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Showing posts with label Glycemic Index. Show all posts
Showing posts with label Glycemic Index. Show all posts

Sunday, December 21, 2014

Is glycemic index of foods becoming irrelevant? Some think so!

Ever since the Glycemic Index (GI) and Glycemic Load (GL) concepts became acceptable for differentiating carbohydrates in terms of their ability to release glucose into the blood and the pace at which blood glucose spikes after food consumption, no serious challenge was made against it. Now comes a report originating from the reputed National Institute of Health at Bethesda, USA (NIH) indicating that for a normal person GI and GL do not make much difference in spawning heart disease, blood pressure and diabetes. According to this new findings, high GI foods do not cause these diseases and on the contrary low GI foods can increase insulin insensitivity which is not desirable. Original GI innovators who pioneered the study in 1988 ultimately coming out with the GI yardstick, do not seem to be agreeing to the conclusion of the latest NIH study and here is this issue discussed threadbare.

The idea that all carbohydrates are not created equal has become the foundation of many popular diets. Some argue that foods like white bread and potatoes, which have a high so-called glycemic index because they spike blood sugar and insulin, should be avoided in favour of  healthful carbs like whole grains and non-starchy vegetables. But rigorous new research from the National Institutes of Health suggests that for people who already follow a healthful diet, the glycemic index (GI) may not be very important. The study found that diets containing low glycemic foods did not lower cholesterol compared to diets containing mostly high glycemic foods. Nutrition experts argue that low glycemic diets improve blood sugar levels and insulin sensitivity. But the new study found that low glycemic diets actually made insulin sensitivity worse. "The dogma out there is that a high glycemic index is bad," said Dr Robert Eckel, a past president of the American Heart Association, who was not involved in the research. "I hope that ultimately the glycemic index will be left on the shelf." Developed in 1981, the glycemic index reflects the extent to which carbohydrate-containing foods raise a person's blood sugar and subsequent need for insulin. The idea is that low glycemic foods are better for health, warding off diabetes and weight gain, because the carbs they contain are digested at a slower rate. The glycemic index indicates how quickly a particular carbohydrate raises blood sugar, but not how much of it is in a typical serving of a given food. So proponents of the index have also come up with another system, known as glycemic load, which takes portion sizes into account. Last year, a committee of scientists led by the chair of the Harvard School of Public Health called for glycemic values to be included on food labels and emphasised in dietary guidelines. The committee said it was crucial that the public understand the glycemic response to foods "given the rapid rise in diabetes and obesity." In the new study, researchers wanted to find out whether diets that were similar in calories and carbohydrates but composed of either high or low glycemic foods had different effects on cardiovascular health. So they recruited 163 people who were mostly overweight and had high blood pressure, putting them at greater risk of heart disease and Type 2 diabetes. The subjects were rotated through four diets for five weeks at a time, with all of their food provided to them. The researchers said they devised each diet to be heart healthy, with plenty of fruit, vegetables, beans, fish, poultry, lean meat and grains. Two of the diets were slightly higher in carbs than what an average American eats, and two were slightly lower. Researchers then altered the types of carbs they contained. The low glycemic diets included things like whole grain bread and cereal, apples, steel-cut oats, and non-starchy vegetables. The high glycemic diets allowed things like white bread, carrot and bran muffins, instant rice and instant oatmeal, and sweet snacks like honey, bananas, and apricots in heavy syrup. When the overall amount of carb intake was lowered, cardiovascular risk factors like cholesterol, triglycerides and blood pressure moved in the right direction. But when two diets had similar amounts of carbs and calories, the low glycemic approach did not improve insulin sensitivity, cholesterol or blood pressure levels. Unnecessary fuss over GI Dr Frank M Sacks, the lead author of the study and a professor at Harvard Medical School and Brigham and Women's Hospital, said that other trials carried out even longer had reached similar results. He said that people should eat whole grains, fresh produce and high fibre foods because of the nutrients they contain. But unless someone has diabetes and must monitor their blood sugar levels, people who are already following a health-ful diet do not need to worry about the blood-sugar impact of one type of fruit or grain versus another. "The takeaway is a good message for people," he said. "They can pick foods that are part of a healthy dietary pattern without wondering if they're high or low glycemic. They don't have to learn that system." The developer of the glycemic index, Dr David Jenkins, a professor of nutrition at the University of Toronto, added that the study was limited because it did not include people with Type 2 diabetes, a rapidly growing population that has the most problems with blood sugar control. "If they had done that," he said, "they would have made it easier to see some of the cardiovascular benefits."
It may be recalled that there have been demands from some section of the nutritionists about the urgent need to declare GI of each food on the label as they feel that provides an option to the consumer to select low GI foods. But if the latest study is confirmed and there is unanimity among the peers regarding the limited role GI plays in life style diseases for a normally healthy person, including GI values may have opposite effect viz such foods' potential to worsen insulin insensitivity. The rider contained in the study in NIH that their findings apply only to those consuming a "healthy" diet regularly makes it again controversial because most Americans do not have the habit of eating such foods containing predominantly whole food grains, fruits and vegetables. If this is so are they not better of sticking to low GI foods? Of course ideal thing would be to change the diet to include more and more high fiber foods derived from unrefined grains and fruits and vegetables. GI and GL definitely will play a role in the lives of people affected by Type II diabetes as it is essential for them to prevent glucose spikes for which low GI foods are a better bet.

V.H.POTTY
http://vhpotty.blogspot.com/
http://foodtechupdates.blogspot.com

Sunday, September 1, 2013

POTATO THAT IS FIT FOR DIABETICS! NEW CLAIMS!

Whoever does not know that Potato is loaded with starch that is readily converted to glucose in no time once it enters the human digestive system? Diabetics avoid Potato as much as possible precisely for this reason. According to available evidence Potato has a Glycemic Index  (GI) of more than 90 reflecting its ability to release glucose rapidly and just imagine even the dreaded cane sugar has a GI of less than 60 compared Glucose which has a GI of 100. Potato has a tendency to increase glucose level after storing in cold storage which is not desirable to make products like wafers as undesirable browning takes place during frying due to Maillard reaction. The news that one of the R & D institutes under ICAR has developed a variety of Potato that does not increase sugar content on cold storing is indeed welcome as far as food processing industry is concerned. However the joke is the claim that this Potato is good for diabetics! Here is this startling claim by none other than the Head of that institute in a press release recently!  

"The CPRI said sugar or glucose levels in potatoes will not rise with the use of this technology. The institute is also getting a patent for this technology, CPRI director Bir Pal Singh told Deccan Herald on Monday. The breakthrough, Singh said, has been evolved purely for commercial. Low-sugar potatoes with a longer shelf life was otherwise not possible, with sugar level rising in cold storages. The technology raises the hope for potatoes sans sugar being available in markets, something which may bring smile on the faces of the potato-loving diabetic patients. Once the technology is implemented commercially, diabetics with a sweet tooth will possibly find sugar-free potatoes in the nearby vegetable store.  CPRI sources say potatoes contain starch which turns into glucose. In freshly harvested potatoes, the starch content is low at about 1 per cent, but the level of glucose rises beyond 6 per cent in low temperatures. Singh said: "This is the first such technology in the country. This will be a boon for the processing industry. Starch in potatoes turns into sugar and this process is accelerated by an enzyme called invertase. We have silenced this process, in fact stopped it, so that the sugar levels don't increase in potatoes." The technology has "great cold chipping attributes," which controls the rise of sugar level in potatoes. "Transgenic potatoes have reduced expression of the vacuolar and invertase gene resulting in cold induce sweetening resistant potato which is desirable for the processing industry. The breakthrough is an outcome of teamwork and five years of research," Singh added.

It is rather unfortunate that "scientists" in such important positions as Director, exhibits ignorance through such press interactions. Whether sugar is developed or not Potato will always be a taboo as far as diabetics are concerned because of the propensity of its starch to generate and absorb glucose very fast in human body, almost at a rate equal to that of pure glucose itself! As starch is a polymer of glucose its degradation product is glucose and that is the reason for avoiding this tuber crop in diets recommended for diabetic people. 

V.H.POTTY
http://vhpotty.blogspot.com/
http://foodtechupdates.blogspot.com

Saturday, July 21, 2012

RICE FOR DIABETICS?-PROBABLY POSSIBLE!

Consumption of rice by those suffering from diabetes is discouraged by physicians because of its ability to get digested fast to release glucose which will increase the blood sugar immediately after ingestion beyond recommended levels. Traditionally diabetic patients were dependent more on wheat based diets which have marginally lower Glycemic Index (GI) value compared to rice. Those habituated with rice during their life time have difficulties in changing over to other grains and therefore any developmental activity that will make rice compatible with diabetes is a welcome news. After all more than 50% of the world population consume rice as a staple food and hence such a development will have great relevance. This is what is being  attempted in International Rice Research Institute (IRRI) in Manila, Philippines in collaboration with other institutions engaged in rice research. According to the results already available from the study, there are many varieties of rice which have low GI, as low as 45 and those who want to have protection from diabetes can use low GI rice varieties while others with Type II diabetes can manage the disease better with such varieties. It is interesting to read the findings of the group as contained in the following report.   

"The study found that the GI of rice ranges from a low of 48 to a high of 92, with an average of 64. The research team from the International Rice Research Institute (IRRI) and Australia's Commonwealth Scientific and Industrial Research Organisation (CSIRO) Food Futures Flagship also identified the key gene that determines the GI of rice, an important achievement that offers rice breeders the opportunity to develop varieties with different GI levels to meet consumer needs. Futuredevelopment of low-GI rice would also enable food manufacturers to develop new, low-GI food products based on rice. Dr. Melissa Fitzgerald, who led the IRRI team, said that GI is a measure of the relative ability of carbohydrates in foods to raise blood sugar levels after eating. "Understanding that different types of rice have different GI values allows rice consumers to make informed choices about the sort of rice they want to eat," she said. "Rice varieties such as India's most widely grown rice variety, Swarna, have a low GI and varieties such as Doongara from Australia and Basmati have a medium GI." Dr. Tony Bird, CSIRO Food Futures Flagship researcher, said that low-GI diets offer a range of health benefits: "Low-GI diets can reduce the likelihood of developing type 2 diabetes, and are also useful for helping diabetics better manage their condition. "This is good news for diabetics and people at risk of diabetes who are trying to control their condition through diet, as it means they can select the right rice to help maintain a healthy, low-GI diet," he added.Low-GI foods are those measured 55 and less, medium-GI foods are those measured between 56 and 69, while high-GI foods measure 70 and above.When food is measured to have a high GI, it means it is easily digested and absorbed by the body, which often results in fluctuations in blood sugar levels that can increase the chances of getting diabetes, and make management of type 2 diabetes difficult".

While theoretically it is an excellent study what is not realized is that there are only a few recognized brands in rice in the market while vast majority of them are sold loose in many countries with no way of identifying the variety and it is next to impossible to make any meaningful selection by the consumers at the market place. GI as a measure of assessing the anti-diabetic credentials of food is fraught with many practical difficulties. For example same rice variety can have varying GI values depending on the location it is produced, type of cooking it has undergone, the age of the rice, amount of water used for cooking, etc and unless more work is done to sort out these discrepancies there is no way consumer can rely on the published GI figures as a guide for evolving suitable diets. Of course for ready to eat foods with GI values declared on the label may have a meaning as they do not undergo any further cooking before consumption. Reading more carefully the above report, one gets the impression that it seems to be an attempt to genetically modify rice varieties to make changes at the gene level to impart low GI characteristics. Whether consumers will accept such GM varieties even with the low GI values remains to be seen.  

V.H.POTTY
http://vhpotty.blogspot.com/
http://foodtechupdates.blogspot.com