A 2005 study on the anti-diabetic effect of garlic in normal and lab-induced diabetic rats, published in the journal Phytomedicine, found that oral administration significantly decreased serum glucose, total cholesterol, triglycerides, urea, uric acid, creatinine, AST and ALT levels. While it increased serum insulin in diabetic rats, this was not so in the case of normal rats. It concluded that garlic must be considered as an excellent candidate for future human studies on diabetes mellitus. What’s better, garlic also helps reduce high cholesterol levels, a complication that diabetics often face. This makes it an excellent spice to use for in all recipes!
This book was written in 1999 so I had this uncanny feeling in the back of my head that a lot of water has run over the dam since it was written. The author is a medical doctor with type 2 diabetes who weighed 313 pounds and was a first year medical student before he got the message of needing to do something about his health. He has some suggestions about reversal of diabetes that are interesting and give me pause for thought. His message in its majority is addressed to diabetics who are not ta ...more
Why do people develop prediabetes? Prediabetes develops through a combination of factors that are still being investigated. For sure, lifestyle factors (food, exercise, stress, sleep) play a role, but family history and genetics certainly do as well. It is easy to assume that prediabetes is the result of being overweight, but the relationship is not that simple. While obesity is one underlying cause of insulin resistance, many overweight individuals may never develop prediabetes or type 2 diabetes, and a minority of people with prediabetes have never been overweight. To make matters worse, it can be increasingly difficult to make healthy choices in today’s toxic food environment that steers all of us to make the wrong food choices, and there are many factors that can contribute to weight gain in addition to diet.

Scientists are trying to figure out how to transplant islet cells and then protect them from the patient’s immune system so that long-term immunosuppressive medications aren’t required. Micro encapsulation is an approach scientists are testing to find out if a special coating to the transplanted islets can help the patient avoid rejection of those islets. These coatings let in nutrients to nourish the cells but prevent your body’s immune system from attacking them.
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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.
Diabetes is a serious disease requiring professional medical attention. The information and recipes on this site, although as accurate and timely as feasibly possible, should not be considered as medical advice, nor as a substitute for the same. All recipes and menus are provided with the implied understanding that directions for exchange sizes will be strictly adhered to, and that blood glucose levels can be affected by not following individualized dietary guidelines as directed by your physician and/or healthcare team.
In some kids with diabetes, repeated insulin injections can cause a thickening or lumpiness of the fatty tissue beneath the skin, called lipodystrophy (or lipohypertrophy). This is more likely if injections are given in the same area again and again rather than in different injection sites as recommended. Usually, this is only a cosmetic problem. But in some cases, insulin injected in areas of skin with lipodystrophy may not be absorbed into the bloodstream as it should. This can make the insulin dose take longer than usual to work.

The researchers have cured mice, which are genetically similar to people but different enough that new rounds of animal testing — and millions of dollars more — are needed before human trials can begin. The researchers’ approach is sure to garner skeptics, at least in part because it is a significant departure from the many other attempts at curing diabetes, which typically involve transplanting new cells and/or suppressing the immune system’s attempts to kill off useful ones.


When cells are resistant to insulin, they don’t use the insulin effectively to bring the glucose from the bloodstream into the cell. The pancreas needs to produce more insulin to overcome this resistance in an effort to normalize blood sugar levels. When the pancreas can’t keep up with the insulin demands in a person with insulin resistance, that person develops diabetes.
By day eight, I was being called the "disappearing man", and began to feel a bit detached from my colleagues. While my energy levels were fine and glucose levels were 4.3mmol/L, constipation had set in, as a result of not drinking enough water. Thankfully, laxatives cured this. Taylor emailed to say my progress was so good, I  could come off the liquid diet and go back to normal foods.
One benefit of these foods is that they generally promote weight loss, which is a major factor in reversing diabetes. A study following 306 diabetic individuals found that losing weight under a structured program (with the supervision of a primary care physician) resulted in almost half of the participants going into total diabetes remission. This means they were able to stay off their medications permanently (assuming they stayed on a healthy diet). Quality of life also improved by over seven points on average for the patients on the dietary regimen, while it decreased by about three points for the control group. (13)
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One of the most studied programs in the National Institutes of Health’s Diabetes Prevention Program (DPP). This program helps people who have pre-diabetes or a high risk of developing type 2 diabetes lose weight. Studies of the program have found that those who lost about seven percent of their initial weight, kept some of it off, and maintained an exercise program delayed the onset of type 2 diabetes for three years in 58% of cases.
In another study, albeit including only 30 people, those who were recently diagnosed and went on a very low-calorie diet for eight weeks experienced remission. That remission continued more than six months after their low-calorie diet ended.  In people who have had type 2 diabetes for a long time, unfortunately, weight loss has a much more limited impact.

“Diabetes type 1 is very different from your standard disease. Insulin requirements vary greatly from one day to another and there is no way patients can know what they need,” Roman Hovorka, Professor at the University of Cambridge, explained to me during an interview. His research group is working on the development of an algorithm that can accurately predict insulin requirements for a specific patient at any moment.
Magnesium is a mineral found naturally in foods such as green leafy vegetables, nuts, seeds, and whole grains and in nutritional supplements. Magnesium is needed for more than 300 biochemical reactions. It helps regulate blood sugar levels and is needed for normal muscle and nerve function, heart rhythm, immune function, blood pressure, and for bone health.

Storage of liver fat can only occur when daily calorie intake exceeds expenditure. Sucrose overfeeding for 3 weeks has been shown to cause a 30% increase in liver fat content (37). The associated metabolic stress on hepatocytes was reflected by a simultaneous 30% rise in serum alanine aminotransferase (ALT) levels, and both liver fat and serum ALT returned to normal levels during a subsequent hypocaloric diet. Superimposed upon a positive calorie balance, the extent of portal vein hyperinsulinemia determines how rapidly conversion of excess sugars to fatty acid occurs in the liver. In groups of both obese and nonobese subjects, it was found that those with higher plasma insulin levels have markedly increased rates of hepatic de novo lipogenesis (2,38,39). Conversely, in type 1 diabetes the relatively low insulin concentration in the portal vein (as a consequence of insulin injection into subcutaneous tissue) is associated with subnormal liver fat content (40). Initiation of subcutaneous insulin therapy in type 2 diabetes brings about a decrease in portal insulin delivery by suppression of pancreatic insulin secretion and, hence, a decrease in liver fat (41). Hypocaloric diet (42), physical activity (43), or thiazolidinedione use (23,44) each reduces insulin secretion and decreases liver fat content. Newly synthesized triacylglycerol in the liver will be either oxidized, exported, or stored as hepatic triacylglycerol. Because transport of fatty acid into mitochondria for oxidation is inhibited by the malonyl-CoA produced during de novo lipogenesis, newly synthesized triacylglycerol is preferentially directed toward storage or export. Hence, hepatic fat content and plasma VLDL triacylglycerol levels are increased.

Currently, no fully artificial pancreas system has been approved by the FDA for use in the U.S. The most advanced product on the market in the USA is currently Medtronic’s MiniMed system which can automatically suspend insulin delivery when it detects low blood sugars. The next generation of their system will anticipate low blood sugars and stop insulin delivery in advance.
What is prediabetes? Prediabetes is a condition where blood sugar levels are higher than normal, but not high enough to be diagnosed as type 2 diabetes. This occurs when the body has problems in processing glucose properly, and sugar starts to build up in the bloodstream instead of fueling cells in muscles and tissues. Insulin is the hormone that tells cells to take up glucose, and in prediabetes, people typically initially develop insulin resistance (where the body’s cells can’t respond to insulin as well), and over time (if no actions are taken to reverse the situation) the ability to produce sufficient insulin is reduced. People with prediabetes also commonly have high blood pressure as well as abnormal blood lipids (e.g. cholesterol). These often occur prior to the rise of blood glucose levels.
After two months under the care of the naturopath, John returned to his primary care doctor to discover that his hemoglobin A1c had dropped from 8.9% to 4.9%—a nondiabetic range. For eight months and counting, he’s been off all his diabetes medication. His last A1c reading was 5.1%. With the help of his naturopath, John seems to have reversed his diabetes.
If diagnosed at an early stage, diabetes can be controlled with some minor lifestyle changes. A person can straightaway keep a check on his/her diet and start exercising on a regular basis. At any stage of diabetes, however, lifestyle changes are required. Therefore, it is better to imbibe these changes in one's life as soon as one comes to know about this disease.
Dr. Fung says he decided to experiment with intermittent fasting because he was frustrated seeing so many diabetic patients with kidney failure. “It occurred to me that fasting was an underutilized therapeutic option for losing weight,” he recalls. “I started doing this five years ago, and a lot of people got incredibly good results – it reversed their diabetes.”
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.
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The reason the body stops producing insulin is that it kills off the pancreas’ beta cells, which produce insulin. People with Type 1 diabetes must get their insulin from injections or ingestion, a cumbersome and often imprecise task. Too little insulin and blood sugar levels stay high for extended periods, potentially damaging the body; too much and blood sugar levels crash, possibly causing a person with diabetes to faint or experience an even worse problems, such as a stroke.
Some of the above drugs are available in compound form, and there are many patients taking three to four of them to control their blood sugar. But again, "the most common duo is metformin and a sulfonylurea,” says Arti Bhan, MD, division head of endocrinology at Henry Ford Health System in Detroit. “Metformin makes the body utilize insulin more effectively, and the sulfonylurea works on the pancreas to make more insulin in response to food consumption. Another common combination is metformin and insulin.”
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Although the promises are big, these technologies are still far from the market. First, clinical trials will have to show they do work. Then, the price could be steep, as cell therapy precedents for other applications, such as oncology, come with price tags that reach the six figures and are finding difficulties to get reimbursed. Considering that compared to cancer, diabetes is not an immediately life-threatening disease, health insurers in some countries might be reluctant to cover the treatment.
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