and they can be eliminated with the choice of a good lifestyle.

You might be tempted to take the alkaline water in order to treat cancer or may be cardiovascular problems as stated by the marketers. The doctors can offer you the best medication that will deal with your condition. The use of alkaline water just makes things worse for the patient. For the heart issues, it is all about the diet changes you have to make. All is needed is to eat healthy each day and exercise more to have a healthy cardiovascular system.

Conclusion

As much as the alkaline water might seem the solution to problems such as Acidosis, the outcome is not always what you expect. The logical explanation to why doctors are yet to approve the use of the alkaline water is because of the likely side effects that people get. Most of the documented researches show that the tests were only carried on dogs and plants. 

How do you even translate the results of plants to be used on humans? So far, there has been no extensive research on the benefits that the alkaline water can do for the humans.

By now you know that the use of alkaline water is not the solution to your health problems. It is time to follow the recommended methods in order to live a healthy life. Consult a nutritionist who can help in coming up with an impressive diet plan for you to use. 

Notes:
(1) Scientific Research Studies on Ionized Alkaline Water
Physiological effects of alkaline ionized water: Effects on metabolites produced by intestinal fermentation... http://www.ionza.co.nz/content/Intestinal-fermentation-Alkaline_Water.pdf

Notes (2): Vitamin B12 ...Vitamin B12 (Cobalamin). The last vitamin that belongs the family of B vitamins is vitamin B12. It is also known by some other names like cobalamin, cynocobalamin, hydroxycobalmine- depending on the type of substance attached to the central structure. The properties of this vitamin are discussed as follows.

Food sources

The food sources of this vitamin include:

Vitamin B12 is unique in a respect that the colonic bacteria can synthesize this vitamin.
Animal meat and meat products are an important source. These sources include eggs, meat, milk, milk products and liver.
Sea foods are also important food source.
Vitamin B12 is not present in plants. That’s why the deficiency of this vitamin usually occurs in individuals that solely depend on plants as a source of their food.
Functions

Following are the functions performed by vitamin B12:

Vitamin B12 plays a very important role in the cellular metabolism of lipids, proteins, and carbohydrates.
It is also critical in the production of red bone marrow.
It also helps in the production of nerve sheaths and nerve proteins.
It also functions as a co-enzyme in the metabolism of methionine. Elevation of methionine is a marker for heart disease.
Side effects

It has very low chances of toxicity in healthy individuals. It can, however, trigger hematological abnormalities. It can cause weakening of vision. It can cause gastric distress, nausea, vomiting and diarrhea. It can also trigger skin allergies and skin reactions.

Recommended intake

The recommended intake of vitamin B12 (RDA - mcg/day) is as follows:

Infants 0-6 months: 0.4 mcg
Infants 7-12 months: 0.5 mcg
Children 1-3: 0.9 mcg
Children 4-8 years: 1.2 mcg
Children 9-13 years: 1.8 mcg
Older children and adults: 2.4 mcg
Pregnant women: 2.6 mcg
Breast-feeding women: 2.8 mcg

Notes (3) ...characterized syndrome due to the excessive alkalization of stomach...Systemic and local effects of long-term exposure to alkaline drinking water in rats . ...https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2517712/ 

Milk-Alkali Syndrome...Background:Milk-alkali syndrome is caused by the ingestion of large amounts of calcium and absorbable alkali, with resulting hypercalcemia. If unrecognized and untreated, milk-alkali syndrome can lead to metastatic calcification and renal failure. ...http://emedicine.medscape.com/article/123324-overview

Notes (4) Yin disease is a term to describe a constellation of symptoms that often appear together and are related to an excessively yin condition of the body.  This condition is very common today and is therefore worth discussing.  It is not recognized as a medical diagnosis at this time, unfortunately. 
 
HOW THE BODY STAYS YANG IN THE FACE OF STRESS AND TRAUMA ... http://drlwilson.com/articles/YIN%20DISEASE.htm