Showing posts with label heart disease. Show all posts
Showing posts with label heart disease. Show all posts

Thursday, April 16, 2015

Phytic Acid: Why Can't I Gain Weight, Why can't I lose weight, Why do I have arthritis, Why, Why, Why!


Tips For Consumers From Food Science

Phytic Acid In Food

There is phytic acid in food and it matters. Researchers have found that if you can reduce the phytic acid in your food, you can improve your iron absorption markedly. A 2003 study examined the change in iron absorption when phytic acid was removed from various grains. Check out the graph at right that displays the results.
You are seeing correctly. The study found that participants absorbed 1160% more iron when phytic acid was removed from wheat. Iron absorption was improved about twelve times.
Would you like to eat twelve pieces of bread (and get fat in the process) or just one? I like bread but that’s a lot of bread.

Phytic Acid In Grains

Do grains have phytic acid (phytates) and should we care?
Generally speaking, grains have high levels of phytic acid, a substance that reduces our absorption of minerals such as calcium, iron, zinc, and magnesium. As an example, compare the milligrams of phytic acid in grains to a random collection of other foods. (This is a small sample of phytic acid levels as listed in a review article by Harland and Oberleas in a 1987 article.) See the list here: phytic acid in grains.
The list will basically tell you that, yes, grains do have a lot of phytic acid.

Phytic Acid In Grains Remedies

To reduce phytic acid in grains, you may soak or sprout them. You may also bake them using a long rise time and good pH content. Many people make “soaked flour” breads to reduce phytic acid but this is not the optimal approach for flavor, texture, or phytic acid reduction. In the phytic acid paper there are a number of recipes that are far better and will open up a whole new world of baking. In the paper, I describe the research so that you know what techniques are best for you in your own kitchen.

Phytic Acid In Beans

Like grains, beans do have a high phytic acid content. There is also a wealth of scientific literature on reducing phytic acid in your beans. Some years ago I posted an article on the Internet about soaking beans, displaying the food science findings about the effect of temperature and time on reducing phytic acid. (Read it here: soaking beans.) People liked “seeing” the research in that article, that it inspired thephytic acid paper (which is available for purchase here if you are an information junkie like me).

Phytic Acid And Sprouting

Does sprouting grains reduce the phytic acid content of the grain? Absolutely.
To sprout your grains, you soak them overnight in whole form (the whole spelt berry for instance), drain them well, and place them in a container (usually a tray or a jar) with a a cheesecloth cover. In a day or two, they will begin to send out little tails, the sprouts. You grain seed is transforming itself from a seed to a seedling. The nutrition content of the seed changes, including a reduction in the phytic acid content.
Watch my video on this topic here: Phytic acid and sprouting.

Phytic Acid In Soy

When you turn over a tub of tofu or a carton of soy milk and marvel at the amount of magnesium in that bean curd, beware that precious little of it will make it into your brain cells. Likewise, little of the native calcium, zinc, or iron will nourish your body.
Soy is high in phytic acid which binds to these minerals and keeps you from digesting them. Check out a food science experiment on this topic and a video here: Phytic acid in soy milk.

Phytic Acid In Edamame

We know that soy has high levels of phytic acid. What about the immature form of soy, edamame?
Edamame is often enjoyed as a snack. You can purchase the pods and pop out the beans to eat as a crispy treat. Should we be concerned about the phytic acid? Find more information: Phytic acid in edamame.

Coconut Flour And Phytic Acid

With the increase in popularity of coconut flour in gluten-free diets, consumers have wondered if they should be concerned about phytic acid in coconut flour. There is not really any food science research on this topic to speak of but that in itself is telling. Read more and watch the video: Phytic acid in coconut flour.

Corn And Phytic Acid

Corn does contain phytic acid and it is actually an interesting grain because it is difficult to reduce the phytic acid in corn with typical techniques. Read more: Corn and phytic acid.

Phytic Acid White Paper

If food science and reducing phytic acid in your food interest you, check out the white paper on phytic acid. It displays the food science literature on phytic acid in grains and legumes (and the bit there is on nuts and seeds) and puts it together for you providing a kitchen process for you that is not only easy, but helps your food taste better. There are no “soaked flour” recipes in this paper (a popular approach to reducing phytic acid in flour). The method I provide is more efficient and has a better end-product. Check out the phytic acid paper.

Tips For Consumers From Food Science

Phytic Acid In Food

There is phytic acid in food and it matters. Researchers have found that if you can reduce the phytic acid in your food, you can improve your iron absorption markedly. A 2003 study examined the change in iron absorption when phytic acid was removed from various grains. Check out the graph at right that displays the results.
You are seeing correctly. The study found that participants absorbed 1160% more iron when phytic acid was removed from wheat. Iron absorption was improved about twelve times.
Would you like to eat twelve pieces of bread (and get fat in the process) or just one? I like bread but that’s a lot of bread.

Phytic Acid In Grains

Do grains have phytic acid (phytates) and should we care?
Generally speaking, grains have high levels of phytic acid, a substance that reduces our absorption of minerals such as calcium, iron, zinc, and magnesium. As an example, compare the milligrams of phytic acid in grains to a random collection of other foods. (This is a small sample of phytic acid levels as listed in a review article by Harland and Oberleas in a 1987 article.) See the list here: phytic acid in grains.
The list will basically tell you that, yes, grains do have a lot of phytic acid.

Phytic Acid In Grains Remedies

To reduce phytic acid in grains, you may soak or sprout them. You may also bake them using a long rise time and good pH content. Many people make “soaked flour” breads to reduce phytic acid but this is not the optimal approach for flavor, texture, or phytic acid reduction. In the phytic acid paper there are a number of recipes that are far better and will open up a whole new world of baking. In the paper, I describe the research so that you know what techniques are best for you in your own kitchen.

Phytic Acid In Beans

Like grains, beans do have a high phytic acid content. There is also a wealth of scientific literature on reducing phytic acid in your beans. Some years ago I posted an article on the Internet about soaking beans, displaying the food science findings about the effect of temperature and time on reducing phytic acid. (Read it here: soaking beans.) People liked “seeing” the research in that article, that it inspired the phytic acid paper (which is available for purchase here if you are an information junkie like me).

Phytic Acid And Sprouting

Does sprouting grains reduce the phytic acid content of the grain? Absolutely.
To sprout your grains, you soak them overnight in whole form (the whole spelt berry for instance), drain them well, and place them in a container (usually a tray or a jar) with a a cheesecloth cover. In a day or two, they will begin to send out little tails, the sprouts. You grain seed is transforming itself from a seed to a seedling. The nutrition content of the seed changes, including a reduction in the phytic acid content.
Watch my video on this topic here: Phytic acid and sprouting.

Phytic Acid In Soy

When you turn over a tub of tofu or a carton of soy milk and marvel at the amount of magnesium in that bean curd, beware that precious little of it will make it into your brain cells. Likewise, little of the native calcium, zinc, or iron will nourish your body.
Soy is high in phytic acid which binds to these minerals and keeps you from digesting them. Check out a food science experiment on this topic and a video here: Phytic acid in soy milk.

Phytic Acid In Edamame

We know that soy has high levels of phytic acid. What about the immature form of soy, edamame?
Edamame is often enjoyed as a snack. You can purchase the pods and pop out the beans to eat as a crispy treat. Should we be concerned about the phytic acid? Find more information: Phytic acid in edamame.

Coconut Flour And Phytic Acid

With the increase in popularity of coconut flour in gluten-free diets, consumers have wondered if they should be concerned about phytic acid in coconut flour. There is not really any food science research on this topic to speak of but that in itself is telling. Read more and watch the video: Phytic acid in coconut flour.

Corn And Phytic Acid

Corn does contain phytic acid and it is actually an interesting grain because it is difficult to reduce the phytic acid in corn with typical techniques. Read more: Corn and phytic acid.

Phytic Acid White Paper

If food science and reducing phytic acid in your food interest you, check out the white paper on phytic acid. It displays the food science literature on phytic acid in grains and legumes (and the bit there is on nuts and seeds) and puts it together for you providing a kitchen process for you that is not only easy, but helps your food taste better. There are no “soaked flour” recipes in this paper (a popular approach to reducing phytic acid in flour). The method I provide is more efficient and has a better end-product. Check out the phytic acid paper.

Wednesday, August 6, 2014

High Homocysteine Levels Predict Heart Attacks: B12 will Lower Homocysteine




High Homocysteine Levels Predict Heart Attacks: B12 will Lower Homocysteine

by Melanie Grimes

Research has shown that high levels of homocysteine in the blood can predict who will suffer a heart attack. High levels of homocysteine prevent dilation of blood vessels. Research showed that homocysteine levels were a better indicator of heart attacks and strokes than high cholesterol levels. The research on the amino acid homocysteine and heart disease is over ten years old. Following men with heart problems for six years, Norwegian researchers found that the higher the homocysteine levels, the greater the risk of death following a heart attack. Another study showed that the risk of a fatal heart attack increased four-fold in those with high homocysteine levels in the blood. Several nutrients have been shown to lower blood homocysteine and the associated risks.

The risk factor for other diseases also increases with elevated levels of homocysteine. Diseases such as gout, rheumatism, cancer, leukemia, kidney disease, lupus, and even depression, go up as the homocysteine levels rise. Some doctors suggest a link between homocysteine and the thyroid gland as a link to these non-vascular disease states.

A healthy level of homocysteine in the blood is below 15 micro mol/liter, but some doctors recommend levels below 7. A simple blood test can be used for diagnosis.

Nutrients that reduce homocysteine are B12, B9 (folic acid), B2 (riboflavin), and B6. These nutrients act through various chemical pathways to break down homocysteine in the blood. Adding zinc and Tri-methyl Glycine (TMG) to the diet is also recommended. Physical exercise will decrease homocysteine levels, as will losing weight and reducing stress. A vegetarian diet reduces homocysteine levels as well.

Smoking and drinking alcohol will increase the levels of blood homocysteine as well, along with estrogen deficiency and use of some pharmaceutical drugs, such as steroids. Coffee and tea also cause an increase.

Some people are genetically prone to elevated homocysteine levels, but by changing the diet, reducing alcohol consumption, increasing exercise and adding B vitamins, homocysteine levels can be lowered, and the risk of heart disease, stroke, and other chronic conditions can be eliminated.

http://www.healthy-heart-guide.com/homocyste...

http://www.medscape.com/viewarticle/468927

http://www.alsearsmd.com/homocysteine-levels...

http://www.plosmedicine.org/article/info:doi...


About the author

Melanie Grimes is a writer, award-winning screenwriter, medical journal editor, and adjunct faculty member at Bastyr University. She also teaches homeopathy at the Seattle School of Homeopathy and the American Homeopathic Medical College.
A trained homeopath, she is the editor of the homeopathic journal, Simillimum, and has edited alternative and integrative medical journals for 15 years. She has taught creative writing, founded the first Birkenstock store in the USA and authored medical textbooks.
Her ebook on Natural Remedies for the Flu is available at: 




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Friday, May 9, 2014

Chemotherapy Makes Cancer Far Worse

Woops! Study Accidentally Finds Chemotherapy Makes Cancer Far Worse

Anthony Gucciardi
Anthony Gucciardi
August 7th, 2012
hospitalblur5 235x147 Woops! Study Accidentally Finds Chemotherapy Makes Cancer Far Worse
A team of researchers looking into why cancer cells are so resilient accidentally stumbled upon a far more important discovery. While conducting their research, the team discovered that chemotherapy actually heavily damages healthy cells and subsequently triggers them to release a protein that sustains and fuels tumor growth. Beyond that, it even makes the tumor highly resistant to future treatment.

Reporting their findings in the journal Nature Medicine, the scientists report that the findings were ‘completely unexpected’. Finding evidence of significant DNA damage when examining the effects of chemotherapy on tissue derived from men with prostate cancer, the writings are a big slap in the face to mainstream medical organizations who have been pushing chemotherapy as the only option to cancer patients for years.
The news comes after it was previously ousted by similarly-breaking research that expensive cancer drugs not only fail to treat tumors, but actually make them far worse. The cancer drugs were found to make tumors ‘metasize’ and grow massively in size after consumption. As a result, the drugs killed the patients more quickly.
Known as WNT16B, scientists who performed the research say that this protein created from chemo treatment boosts cancer cell survival and is the reason that chemotherapy actually ends lives more quickly. Co-author Peter Nelson of the Fred Hutchinson Cancer Research Center in Seattle explains:
“WNT16B, when secreted, would interact with nearby tumour cells and cause them to grow, invade, and importantly, resist subsequent therapy.”
The team then complimented the statement with a word of their own:
“Our results indicate that damage responses in benign cells… may directly contribute to enhanced tumour growth kinetics.”
Meanwhile, dirt cheap substances like turmeric and ginger have consistently been found to effectively shrink tumors and combat the spread of cancer. In a review of 11 studies, it was found that turmeric use reduced brain tumor size by a shocking 81%. Further research has also shown that turmeric is capable of halting cancer cell growth altogether. One woman recently hit the mainstream headlines by revealing her victory against cancer with the principal spice used being turmeric.
This accidental finding reached by scientists further shows the lack of real science behind many ‘old paradigm’ treatments, despite what many health officials would like you to believe. The truth of the matter is that natural alternatives do not even receive nearly as much funding as pharmaceutical drugs and medical interventions because there’s simply no room for profit. If everyone was using turmeric and vitamin D for cancer (better yet cancer prevention), major drug companies would lose out.
Additional sources:

Shock study: Chemotherapy can backfire, make cancer worse by triggering tumor growth

Shock study: Chemotherapy can backfire, make cancer worse by triggering tumor growth
Scientists found that healthy cells damaged by chemotherapy secreted more of a protein called WNT16B, which boosts cancer cell survival. 'The increase in WNT16B was completely unexpected," said Peter Nelson, of the Fred Hutchinson Cancer Research Center.
AFP RELAX NEWS

Monday, August 6, 2012, 12:59 PM
SVEN HOPPE /SHUTTERSTOCK.COMHealthy cells damaged by chemotherapy secrete more of a protein called WNT16B, which boosts cancer cell survival

Long considered the most effective cancer-fighting treatment, chemotherapy may actually make cancer worse, according to a shocking new study.

The extremely aggressive therapy, which kills both cancerous and healthy cells indiscriminately, can cause healthy cells to secrete a protein that sustains tumor growth and resistance to further treatment.

Researchers in the United States made the "completely unexpected" finding while seeking to explain why cancer cells are so resilient inside the human body when they are easy to kill in the lab.

They tested the effects of a type of chemotherapy on tissue collected from men with prostate cancer, and found "evidence of DNA damage" in healthy cells after treatment, the scientists wrote in Nature Medicine.

Chemotherapy works by inhibiting reproduction of fast-dividing cells such as those found in tumors.

The scientists found that healthy cells damaged by chemotherapy secreted more of a protein called WNT16B which boosts cancer cell survival.

"The increase in WNT16B was completely unexpected," study co-author Peter Nelson of the Fred Hutchinson Cancer Research Center in Seattle told AFP.

The protein was taken up by tumor cells neighboring the damaged cells.

"WNT16B, when secreted, would interact with nearby tumor cells and cause them to grow, invade, and importantly, resist subsequent therapy," said Nelson.

In cancer treatment, tumors often respond well initially, followed by rapid re-growth and then resistance to further chemotherapy.

Rates of tumor cell reproduction have been shown to accelerate between treatments.

"Our results indicate that damage responses in benign cells... may directly contribute to enhanced tumor growth kinetics," wrote the team.

The researchers said they confirmed their findings with breast and ovarian cancer tumors.


The result paves the way for research into new, improved treatment, said Nelson.

"For example, an antibody to WNT16B, given with chemotherapy, may improve responses (kill more tumor cells)," he said in an email exchange. Curcumin extracts demonstrates ability for stopping cancer growth and tumor spreading.

"Alternatively, it may be possible to use smaller, less toxic doses of therapy."