Chronic exposure of β-cells to triacylglycerol or fatty acids either in vitro or in vivo decreases β-cell capacity to respond to an acute increase in glucose levels (57,58). This concept is far from new (59,60), but the observations of what happens during reversal of diabetes provide a new perspective. β-Cells avidly import fatty acids through the CD36 transporter (24,61) and respond to increased fatty acid supply by storing the excess as triacylglycerol (62). The cellular process of insulin secretion in response to an increase in glucose supply depends on ATP generation by glucose oxidation. However, in the context of an oversupply of fatty acids, such chronic nutrient surfeit prevents further increases in ATP production. Increased fatty acid availability inhibits both pyruvate cycling, which is normally increased during an acute increase in glucose availability, and pyruvate dehydrogenase activity, the major rate-limiting enzyme of glucose oxidation (63). Fatty acids have been shown to inhibit β-cell proliferation in vitro by induction of the cell cycle inhibitors p16 and p18, and this effect is magnified by increased glucose concentration (64). This antiproliferative effect is specifically prevented by small interfering RNA knockdown of the inhibitors. In the Zucker diabetic fatty rat, a genetic model of spontaneous type 2 diabetes, the onset of hyperglycemia is preceded by a rapid increase in pancreatic fat (58). It is particularly noteworthy that the onset of diabetes in this genetic model is completely preventable by restriction of food intake (65), illustrating the interaction between genetic susceptibility and environmental factors.
Data from the Swedish randomized study of gastric banding showed that a loss of 20% body weight was associated with long-term remission in 73% of a bariatric surgery group, with weight change itself being the principal determinant of glucose control (13). Dietary weight loss of 15 kg allowed for reversal of diabetes in a small group of individuals recently receiving a diagnosis (21). In individuals strongly motivated to regain normal health, substantial weight loss is entirely possible by decreasing food consumption (88). This information should be made available to all people with type 2 diabetes, even though with present methods of changing eating habits, it is unlikely that weight loss can be achieved in those not strongly motivated to escape from diabetes. Some genetic predictors, especially the Ala12 allele at PPARG, of successful long-term weight loss have been identified (89), and use of such markers could guide future therapy. It must be noted that involuntary food shortage, such as a result of war, results in a sharp fall in type 2 diabetes prevalence (90,91).
One of the lesser known herbs that lower blood sugar, Marjoram, is high in polyphenols, which aids in stabilizing blood glucose levels. A 2012 study in the Journal of Evidence Based Alternative and Complementary Medicine found that Marjoram reduced formation of Advanced Glycation End (AGE) products. AGE is the smoking gun that researchers today say is responsible for a lot of the complications that diabetics face, like damage to arteries and eyes. Try sprinkling marjoram on your dinner every night to help add variety in flavor. It can often be used as a substitute for oregano in cooking and brings in a distinct flavor to dishes.
Qi (pronounced “chi”) is translated into English as vital energy. It is defined in terms of function rather than as a discrete substance, and it is what animates us and allows us to move and maintain the activities of life. The origins of Qi include “congenital”’ (prenatal) Qi—that which is inherited from our parents—and “acquired” Qi—that which is incorporated from food and air.4
So, let's understand why a cell does not accept the Insulin fast enough. A healthy cell has a Sodium:Potassium ratio of 1:8. This varies a little from person to person depending on the amount of activity he/she does. A diabetic cell on the other hand has a very bad ratio. Any naturally available food always has more Potassium and less Sodium. When heated, Potassium is lost but Sodium is retained. And we add more Sodium to the food in the form of salt. We only require about 500mg of Sodium per day for normal activities which is naturally available in all types of food even without adding in the form of salt. A person who does more physical activity as part of his job or is an athlete etc. will require more Sodium not exceeding 2000mg. On the other hand, Potassium requirement is around 4700mg.
Practitioners agree that nutrition is the cornerstone of diabetes management, and that a range of nutrition intervention strategies can be used to meet the metabolic goals and individual preferences of the person with diabetes. However, there are significant differences in the approach and methodologies used by alternative and conventional practitioners to manage the disease. One difference is in terminology. When is remission really remission?
Because TCM defines diabetes as a disease characterized by Yin deficiency and excess internal heat, an example of a dietary prescription would be to consume spinach, which is cooling, “strengthens all the organs, lubricates the intestines, and promotes urination.”7 A recommendation might be to boil tea from spinach and drink 1 cup three times/day. Other foods considered to be cooling and beneficial for diabetes include vegetables and grains, such as celery, pumpkin, soybeans (i.e., tofu, soymilk), string beans, sweet potato/yam, turnips, tomato, wheat bran, and millet. Fruit remedies, which act in specific therapeutic ways, include crab apple, guava, plum, strawberry, and mulberry.7 It is generally recommended that patients eat a wide variety of seasonal foods and avoid or minimize consumption of sweets and fruits. Meals should be smaller, eaten more frequently, and eaten at regular times each day.
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A computer-controlled algorithm connects the CGM and insulin pump so they communicate. As the CGM detects high blood sugar, the pump knows to provide a specific amount of insulin. The goal is to provide the patient with more normalized and ideal blood sugar management without the constant hassle of decisions by the patient who is presumably allowed to live a more normal life.
I bring this up because sleep apnea increases a person’s risk for developing type 2 diabetes. Also, sleep-disordered breathing is also related to proper nutrition throughout life. And perhaps most importantly, the first line of defense in catching sleep-disordered breathing in patients early, are dentists. This is another area where dentists must get involved if we want to tackle the issue of pervasive type 2 diabetes with any success.