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Chelation process is not dependent on

In its simplest definition, a chelate is a compound that is bonded to a metal atom at two or more points. But what exactly does that mean — and what does it have to do with growing crops? As it relates to growing, a chelate is an agent that bonds to a micronutrient, thereby making the micronutrient more readily available for uptake in plant cells.

Most growers know about the three major nutrients that plants need: potassium, phosphorus and nitrogen. Because they are needed in relatively high quantities, potassium, phosphorus and nitrogen are referred to as macronutrients. Your plants need lower quantities of elements like iron, sulfur and calcium, so we refer to them as micronutrients.

The problem is that most of those necessary micronutrients are unavailable to your plants while in their basic form, because metals like iron and zinc have a positive charge, and the pores on your plants wherein the metals would enter have a negative charge.

What Is Chelation Therapy?

The positively charged micronutrients cannot enter through the negatively charged pores. There are also several naturally occurring chelating agents. The three most often used in grow nutrients are fulvic acid, humic acid and amino acids. Fulvic acid is soluble in all pH ranges, while humic acid is soluble in a pH range of 6.

Amino acids are most effective in pH ranges of 5. The different types of chelates also vary in the way they function in your hydroponic garden. Once this occurs, the plant unbinds the chelator from the nutrient and releases it back into the hydroponic solution, where it becomes free to chelate another nutrient and escort it into the plant for absorption.

The same concept is true of natural chelators. Fulvic and humic acids are not absorbed into the plant — they are released upon escorting the micronutrient ions into the plant. For a more in-depth look at chelation and nutrient absorption, read this free report.

Because of this, Advanced Nutrients has developed a line of chelated plant nutrients that not only provide your plants with the essential macro- and micronutrients they need to thrive, but also ensures the pH of your solution remains at a level optimal for maximum nutrient absorption. This technology is called Advanced Nutrients pH Perfect. All of the pH Perfect products contain crop-essential nutrients and chelates.

They also use a proprietary mechanism that brings your grow solution into the pH sweet spot, between 5. Another remarkable facet of the pH Perfect technology is its use of zwitterionic chelates. While certain chelates function better in higher pH ranges and others are better suited to low pH environments, zwitterionic chelates are able to function in a range of pH levels.

If you prefer three-part base nutrients, then the pH Perfect Grow-Micro-Bloom formulation is for you. Regardless of your personal grow style or experience level, the pH perfect line has you covered. Like This Article? Sign Up For Our Free Newsletter If you enjoyed this article and want to receive more info-packed content like it in the future, then sign up for our newsletter.

Next Post Previous Post. Chelation What Are Chelates? The Chelation Process Most growers know about the three major nutrients that plants need: potassium, phosphorus and nitrogen. This is where chelates come into play. Share the Post.

About the Author. Related Posts.Chelation therapy is a treatment used in alternative medicine. It's based on the process of chelation, in which chemicals are used to remove heavy metals and other substances from the body. Although chelation was originally used to treat conditions like lead poisoning, chelation therapy is now claimed to protect against heart disease and other major health problems.

In chelation therapy, a chemical substance is introduced into the body through an intravenous IV drip. Once it enters the bloodstream, the chemical substance binds to certain molecules such as metals or minerals and then removes those molecules from the body.

According to proponents of chelation therapy, eliminating excess or toxic metals or minerals from the body can enhance health and fight disease. The most common form of chelation therapy uses a synthetic amino acid called ethylene diamine tetra-acetic acid EDTA.

EDTA is known to remove substances such as lead, iron, copper, and calcium from the blood. It should be noted that the only FDA-approved chelating agents are available solely by prescription.

These agents are approved for use only in specific circumstances, such as in the case of lead poisoning or iron overload. Chelation therapy is said to aid in the treatment of atherosclerosis i. Since calcium deposits are found in artery-clogging plaques, it's thought that using chelation therapy to remove calcium deposits can restore healthy blood flow in the arteries. Some proponents suggest that EDTA can act as an antioxidant and protect against the damaging effects of chronic inflammation.

To that end, chelation therapy is also used to treat osteoarthritis and other inflammation-related conditions. In addition, chelation therapy is sometimes used to treat the following health issues:. Chelation therapy is also claimed to improve memory, treat diabetes-related complications, and promote recovery from stroke. Although chelation is known to be effective in the treatment of heavy metal poisoning, scientific support for chelation therapy's effects against other health conditions is very limited.

chelation process is not dependent on

For a report published in the Cochrane Database of Systematic Reviews inresearchers analyzed five previously published studies testing the effects of EDTA-based chelation therapy in patients with atherosclerosis-related cardiovascular disease.

In a research review published in BMC Cardiovascular Disorders inscientists looked at seven previously published studies that focused on the use of EDTA-based chelation therapy in the treatment of cardiovascular disease.

Furthermore, a report published in the American Heart Journal in concluded that chelation therapy "should now be considered obsolete" as a treatment for heart disease, given its potential to cause severe adverse effects. However, there's some evidence that chelation therapy may be beneficial to people who have suffered a heart attack.

In a National Institutes of Health-funded study published in Current Opinion in Cardiology infor instance, researchers evaluated the effectiveness and safety of EDTA-based chelation therapy in 1, people who had experienced a heart attack. Results of this study revealed that chelation therapy was associated with a significant reduction in the risk of issues such as stroke and hospitalization for angina. Chelation therapy appeared to have an even greater benefit in people with diabetes, the study's authors point out.

They also note that chelation therapy may improve health in heart attack patients by reducing oxidative stress. However, there were several problems with this study that make its results somewhat questionable.

Further randomized trials will be necessary to really assess whether chelation therapy may be helpful in people with heart disease. In some cases, chelation therapy may trigger serious side effects such as kidney damage and abnormally low blood levels of calcium.It is approved for the removal of metal ions in heavy metal poisoning. A clinical trial of effectiveness is based on statistics derived from use on human subjects over a period of time. Physicians using EDTA for atherosclerosis have recorded and documented an excess of reports, involving thousands of case studies and established without any doubt that EDTA Chelation improves circulation in atherosclerosis.

Yet, red tape has consistently blocked its acceptance and use in treatment in the United States. FDA Refuses to Examine Evidence Normally, when a drug is observed to improve a major killing disease, there is a rush to research and approve the drug in order to make it immediately available to the victims of the disease. As demonstrated by reference to existing scientific literature, EDTA therapy is a safe and effective treatment for atherosclerosis.

As a result of the review, the FDA gave manufacturers the opportunity to submit evidence to support EDTA effectiveness in treatment of occlusive vascular disorders. The manufacturers of EDTA chose not to respond. However, the American Academy of Medical Preventics did respond. At a time when official concern for escalating health care costs is heightened, chelation therapy fits the criteria espoused officially for reducing costs.

The therapy does not require hospitalization, or surgery, and the lasting effects of EDTA chelation equal or exceed those of alternate treatments. The FDA has received extensive documentation stating those conclusions. These critics of EDTA repeatedly refer to obsolete studies, written by scientists with little personal expertise in the use of EDTA for occlusive arterial disease.

Hundreds of thousands of coronary artery bypass surgical procedures have been performed without benefit of controlled studies to prove safety and effectiveness.

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Medical insurance companies, including Medicare, have traditionally paid for these very expensive surgical procedures without exception. The U. Public Health Service evaluated and recommended against the use of EDTA for the treatment of occlusive arterial disease. They based their conclusions on recommendations from cardiovascular surgeons, from the American Heart Association, and the American College of Cardiology, assuming that those groups represent experts in the field of EDTA therapy.

Politically powerful and traditional medical organizations have a vested interest in arterial bypass surgery. Many hospitals depend on these procedures for financial stability and the surgeons derive their income from bypass surgery and related treatment.

Yet, these are the very people asked to evaluate the effectiveness of an alternative treatment. Is there any way the FDA can claim to have obtained an unbiased opinion? Examples are lye, arsenic, and cobra venom.

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These substances induce poisoning in minimal quantities. One does not consider, usually, baking soda, aspirin, or adrenaline as poisons, at least in the relatively small dosages to which we are exposed. This brings up a key point of toxicology. That is, at what dosage, or concentration does a chemical begin to induce poisoning? For substances such as baking soda, the dose level has to be quite high before symptoms of illness begin.

Indeed, there is a quantitatively defined level for each and every substance beyond which toxic reactions occur. Therefore, every substance has a point of toxicity; even such beneficial things as water and vitamins. EDTA chelation, then, has toxicity at some measurable level.The father of modern biochemistry was the French-Swiss chemist, Alfred Werner; who in developed the theory of coordination compounds, today referred to as chelates. For this turning point in reclassifying inorganic chemical compounds, Werner received the Nobel Prize in He went on to create accounting for the process by which metals bind to organic molecules, which is the basis for chelation chemistry.

EDTA Chelation: Why Is It Being Denied Access To Victims of Heart Disease?

The first applications of Werner's monumental discovery were in the field of industrial production. Starting in the 's, many new materials such as paints were introduced, and in their manufacturing the elimination of heavy metal contamination was crucial. Citric acid was found to be helpful, but in the mid 's Germany was motivated to develop its own chelating material and not be dependent on importing citric acid. While the Germans created EDTA for their own purposes, they produced more than they could use and chose to sell it for industrial use in the global market.

When EDTA was first introduced on the market, medical applications were not yet being considered. However, with war approaching, military workers were looking for possible antidotes for the poison gases that posed an imminent threat.

After World War II, the new threat was atomic warfare. At the time, EDTA was starting to gain recognition for its effective cleansing of toxic materials from the body. As it was found to be more reliable than the British chelation materials that had been previously devised, the United States of America began producing and stockpiling large quantities of EDTA.

Inthe formation of the American Board of Chelation Therapy was formed to set parameters for the education and testing of physicians for competence in the administration of EDTA chelation. Cardio Renew, Inc. We thank you for your continued support. Required Disclaimer: The statements made about our product have not been evaluated by the Food and Drug Administration. The products and information on this site are not intended to treat, cure or prevent any condition or disease.

Cardio Renew is NOT intended for use by children. Read moreYet there is a very select few Medical Doctors and even fewer Naturopathic Doctors who have received proper training in this wonderful technology.

EDTA is administered directly into the blood veins and must be administered in a medical office, under the direction of a doctor who has been trained in EDTA IV chelation therapy. You may need to check out the International College of Integrated Medicine, icimed. This has been proven to be a false belief. It has been my experience as a doctor, that correctly consumed oral EDTA is readily absorbed into the bloodstream. Gordon has been using orally administered calcium EDTA for many years and is a pioneer in his field.

When I met Dr. Gordon, his skin texture was like a 25 year old. Yet, he was well into his 70s. He is still very much alive and well, with all mental capacities just like when he was only 25 years old, though now, a lot wiser.

He is now about 80 years old. I have found best absorption to be on an empty stomach, taken with a lot of warm nano water. Nano technology is just starting to become more popular. You can begin to find this both in and out of the health industry. Some examples outside the health industry are some high tech oils that bond deeper in the metals, providing greater rust resistance and deeper lubrication principles.

In the health industry, this technology is relatively new and very few manufacturers offer this option. When they do, the cost can be quite high.

An easier and more cost effective route is using nano water. Nano technology breaks these into smaller clusters of water molecules. Water is simply a medium that transports nutrients throughout the body. Using nano water molecules, will allow greater absorption of nutrients, without the need to purchase nano technology supplements.

Gelatine taken with food, instead of being absorbed through the stomach and duodenum linings, is mixed up with the food and therefore enters into the digestive tract where it is digested as food. EDTA, taken without food but with warm water, will have a greater chance of being absorbed into the blood stream, as opposed to consuming with food and entering via the intestinal tract. As administered, with in an IV or orally, it is combined with a lower stability constant mineral such as magnesium or calcium.

As it enters the blood stream and passes into cellular tissues, when it comes in contact with a mineral with a higher stability constant, it dumps the magnesium or calcium, and captures the other mineral into its claw. As such, some important vitamins and minerals are lost in the EDTA chelation process. This cannot be helped. Therefore, it is imperative, that replacement vitamins and minerals are given routinely. One per week.

We used 20 ml per EDTA treatment. Each bottle of this EDTA oral formula also contains all the vitamins and minerals needed to replace those lost, plus additional quantities. Therefore, the need for an additional replacement IV has already been built into this formula.

Assuming all the oral EDTA has been absorbed, it would take 7. Suppositories come packaged ten to a box. The suppositories can be administered in the privacy of your home.Chelation therapy could hold the key to the basic treatment of some of our greatest killer diseases, those of the cardiovascular system. The diseases, all characterized by the same basic abnormality, that is, narrowing and closing off of the blood vessels, can affect any organ of the body.

chelation process is not dependent on

Everyone is familiar with the clinical picture of coronary heart attacks and strokes hemorrhage of the brain however, many other diseases such as diabetes, thyroid, adrenal disturbance, digestive problems, senility, emphysema, arthritis, multiple sclerosis, etc.

Every cell of the body is totally dependent on the blood circulation to bring the essential nutrients to it and to take away the toxic products of metabolism. Any process that interferes with this constant flow will upset the delicate balance in the cell, change its ability to function properly, allow it to fall prey to toxic or hostile elements in the environment of that cell or tissue, and eventually may result in disease.

Fortunately, the circulatory system has a built-in safety mechanism to withstand a certain amount of obstruction. The flow through the average blood vessel is greater than the organ it supplies really needs. This great margin of tolerance is what permits young people to function without symptoms of clinical disease even though the process of arteriosclerosis has already produced measurable narrowing of arteries.

Certain genetic factors, as well as nutritional defects, environmental poisons, stress factors, air pollutants, etc. This shows that this disease does occur early in life.

The statistics were almost identical to those from the Korean conflict. All too often physicians have reassured many people, shortly before the catastrophe, that they are in the best of health.

Anyone who assumes that a person is in excellent health in this day and age, on the basis of a few normal tests, is being dreadfully naive.

No one develops a coronary attack or stroke or peripheral vascular thrombosis or clot formation without a background of slow, insidious disease of the vessels. Until this fact is universally recognized, medicine will not advance beyond the cookbook style of "symptom" therapy. The greatest advance in preventive medicine lies in the medical community's accepting this method of clearing the arteries of the deposits that close them BEFORE the symptoms, or attacks which make the disorder obvious to everybody.

This is where chelation therapy has its greatest future. An Example of Chelation The word chelate comes from the Greek word "chele" meaning "to claw" as a chicken. It refers to the way certain chemicals and body proteins can bind certain metallic ions that are positively charged to a negatively charged chelating agent.

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Most metals have a positive valence electrical charge of two. The chelating substance has negative charges of two that can combine with the positive ones of the metal and hold it fast in a pincers-like grip as a claw.

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This combination or "chelate," has entirely different properties from the metal alone or the chelating material alone. The binding of the metal is very sensitive to changes in temperature, acidity, metals, and other chemicals in the body. This means that although the metal is tightly held, a change in the above conditions can result in release of the metal and an exchange for another one, or binding of more or less the same metal.

In this way, chelators naturally present in the body can pick up metals from one location, transport them to another, and rapidly release them when the local tissue factors change. Iron and zinc are two important metals present in the body, and their transportation and migration in and out of cells are handled by the chelating process.

The iron in hemoglobin, which is the pigment present in the red blood cells and is the oxygen carrier is an example of a chelated metal. In the plant world, chlorophyll, the green pigment that converts carbon dioxide and water into starch, is a chelate of magnesium. This is a natural process and occurs in nature in many ways. It was not until that such chemical reactions were first discovered or explained and described by the biochemist. Now it is generally known and accepted that all the plant foods present in the soils are there in the chelated forms, and all the reactions such as we have just mentioned are chelated reactions.

This method is widely used and certainly there is more research being done on it now than any other subject in biochemistry. A computer MEDLARS search of literature reveals over 3, articles have been written on this chemical process sinceas well as several books. We believe very strongly in this method of therapy and feel it is a vital part of medicine of the future. That is why we believe so strongly in the "wholistic" approach to medicine.

We must understand the whole person and also understand the cellular concept so we can understand the chemical reactions in the individual cells. I think this is very important, and medicine of the future lies with the doctors who truly understand the biochemistry of the human body because, after all, the human body is similar to a "biochemical" factory. Medicine of today, by necessity, is "bio-medicine. For these reasons, I believe I have a right to my concept of medicine.Chelation therapy is a proven treatment for heavy metal poisoning.

However, these claims lack substantial scientific evidence. In this article, we explore how chelation therapy works, its proven and unproven benefits, and the potential risks and cost of undergoing it. Chelation therapy is a medical treatment for people experiencing heavy metal poisoning.

What to know about chelation therapy

Heavy metal poisoning occurs when the soft tissues of the body absorb toxic amounts of metal. Chelation therapy involves substances known as chelators. These substances bind to heavy metals and transport them out of the body. This process is known as chelation. According to a reviewheavy metal poisoning is a common health problem as a result of industrial, agricultural, and sewage waste.

It may also occur due to food consumption or the use of certain medications. The level of heavy metal toxicity is dependent on the duration of exposure, how much a person absorbed, the way in which absorption occurred, the type of metal, and the age of the person.

Some examples of the more common metals that may cause heavy metal poisoning include :. Symptoms of heavy metal poisoning may vary depending on the metal. However, some of the general symptoms that a person may experience include:. Chelation therapy involves the administration of drugs called chelators into the human body, typically through an intravenous IV drip.

History of Chelation and EDTA

Some examples of chelating medications are :. The chelators bind to the metal molecules in the bloodstream. They then filter out through the kidneys and leave the body in the urine. A doctor should only ever prescribe chelators in cases of metal poisoning. These medications have serious side effects and may sometimes bind to traces of metal that are essential in the human body. The use of chelation therapy has scientifically proven benefits in cases of metal toxicity.

However, some researchers and healthcare professionals use this treatment for other conditions in which science is yet to prove its benefits.

Oral iron chelating agents: improving quality of life in transfusion-dependent thalassemia

All chelation therapy that meets FDA approval requires a prescription, as a person must use it under the supervision of a medical professional. Below, we examine the proven and unproven claims relating to the use of chelation therapy for treating certain conditions. The National Capital Poison Center emphasize that chelation therapy is only necessary in cases of metal poisoning.

chelation process is not dependent on

An older review supports this view and highlights chelators as the preferred treatment for metal toxicity. Older research implies that autistic children contain higher levels of toxic metals in their bodies than children who are not autistic. For this reason, some people believe that chelation therapy may be useful in this instance to reduce the level of these metals.


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