Currently, there is no cure for Type 1 diabetes, but it can be treated successfully by administering insulin, either by an injection or pump, and by following a healthy, balanced diet and getting regular physical activity. Looking after diabetes requires planning and attention, which may feel overwhelming at times, especially when your child is first diagnosed. However, there’s no reason for it to stop your child living the healthy, happy and successful life you had hoped for them.

Researchers from Newcastle and Glasgow Universities believe they have found a way to effectively reverse type 2 diabetes, without requiring a new kind of drug or invasive surgery. Type 2 diabetes is a chronic condition that affects how a person’s body metabolizes sugar, either because they’ve developed resistance to the hormone insulin, or their pancreas fails to produce enough insulin.


Formal recommendations on how to reverse type 2 diabetes in clinical practice must await further studies. In the meantime, it will be helpful for all individuals with newly diagnosed type 2 diabetes to know that they have a metabolic syndrome that is reversible. They should know that if it is not reversed, the consequences for future health and cost of life insurance are dire, although these serious adverse effects must be balanced against the difficulties and privations associated with a substantial and sustained change in eating patterns. For many people, this may prove to be too high a price to pay, but for those who are strongly motivated to escape from type 2 diabetes, the new understanding gives clear direction. Physicians need to accept that long-term weight loss is achievable for a worthwhile proportion of patients (96). In the United States, diabetes costs $174 billion annually (97), and in the United Kingdom, it accounts for 10% of National Health Service expenditure. Even if only a small proportion of patients with type 2 diabetes return to normal glucose control, the savings in disease burden and economic cost will be enormous.

Reversal of type 2 diabetes to normal metabolic control by either bariatric surgery or hypocaloric diet allows for the time sequence of underlying pathophysiologic mechanisms to be observed. In reverse order, the same mechanisms are likely to determine the events leading to the onset of hyperglycemia and permit insight into the etiology of type 2 diabetes. Within 7 days of instituting a substantial negative calorie balance by either dietary intervention or bariatric surgery, fasting plasma glucose levels can normalize. This rapid change relates to a substantial fall in liver fat content and return of normal hepatic insulin sensitivity. Over 8 weeks, first phase and maximal rates of insulin secretion steadily return to normal, and this change is in step with steadily decreasing pancreatic fat content. The difference in time course of these two processes is striking. Recent information on the intracellular effects of excess lipid intermediaries explains the likely biochemical basis, which simplifies both the basic understanding of the condition and the concepts used to determine appropriate management. Recent large, long-duration population studies on time course of plasma glucose and insulin secretion before the diagnosis of diabetes are consistent with this new understanding. Type 2 diabetes has long been regarded as inevitably progressive, requiring increasing numbers of oral hypoglycemic agents and eventually insulin, but it is now certain that the disease process can be halted with restoration of normal carbohydrate and fat metabolism. Type 2 diabetes can be understood as a potentially reversible metabolic state precipitated by the single cause of chronic excess intraorgan fat.
The overall goal of treatment with insulin (and other diabetes medicines) is to achieve the best match possible between the amounts of insulin given and the person's individual needs for insulin throughout the day and night. In this way, blood sugar levels can be kept as close to normal as possible to help avoid both short- and long-term problems from diabetes.
Efforts to cure or stop type 1 diabetes are still in the early stages, and these approaches will also not be suitable for people that have already lost their insulin-producing cells. A solution could be the creation of an “artificial pancreas” — a fully automated system that can measure glucose levels and inject the right amount of insulin into the bloodstream, just like a healthy pancreas would.
Karen Addington, UK Chief Executive of the type 1 diabetes charity JDRF, said: "These results provide further evidence that the immune system's assault on insulin-producing beta cells is not as complete as we once believed -- and may change over time. This further opens the door to identifying ways to preserve insulin production in people diagnosed with or living with type 1 diabetes."

A 2012 review of ginseng in animals and human beings found that not only does ginseng reduce insulin resistance, it also lowers HbA1C levels. It’s been used in traditional Chinese medicine for centuries as one of the most potent herbs for blood sugar control. Indian ginseng, also called Ashwagandha, offers fantastic all round benefits. Scientists are also researching the connection between diabetes and Alzhiemer’s. Panax Ginseng is a type of ginseng that is able to help with both diabetes and Alzheimer’s.
Herbal medicine has been an integral part of TCM for more than 2,000 years. Many herbal formulations have been developed and are used in the treatment of diabetes. The Huang Di Nei Jing (Yellow Emperor’s Inner Classic), which dates from the Han Dynasty 206 B.C.–220 A.D., listed 13 herbal formulations, 9 of which were patent medicines including pills, powders, plasters, and tinctures.12 The sources of Chinese remedies are varied and include plants, minerals, and animal parts.3
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First, avoid the One-A-Day brand. All of the well-known One-A-Day products contain poor-quality products at low doses, and are full of unhealthy excipients, fillers, and preservatives. A high-quality multiple will require you to take three to six capsules a day, but will cover all the nutrients your body needs. For children, there are good liquid or powder multiples.
Schedule a yearly physical exam and regular eye exams. Your regular diabetes checkups aren't meant to replace regular physicals or routine eye exams. During the physical, your doctor will look for any diabetes-related complications, as well as screen for other medical problems. Your eye care specialist will check for signs of retinal damage, cataracts and glaucoma.
Because the drugs listed above act in different ways to lower blood glucose levels, they may be used together. For example, a biguanide and a sulfonylurea may be used together. Many combinations can be used. Though taking more than one drug can be more costly and can increase the risk of side effects, combining oral medications can improve blood glucose control when taking only a single pill does not have the desired effects. Switching from one single pill to another is not as effective as adding another type of diabetes medicine.

Chinese medicine has been using cinnamon for medicinal purposes for hundreds of years. It has been the subject of numerous studies to determine its effect on blood glucose levels. A 2011 study has shown that cinnamon, in whole form or extract, helps lower fasting blood glucose levels. More studies are being done, but cinnamon is showing promise for helping to treat diabetes.
On day four, my glucose levels had dropped to 4.6 after fasting for 10 hours overnight. It was the first time I'd ever scored a 4. But on day six, I felt really cold. It was mid-July but in the morning my fingertips were white and I had to wear a T-shirt, shirt, jumper and jacket to work. I was hungry, and just walking around the office was tiring. But I was down to 9st 3lb.

Although a close relationship exists among raised liver fat levels, insulin resistance, and raised liver enzyme levels (52), high levels of liver fat are not inevitably associated with hepatic insulin resistance. This is analogous to the discordance observed in the muscle of trained athletes in whom raised intramyocellular triacylglycerol is associated with high insulin sensitivity (53). This relationship is also seen in muscle of mice overexpressing the enzyme DGAT-1, which rapidly esterifies diacylglycerol to metabolically inert triacylglycerol (54). In both circumstances, raised intracellular triacylglycerol stores coexist with normal insulin sensitivity. When a variant of PNPLA3 was described as determining increased hepatic fat levels, it appeared that a major factor underlying nonalcoholic fatty liver disease and insulin resistance was identified (55). However, this relatively rare genetic variant is not associated with hepatic insulin resistance (56). Because the responsible G allele of PNPLA3 is believed to code for a lipase that is ineffective in triacylglycerol hydrolysis, it appears that diacylglycerol and fatty acids are sequestered as inert triacylglycerol, preventing any inhibitory effect on insulin signaling.
The team emphasizes that there is a large gap between curing diabetic mice and achieving the same in human beings. They say that they'd like to start clinical trials in three years, but more animal testing is needed first at a cost of about US$5 million, as well as making an application to the US Food and Drug Administration for investigational new drug approval.
What are the symptoms of prediabetes? People typically do not have symptoms of prediabetes, which is partially why up to 90% of people don’t know they have it. The ADA reports that some people with prediabetes may develop symptoms of type 2 diabetes, though even many people diagnosed with type 2 diabetes show little or no symptoms initially at diagnosis.

In a study that looked at the anti-hyperglycemic and lipid-lowering properties of Emblica officinalis Gaertn. (Amla) fruit in normal and diabetic human volunteers, the results showed a significant decrease in fasting and 2-h post-prandial blood glucose levels on the 21st day in both normal and diabetic subjects receiving 1, 2 or 3 grams of Amla powder per day as compared with their baseline values.
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It is also known as insulin-dependent diabetes mellitus (IDDM) and results from body's inability to produce insulin. Usually, it occurs in childhood or adolescence, but can surface up at any age. In this, the patient needs to take insulin injections on regular intervals (generally daily) in order to absorb glucose in the body. Type 1 diabetes mellitus is also referred to as juvenile diabetes, at times.
TCM is a system of healing that originated thousands of years ago. It has evolved into a well-developed, coherent system of medicine that uses several modalities to treat and prevent illness. The most commonly employed therapeutic methods in TCM include acupuncture/moxibustion, Chinese herbal medicine, diet therapy, mind/body exercises (Qigong and Tai Chi), and Tui Na (Chinese massage).3

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The twin cycle hypothesis of the etiology of type 2 diabetes. During long-term intake of more calories than are expended each day, any excess carbohydrate must undergo de novo lipogenesis, which particularly promotes fat accumulation in the liver. Because insulin stimulates de novo lipogenesis, individuals with a degree of insulin resistance (determined by family or lifestyle factors) will accumulate liver fat more readily than others because of higher plasma insulin levels. In turn, the increased liver fat will cause relative resistance to insulin suppression of hepatic glucose production. Over many years, a modest increase in fasting plasma glucose level will stimulate increased basal insulin secretion rates to maintain euglycemia. The consequent hyperinsulinemia will further increase the conversion of excess calories to liver fat. A cycle of hyperinsulinemia and blunted suppression of hepatic glucose production becomes established. Fatty liver leads to increased export of VLDL triacylglycerol (85), which will increase fat delivery to all tissues, including the islets. This process is further stimulated by elevated plasma glucose levels (85). Excess fatty acid availability in the pancreatic islet would be expected to impair the acute insulin secretion in response to ingested food, and at a certain level of fatty acid exposure, postprandial hyperglycemia will supervene. The hyperglycemia will further increase insulin secretion rates, with consequent enhancement of hepatic lipogenesis, spinning the liver cycle faster and driving the pancreas cycle. Eventually, the fatty acid and glucose inhibitory effects on the islets reach a trigger level that leads to a relatively sudden onset of clinical diabetes. Figure adapted with permission from Taylor (98).
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A wide scatter of absolute levels of pancreas triacylglycerol has been reported, with a tendency for higher levels in people with diabetes (57). This large population study showed overlap between diabetic and weight-matched control groups. These findings were also observed in a more recent smaller study that used a more precise method (21). Why would one person have normal β-cell function with a pancreas fat level of, for example, 8%, whereas another has type 2 diabetes with a pancreas fat level of 5%? There must be varying degrees of liposusceptibility of the metabolic organs, and this has been demonstrated in relation to ethnic differences (72). If the fat is simply not available to the body, then the susceptibility of the pancreas will not be tested, whereas if the individual acquires excess fat stores, then β-cell failure may or may not develop depending on degree of liposusceptibility. In any group of people with type 2 diabetes, simple inspection reveals that diabetes develops in some with a body mass index (BMI) in the normal or overweight range, whereas others have a very high BMI. The pathophysiologic changes in insulin secretion and insulin sensitivity are not different in obese and normal weight people (73), and the upswing in population rates of type 2 diabetes relates to a right shift in the whole BMI distribution. Hence, the person with a BMI of 24 and type 2 diabetes would in a previous era have had a BMI of 21 and no diabetes. It is clear that individual susceptibility factors determine the onset of the condition, and both genetic and epigenetic factors may contribute. Given that diabetes cannot occur without loss of acute insulin response to food, it can be postulated that this failure of acute insulin secretion could relate to both accumulation of fat and susceptibility to the adverse effect of excess fat in the pancreas.
In type 1 diabetes, the body produces none of the insulin that regulates our blood sugar levels. Very high glucose levels can damage the body's organs. Patients with type 2 diabetes, however, do produce insulin - just not enough to keep their glucose levels normal. Because I was fit and not overweight (obesity is a major risk factor in type 2 diabetes; however, a number of non-obese people, particularly members of south Asian communities, are also prone to it), my doctor told me I could control my condition with diet alone.
Dr. Steven Lin is a dentist who focusses on the mouth-body connection. Through ancestral nutrition, the oral and gut microbiome, and epigenetics, his programs aim to prevent chronic dental and systemic disease. His book 'The Dental Diet', will be released on January 18'. To receive free updates on functional oral health from Dr. Lin, subscribe to his newsletter below.
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