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Showing posts with label Phosphorus. Show all posts
Showing posts with label Phosphorus. Show all posts

Monday, 13 November 2017

Curious Cook: Vegetarianism and other dietary tales, Part 2

Although most are comfortable with their vegetarian diets, there are some facts which are not always commonly known – and most vegetarian media do not even mention them, especially the “raw” or “paleo” diet media.
People on raw and paleo diets may be depriving themselves of 
mineral nutrients, simply by eating too many raw beans, seeds, 
nuts and wholegrains. – VisualHunt

Read PART 1

And it is not the usual stuff about how vegetarian diets are deficient in nutrients which can only be found in meat and fish – many people simply may not know that several highly popular components of a vegetarian diet can actually result in a significant loss of nutrition, primarily by a chemical process called chelation (pronounced “key-lay-shun”).
Chelation prevents nutrients from being absorbed by the body because a chelating agent tightly binds its own molecules with metal ions, rendering the metals insoluble, inert and indigestible.
Not all chelating agents are bad; for example, sodium calcium edetate is used medically to treat lead and mercury poisoning.
A bit of bad news about beans, grains and nuts
The main dietary compound involved with chelation in humans is phosphorous-based phytic acid (also known as myo-inositol hexakisphosphate) – and salts of phytic acid are known as phytates.
Seeds use phytates as energy stores of phosphates to assist in germination and hence phytates are present in various concentrations in all seeds, grains and legumes used for human consumption.
Due to its undoubted ubiquity, chelation by phytates is generally not a major issue for most humans eating food based on plant seeds, though there are some possible exceptions.
By this I mean that there are significant differences in the levels of phytates in food and these levels are very dependent on the way the food has been prepared.
As an example, lentils which are cooked straight from the packet will have high concentrations of phytates whereas lentils soaked overnight before cooking will have much lower levels of phytates.
In short, wherever possible, always make sure that seeds are pre-soaked and on its way to germination before using them – the germination process greatly depletes phytates in seeds.
As such, people who need enhanced minerals should not eat excessive amounts of seeds which have not been pre-soaked or germinated – this applies to pregnant women, for example.
The chemical summary is that phytates are plant seed-based complex phosphorous compounds which have six sub-groups which bond fiercely with calcium, iron, manganese and zinc molecules, rendering these important metals insoluble and unavailable for digestion.
These minerals would probably be from foods ingested at the same time as phytates – plants do not tend to have them in large quantities. Minerals bound by phytates are excreted by the body as waste material.
It should be noted that phytates are not destroyed by cooking – and people on raw and paleo diets may inadvertently be depriving themselves of mineral nutrients, simply by eating too many raw beans, seeds and nuts. This may also apply to people eating a lot of wholegrain foods in general, such as wholemeal baked goods, oats, granola, muesli, et cetera.
Eating plants means more fibre
On the plus side, eating more plants and plant-based foods can increase the amount of dietary fibre, both soluble and insoluble. Fibre may be a significant contribution to the AHS-2 and EPIC-Oxford findings that vegetarian diets generally lead to lower rates of coronary heart disease (CHD).
A review of several studies by the BMJ in 2013 also concluded that the incidence of CHD is inversely related with the consumption of fibre – basically, eating more fibre reduces the likelihood of CHD while eating less fibre increases the chances of CHD.
The amplitude of this inverse correlation varies depending on which research papers are used but the overall relationship remains true across several large scale studies.
While this is good news, we might like to understand why this inverse relationship exists in the first place. Even if everybody has heard about how good fibre is for health, some may still not know the reasons WHY fibre is actually beneficial – and that may be because the two types of fibre work in different ways.
Soluble fibre and cholesterol
Soluble fibre is termed soluble because it can combine with water to form a gel. A common example is pectin in apples (which is also used to make jams). Soluble fibre appears to help reduce the amount of low-density lipoprotein (LDL) cholesterol circulating in the body by intervening in the intestines before the cholesterol is released into the bloodstream – this intervention is done by soluble fibre binding with cholesterol from digestive bile juices and ingested food and rendering such cholesterol into waste matter.
It seems that between 5 to 10g of soluble fibre can reduce LDL cholesterol by around 5%, though increasing the consumption of soluble fibre does not mean a corresponding decrease in LDL cholesterol as the relationship is not linear – therefore, perhaps an optimal level of soluble fibre consumption for people should be between 5 to 25g a day.
It should be added that LDL is not necessarily the prime cause of CHD but a stressful lifestyle which introduces arterial wall damage combined with LDL is definitely a significant risk factor for CHD. To understand this better, you may choose to read http://www.star2.com/food/food-news/2016/04/24/a-fat-lot-of-good-part-1/
Insoluble fibre and the one-eyed Irishman
Insoluble fibre is plant material which is impervious to water, such as cellulose or the bits of vegetables that you find a little stringy in the mouth.
To understand the function of insoluble fibre, we have to delve into the toilet habits of 20th century British sailors and African tribesmen and recount the work of an interesting one-eyed Irishman called Dr Denis Parsons Burkit.
While in Africa between 1966 and 1972, Burkit conducted curious experiments which noted that African tribesmen were producing between 2.5 to 4.5 times more faeces than British sailors on a regular basis.
This study was done initially to support his hypothesis that the health of people (as measured by the number of visits to hospitals) could be predicted by the frequency and quantity of their bowel movements – the less they pooped, the more sick they were likely to be.
His suspicions were also augmented by the introduction of refined flour (a food containing only a fifth of the fibre of unrefined flour) into the diets of British sailors – this helped to make the naval deposits hard and puny compared to the large soft poops from the Africans.
kale, vegetarian, vegetables, fibre
Eating more plant-based foods means a higher fibre intake, 
which in turn has shown to reduce incidences of coronary heart disease. – AP

An examination of the diets found that Africans ate much more fibre than British sailors and in general had notably healthier intestines.
Later it was established that much of the Africans’ diet was based on plants high in insoluble fibre. Analysing the ailments suffered by British sailors found that issues common with the sailors such as Irritable Bowel Syndrome (IBS), diverticulosis, haemorrhoids, colorectal cancers, et cetera, were absent from the Africans – and from his observations, Burkit proposed that insoluble fibre plays a significant part in maintaining the health of the human gastrointestinal system.
To this day, nobody has been able to challenge this assertion, though there have been disputes about Burkit’s original hypothesis about the numbers of hospital visits in relation to amounts of poop.
As for reasons why insoluble fibre has this beneficial effect, it may be the human digestive system had evolved to expect and handle the fibre load involved in digesting plant material. The human digestive system functions autonomously (ie. without conscious effort) and gut motility (stretching and contraction in the gut) is affected by the type and content of ingested food.
As such, the reduced amount of insoluble fibre in many modern diets would be alien, might not be tolerated so well intestinally and may therefore be a cause of at least some modern gastrointestinal issues.
Insoluble fibre is also high in plant oligosaccharides and these oligosaccharides are very often retained by the gut as food for intestinal microbiota – therefore insoluble fibre can also promote health of gut bacteria. Intestinal flora is very important for human health; as an example, much of the body’s defences against infection are based on the outputs from such flora. More recent research has indicated that gut microbiota may also be related to moods and mental health – this is a complex subject probably suited by another dedicated review.
There appears to be no upper limit to the amount of insoluble fibre which humans can consume – perhaps 30-50g a day should be adequate for most people. Any more may cause exuberant flatulence and require some people to always remain within a 10 metre range of a toilet facility. Nevertheless, it is quite plausible that insoluble fibre can also play a part in the reduction of gastrointestinal cancers (especially in women) as noted by the AHS-2 study.
At this point, it should be noted that both the AHS-2 and EPIC-Oxford dietary studies can also be regarded as proxies for research in dietary fibre, though they both actually did not initially record dietary fibre content in detail.
Subsequent analysis of both studies found that the US-based AHS-2 subjects ingested much more fibre as well as more antioxidants (as measured by Vitamin C content) than the UK EPIC-Oxford subjects.

oats
Oats and bran are a good source of soluble fibre. – Marcoverch/VisualHunt
Fibre and/or antioxidants may therefore explain the major difference in mortality between vegetarian subjects compared to regular meat-eaters: AHS-2 found a 12% lower mortality rate for US vegetarians. However, EPIC-Oxford detected no significant differences across all categories for the UK, possibly due to the difference in dietary fibre.
Although one can think that “non-meat eaters” are automatically “vegetarians”, it is quite important to understand that the “vegetarians” in both studies included people who ate meat, dairy and/or fish occasionally – they are not studies of vegans or people who fastidiously avoid all non-plant proteins compared to meat-eaters.
If you take this view, then both studies can also be taken as proxy studies into the impact of eating less meat, simply by comparing the regular meat-eaters against the other categories which ate meat and/or dairy or fish only occasionally.
Viewed in this context, the AHS-2 research is particularly interesting as the irregular meat eaters seem to be more protected against early mortality and various diseases, especially CHD. But – why is this mortality pattern not observed in EPIC-Oxford?
An analysis of AHS-2 against EPIC-Oxford of ONLY the general meat eaters might help explain the difference in mortality rates (bearing in mind that correlation does not necessarily mean causation).
One striking difference is that Americans eat around 50% more meat per person compared to the United Kingdom, according to the FAO statistics for 2013.
There are many reasons why Americans eat so much more meat – partly it is a cultural issue, partly it is an economic issue as meat is comparatively cheap there due to generous subsidies (which can make various vegetables more expensive than meat).
Also, the US food industry appears to emphasise the nutritional importance of meat and downplays the fact that meat is not required every day. By this simple (and admittedly crudely inferential) analysis, the joint results do appear to indicate that a reduction in meat consumption does reduce mortality – people who ate around 50% more meat die 12% more often compared to people who ate less meat, even if they are all general meat eaters.
The next part will cover intestinal flora, how human mothers nourish the guts of their babies and why certain dietary issues may be attributed to the wrong sources.
http://www.star2.com/food/2017/11/13/vegetarian/

Wednesday, 26 December 2012

YOGURT: A Spoonful of Powerful Nutritional Value

Life Extension Magazine December 2012
 
Report
 
By William Gamonski
 
While yogurt is widely known for its healthy probiotics, it also boasts an impressive nutritional profile that makes it a frontrunner for the ultimate super food. Yogurt's health-promoting properties ward off a variety of health conditions, from gastrointestinal disorders to obesity to gum disease.

YOGURT: A Spoonful of Powerful Nutritional ValueYogurt's History

The origin of yogurt remains uncertain, but it was documented as a favorite food of the conqueror Genghis Khan and his army in the 13th century. While yogurt has been a dietary mainstay across the Middle East, Asia, Russia, and Bulgaria for thousands of years, its health benefits only became apparent during the 20th century, due to the research performed by Dr. Elie Metchnikoff on lactic acid bacteria. Yogurt is becoming increasingly popular around the world, particularly in the United States, as well as Turkey, India, and Greece, where it's being used for culinary purposes.1

Supporting Gastrointestinal Health

Yogurt is produced by fermenting milk with bacterial starter cultures Lactobacillus bulgaricus and Streptococcus thermophilus. Other live cultures such as Lactobacillus casei and Lactobacillus acidophilus are often added during the process.1 These beneficial bacteria, known as probiotics, might improve digestion and prevent common gastrointestinal disorders.

Lactose intolerance refers to the inability to digest the sugar lactose in dairy products due to a deficiency in the enzyme lactase. Yogurt shows promise as an alternative to milk for individuals suffering from this condition, according to research reported in the New England Journal of Medicine.2 Scientists found that lactose intolerant subjects consuming 18 grams of lactose from yogurt digested and absorbed the lactose more efficiently than those who received the same amount of lactose from milk. This improved toleration resulted in less diarrhea and other gastrointestinal symptoms in the yogurt group.

Scientists believe that probiotics in yogurt boost the release of beta-galactosidase, an enzyme that enhances lactose digestion.3

It is estimated that one out of every four people experience antibiotic-associated diarrhea.4 Scientists at Indiana University School of Medicine investigated whether the healthy bacteria in yogurt would help prevent the condition. A group of 202 hospitalized patients receiving oral or intravenous antibiotics were randomly selected for 8 ounces of yogurt, or no yogurt, for eight days. The frequency of diarrhea was assessed during that time period. The results showed a 24% reduction in the incidence of diarrhea in the yogurt group, compared with a 12% decrease in the control group.5

Selecting and Storing Yogurt1
Selecting and Storing Yogurt
Look for "active cultures" or "living yogurt cultures" on the label. This indicates the presence of gut friendly bacteria.

Avoid yogurt with flavorings and sweeteners.

Opt for the plain version instead of fruit-filled yogurt as the latter usually contains added sugar.

Store in the refrigerator after purchase. Yogurt stays fresh until one week after expiration date if unopened.

 

Anti-Obesity Effects

Numerous studies have demonstrated the obesity fighting potential of yogurt. In animal research, scientists found that mice supplemented with yogurt powder while on a moderate-fat diet had significantly lower weight gain than control mice. This was attributed to increased lipid levels in the feces of the supplemented group, suggesting that yogurt works by reducing fat absorption in the small intestine.6

These favorable effects extend to humans as well. Individuals with the highest intake of dairy foods, such as yogurt, lowered their risk of weight gain by 67% over a 10-year period compared to those with the lowest intakes, according to research published in the Journal of the American Medical Association.7 Furthermore, researchers at Harvard School of Public Health studied the relationship between specific foods and long-term weight gain in more than 120,000 men and women.8 After analyzing data from the 20 year follow-up, researchers concluded that yogurt was the food most associated with keeping weight off, even more so than fruits, vegetables, and whole grains.

To determine whether yogurt consumption can enhance weight loss in humans, researchers at the University of Tennessee randomly assigned 34 healthy obese participants 18 ounces of fat-free yogurt or one serving of dairy daily for 12 weeks.9 Both groups adhered to a similar calorie-reduced diet. At the end of the study, the yogurt group experienced an average weight loss of 14 pounds, compared to 11 pounds in the control group. Additionally, those who consumed yogurt retained 31% more muscle mass and lost 81% more abdominal fat, which was reflected in a reduction of over 1.5 inches from the waist. By comparison, the control group lost 0.23 inches. This improvement is noteworthy since visceral fat accumulation has been associated with increased risk for cardiovascular disease and type II diabetes.10

Existing data indicates that calcium is the main component in yogurt responsible for its anti-obesity benefits. Although calcium may operate through multiple mechanisms, one mode of action relates to its ability to suppress the release of the hormone calcitriol, thereby halting fat storage and promoting fat break down.11

Cancer Defense

Emerging evidence reveals that the addition of yogurt to your diet can protect against the development of several types of cancer, including those of the colon, bladder, and breast. In a study published in the International Journal of Cancer, a 35% colon cancer reduction risk was found in those consuming the highest amount of yogurt compared to those with the lowest amount in more than 45,000 men and women over a 12-year period.12

Swedish scientists uncovered a strong association between yogurt intake and bladder cancer risk among 80,000 men and women. After 9-years of follow-up, findings showed a 38% lower risk of the disease in those who regularly consumed yogurt versus those who ate little or none.13
In another study, researchers evaluated the intake of fermented dairy products in 133 breast cancer patients and 289 controls. They discovered that yogurt had a protective effect against breast cancer, as the highest intake was associated with a 37% reduction risk.14

Nutritional Value of Yogurt, One Cup1
Nutritional Value of Yogurt, OneCup

NutrientsAmountyDV(%)
Iodine87.20 mcg58.1%
Calcium448.30 mg44.8%
Phosphorus352.80 mg35.2%
Vitamin B20.52 mg30.5%
Protein12.80 g25.7%
Vitamin B121.37 mcg22.8%
Potassium573.30 mg16.4%
Zinc2.18 mg14.5%

 

Combating Heart Disease

Other research has shown that yogurt offers powerful cardiovascular support. In a study involving more than 1,000 women aged 70 and older, those with the highest yogurt intake not only had higher HDL cholesterol levels, but also significantly lower carotid artery thickness, a measurement of atherosclerosis, than those with the lowest intake.15

A study published in the European Journal of Clinical Nutrition further confirmed the HDL raising effects of yogurt in human volunteers. After consuming 10.5 ounces of full-fat yogurt daily for 21 weeks, participants experienced an increase of nearly 12 mg/dL in HDL cholesterol levels without any change in LDL levels. This in turn favorably altered their LDL/HDL cholesterol ratio by over 23%.16

Fight Gum Disease

Fight Gum Disease
The chronic growth of bacteria in the mouth leads to inflammation and damages the gums and bones that support the teeth. This condition, known as periodontal disease or gum disease, has been associated with stroke and heart disease.17 Japanese researchers found that a daily intake of at least 2 ounces of yogurt among men and women was linked with a decreased risk of developing deep probing depth by 60% and clinical attachment loss by 50%, both periodontal disease parameters.18

 

Summary

Incorporating yogurt into your diet offers healthy probiotics and other nutrients that may help protect against gastrointestinal disorders, cancer, cardiovascular disease, obesity, and gum disease. Please remember that yogurt is not a dietary supplement, and should be used to replace constituents of your diet that may be less healthy such as ice cream. If one intentionally added yogurt without removing another food, then the excess calories might counteract the beneficial effects of the yogurt.

If you have any questions on the scientific content of this article, please call a Life Extension® Health Advisor at 1-866-864-3027.

References

1. Available at: http://www.whfoods.com/genpage.php?tname=foodspice&dbid=124 Accessed September 14, 2012.
2. Kolars JC, Levitt MD, Aouji M, Savaiano DA. Yogurt-an autodigesting source of lactose. N Engl J Med. 1984 Jan;310(1):1-3.
3. Rosado JL. Yogurt as a source of lactose autodigestion. Rev Invest Clin. 1996 Nov;48:63-6.
4. Doron SI, Hibberd PL, Gorbach SL. Probiotics for prevention of antibiotic-associated diarrhea. J Clin Gastroenterol. 2008 Jul;42:58-63.
5. Beniwal RS, Arena VC, Thomas L, et al. A randomized trial of yogurt for prevention of antibiotic-associated diarrhea. Dig Dis Sci. 2003 Oct;48(10):2077-82.
6. Johnson MS, Jumbo-Lucioni P, Watts AJ, Allison DB, Nagy TR. Effect of dairy supplementation on body composition and insulin resistance in mice. Nutrition. 2007 Nov-Dec;23(11-12):836-43.
7. Pereira MA, Jacobs DR Jr, Van Horn L, Slattery ML, Kartashov AL, Ludwig DS. Dairyconsumption, obesity and the insulin resistance syndrome in young adults: the CARDIA study. JAMA. 2002 Apr;287(16):2081-9.
8. Mozzaffarian D, Hao T, Rimm EB, Willet WC, Hu FB. Changes in diet and lifestyle and long- term weight gain in women and men. N Engl J Med. 2011 Jun;364(25):2392-404.
9. Zemel MB, Richards J, Mathis S, Milstead A, Gebhardt L, Silva E. Dairy augmentation of total and central fat loss in obese subjects. Int J Obes. 2005 Apr;29(4):391-7.
10. Hamdy O, Porramatikul S, Al-Ozairi E. Metabolic obesity: the paradox between visceral and subcutaneous fat. Curr Diabetes Rev. 2006 Nov;2(4):367-73.
11. Zemel MB. Regulation of adiposity and obesity risk by dietary calcium: mechanisms and implications. J Am Coll Nutr. 2002 Apr;21(2):146S-151S.
12. Pala V, Sieri S, Berrino F, et al. Yogurt consumption and risk of colorectal cancer in the Italian European prospective investigation into cancer and nutrition cohort. Int J Cancer. 2011 Dec;129(11):2712-9.
13. Larsson SC, Andersson SO, Johansson JE, Wolk A. Cultured milk, yogurt, and dairy intake in relationship to bladder cancer risk in a prospective study of Swedish women and men. Am J Clin Nutr. 2008 Oct;88(4):1083-7.
14. Veer PV, Dekker JM, Lamers JWJ. Consumption of fermented milk products and breast cancer: a case-control study in the Netherlands. Cancer Res.1989;49:4020-4023.
15. Ivey KL, Lewis JR, Hodgson JM, et al. Association between yogurt, milk, cheese consumption and common carotid artery intima-media thickness and cardiovascular disease risk factors in elderly women. Am J Clin Nutr. 2011 Jul;94(1):234-9.
16. Kiessling G, Schneider J, Jahreis G. Long-term consumption of fermented dairy products over 6 months increases HDL cholesterol. Eur J Clin Nutr. 2002 Sep;56(9):843-9.
17. Pihlstrom BL, Michalowicz BS, Johnson NW. Periodontal diseases. Lancet. 2005 Nov;366(9499):1809-20.
18. Shimazaki Y, Shirota T, Uchida K, et al. Intake of dairy products and periodontal disease: the Hisayama Study. J Periodontol. 2008 Jan;79(1):131-7.


Source: YOGURT: A Spoonful of Powerful Nutritional Value

Wednesday, 11 July 2012

Stop Flushing Your Calcium Down the Drain




1127.jpgAre you conscientiously eating calcium-rich foods and following your doctor’s orders about calcium supplement use? That’s good—but not good enough to ensure that your bones benefit. Reason: Some foods contain substances that interfere with calcium absorption, so whatever else you eat along with your calcium influences how much of the mineral goes to your bones…and how much literally gets flushed away when you go to the bathroom.
 
To tip this balance in your favor, it helps to allow a couple of hours to elapse between eating the foods you rely on for calcium and eating the types of foods that reduce calcium absorption, I heard from Elson M. Haas, MD, an integrative physician in San Rafael, California, and author of Staying Healthy with Nutrition: The Complete Guide to Diet and Nutritional Medicine. So just what kinds of foods are we talking about?

Calcium-rich foods: These include beans (great northern, navy, white)…Chinese cabbage…dairy products…fortified cereals…leafy greens (beet greens, collards, dandelion greens, kale, turnip greens)…nuts…okra…rice…seafood (crab, salmon, ocean perch, sardines, shrimp)…seeds…and soy products.

Here’s what interferes with calcium…

Sodium. When you eat too much sodium, the excess is excreted in your urine—but when that sodium leaves your body, it drags calcium with it. Best: Limit daily consumption of sodium to no more than 2,300 mg or about the amount in one teaspoon of salt. What if you do go overboard on salt? Potassium helps limit sodium-induced calcium excretion, so have a high-potassium food (banana, cantaloupe) with your calcium, Dr. Haas suggested.

Caffeine. Do you often have calcium-rich yogurt for breakfast or take your calcium pill with your morning meal—then wash it down with a big mug of coffee or tea? Caffeine from any source works against strong bones by interfering with calcium absorption and causing more of the mineral to be lost through the urine. Better: Have your morning yogurt with a glass of orange juice instead, since its vitamin C and magnesium improve calcium absorption…or take your supplement in the afternoon or evening, after you’ve finished drinking coffee for the day.

Phytates. Found in high-fiber foods such as berries, corn, nuts, oatmeal, rye and especially wheat bran, phytates are substances that bind calcium, reducing its absorption. Fiber-rich foods have many health benefits, so of course you don’t want to shun them…but if you’re increasing your fiber intake (for instance, to help regulate digestion), be sure to increase your calcium intake, too.

Phosphorus. This mineral, which is plentiful in meat and poultry, has many important functions in the body. But for proper bone density, a delicate balance must be maintained between phosphorus and calcium—which means that as phosphorus intake increases, the need for calcium increases, too.

Problem: Ideally, people should eat more calcium than phosphorus, but the typical meat-focused Western diet contains roughly two to four times more phosphorus than calcium. Also, because both phosphorus and calcium require vitamin D for absorption, phosphorus-rich foods compete with calcium-rich foods for the available vitamin D. Bone smart: Ask your doctor about supplementing with vitamin D. Also, cut back on meat and focus more on plant foods…and be aware that carbonated beverages such as colas have as much as 500 mg of phosphorus in one serving—so say “so long” to soda.

Nighttime note: Has your doctor has recommended calcium supplements? Choose a brand that also includes magnesium for maximum absorption…and take half of your daily dose at bedtime, Dr. Haas suggested—it may even help you relax and sleep better.

Source: Elson M. Haas, MD, is the founder and director of the Preventive Medical Center of Marin in San Rafael, California, where he has practiced integrative medicine for more than 25 years. He also is the author of numerous books on health and nutrition, including Staying Healthy with Nutrition: The Complete Guide to Diet and Nutritional Medicine (Celestial Arts) and the newly released third edition of The Detox Diet: The Definitive Guide for Lifelong Vitality with Recipes, Menus, and Detox Plans (Ten Speed). www.PMCMarin.com

Listing Details

Publication                          HealthyWoman from Bottom Line
Original publication date    July 12, 2012
 
http://www.bottomlinepublications.com/content/article/diet-a-exercise/stop-flushing-your-calcium-down-the-drain