Showing posts with label neuropathy. Show all posts
Showing posts with label neuropathy. Show all posts

Tuesday, May 19, 2009

Triglycerides implicated in diabetes nerve loss

To stall progress of neuropathy, doctors should monitor levels of an easily measured blood fat as closely as they do blood sugar, study suggests

ANN ARBOR, Mich., 19 may 2– A common blood test for triglycerides – a well-known cardiovascular disease risk factor – may also for the first time allow doctors to predict which patients with diabetes are more likely to develop the serious, common complication of neuropathy.

In a study now online in the journal Diabetes, University of Michigan and Wayne State University researchers analyzed data from 427 diabetes patients with neuropathy, a condition in which nerves are damaged or lost with resulting numbness, tingling and pain, often in the hands, arms, legs and feet. The data revealed that if a patient had elevated triglycerides, he or she was significantly more likely to experience worsening neuropathy over a period of one year. Other factors, such as higher levels of other fats in the blood or of blood glucose, did not turn out to be significant. The study will appear in print in the journal's July issue.

"In our study, elevated serum triglycerides were the most accurate at predicting nerve fiber loss, compared to all other measures," says Kelli A. Sullivan, Ph.D., co-first author of the study and an assistant research professor in neurology at the U-M Medical School.

"These results set the stage for clinicians to be able to address lowering lipid counts with their diabetes patients with neuropathy as vigilantly as they pursue glucose control," says Eva L. Feldman, M.D., Ph.D., senior author of the study and the Russell N. DeJong Professor of Neurology at the U-M Medical School.

With a readily available predictor for nerve damage – triglycerides are measured as part of routine blood testing – doctors and patients can take pro-active steps when interventions can do some good, says Feldman.

"Aggressive treatment can be very beneficial to patients in terms of their neuropathy," says Feldman, who is also director of the A. Alfred Taubman Medical Research Institute and director of the Juvenile Diabetes Research Foundation Center at U-M for the study of complications in diabetes.

People can reduce blood triglyceride levels with the same measures that reduce cholesterol levels: by avoiding harmful fats in the diet and exercising regularly.

Context

Diabetic neuropathy affects around 60 percent of the 23 million people in the United States who have diabetes. It is a complication in both type 1 and type 2 diabetes.

Until now, doctors have lacked an effective way to predict which diabetes patients are at greatest risk of neuropathy. Most often, the condition becomes evident when irreversible nerve damage has already occurred. Neuropathy is the leading cause of diabetes-related hospital admissions and amputations that are not secondary to trauma.

Triglycerides are a type of lipid, or fat, that the body makes from calories it doesn't need immediately. Triglycerides are stored in fat cells until they are needed to provide energy. When higher-than-normal amounts circulate in the blood, a person is at higher risk of cardiovascular disease.

Research implications

The new finding adds to an emerging picture of the close connections between cardiovascular disease and diabetes. Elevated triglycerides are one of the most common features of the lipid disorders found in patients with type 2 diabetes, by far the most common form of diabetes, says Rodica Pop-Busui, M.D., Ph.D., one of the study's authors and an assistant professor in the metabolism, endocrinology and diabetes division of the Department of Internal Medicine at the U-M Medical School.

"Cardiovascular disease is the main cause of excess mortality among patients with diabetes. Research also has shown that the presence of neuropathy is an important predictor of these deaths," says Pop-Busui.

"Our findings in this study reinforce the tight links between cardiovascular disease and peripheral neuropathy in patients with diabetes. We demonstrated that the same lipid particles that contribute to the progression of atherosclerosis are also very important players in peripheral nerve fiber loss."

In addition, the study confirms a growing belief among some diabetes researchers that elevated blood levels of certain lipids, rather than solely elevated blood sugar, are key in the progression of diabetic neuropathy. The study pinpoints triglycerides as the critical indicator.

Research details

The researchers examined data from a previous clinical trial of a drug that showed promise for relieving neuropathy. They looked at data from 427 participants who had mild to moderate diabetic neuropathy at the beginning of the one-year trial. Among other factors, the trial measured myelinated fiber density in a peripheral nerve in the leg in participants over the course of the year. A decline in this density is a prime indicator that neuropathy is worsening.

The new findings from U-M are an example of how medical science often looks for one thing and doesn't find it—the drug trial found that a promising agent turned out to be ineffective for treating neuropathy—but the data can yield unexpected, useful knowledge about something else.

Realizing the trial data held potential clues, the U-M team selected trial participants who had similar characteristics regarding nerve function at the beginning of the study but significantly lower myelinated fiber densities at the end. They used microarray technology not available 15 years ago, when the data was collected.

"We then compared all of the other data concerning lipids and blood glucose. We found that out of all the data collected on these patients, elevated triglycerides were the factor that differed the most, when we compared the patients who lost nerve fibers with those who didn't," says Sullivan.

Elevated triglycerides correlated with the nerve fiber loss independent of disease duration, age, diabetes control or other variables.

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Other U-M authors include Timothy D. Wiggin, M.S., co-first author; non U-M authors are Anders Sima, M.D., professor of pathology and neurology at Wayne State University Medical School, and Antonino Amato, M.D., from Sigma-Tau Research.

Thursday, June 28, 2007

ADA: Fibrates and Statins Keep Diabetic Neuropathy at Bay

CHICAGO, June 27 -- Statins can cut the risk of peripheral neuropathy from type 2 diabetes by a third, and fibrates can do it by nearly half, reported Australian investigators here.
Among nearly 1,300 patients with type 2 diabetes who were part of a longitudinal study, statins were associated with reduced risk of peripheral sensory neuropathy by 35%, and fibrates by 45%, said Timothy Davis, M.D., Ph.D., of the University of Western Australia, in Perth.
The reduced risk associated with the two lipid-lowering classes should be considered comparable, because of the wide confidence intervals involved, said Dr. Davis at the American Diabetes Association meeting here.
Dr. Davis and colleagues conducted a cross-sectional study of 1,294 patients enrolled in the Fremantle Diabetes Study, a five-year prospective study, and also evaluated 531 patients in the study who had attended six comprehensive annual assessments.
They defined neuropathy as a score greater than two out of eight on the clinical portion of the Michigan Neuropathy Screening Instrument, which, according to Dr. Davis, is among the most sensitive and specific of the clinical screening tools.
The mean age of the patients in the cross-sectional sample was 64.1+11.3 years and 48.8% were men. The median duration since diagnosis was 4.0 (range 1.0-9.0) years, and 30.9% of the patients had peripheral neuropathy.
In all, 3.5% of the patients used fibrates -- gemfibrozil (Lopid) at study outset, and later fenofibrate (Lofibra) -- and 6.8% used statins, including atorvastatin (Lipitor), simvastatin (Zocor), and pravastatin (Pravachol).
The authors found that in logistic regression analyses, many different factors were independently and positively associated (P<0.03) with prevalent peripheral neuropathy at baseline. These factors included sociodemographics, older age, longer diabetes duration, central adiposity, increasing height, higher fasting plasma glucose, systolic blood pressure, ratio of urinary albumin to creatinine, and ethnic-racial background.
In contrast, the use of fibrate therapy was negatively associated with neuropathy (odds ratio 0.30 (95% confidence interval, 0.10-0.86, (P=0.025).
Among the patients in the longitudinal substudy, the use of fibrates increased to 10.4% over five years, and the use of statins grew to 36.5%. Among these patients, the time to new peripheral neuropathy was associated with longer use of both fibrates (hazard ratio 0.52, 95% CI, 0.27-0.98) and statins (hazard ratio 0.65, 95% CI, 0.46-0.93), and both associations were significant (P<0.042).
Neither study funding nor author conflicts of interest were disclosed.Primary source: American Diabetes Association 2007 Scientific SessionsSource reference: Davis T et al. "Lipid-lowering Therapy Protects Against Peripheral Sensory Neuropathy in Type 2 Diabetes." Abstract 0004 , presented June 22.

ADA: Neuropathy Most Likely to Strike in Type 2 Diabetes

CHICAGO, June 27 -- Painful neuropathy is more common in patients with type 2 diabetes than in those with type 1, possibly, researchers suggest, because of a link with the metabolic syndrome.
In an observational study, painful diabetic polyneuropathy was three times more common among type 2 patients than type 1 patients (17.9% versus 5.8%), reported Ides M. Colin, M.D., Ph.D., of CHR-S. Joseph Medical Center in Mons, Belgium, and colleagues.
This type of neuropathy was independently associated with three components of the metabolic syndrome-obesity, low HDL cholesterol, and high triglyceride levels -- they said at the American Diabetes Association meeting here.
"The higher prevalence of diabetic polyneuropathy in type 2 diabetic patients could be due to the involvement of metabolic syndrome-associated disturbances," they wrote.
Because the epidemiology of painful diabetic polyneuropathy had not been well characterized, the researchers conducted a cross-sectional study that included 1,111 patients at 40 Belgian diabetes clinics; 344 had type 1diabetes and 767 had type 2.
The researchers tested for neuropathy in patients' feet using a monofilament for sensory perception and a device called the Neuropen for pain sensation. Participants also completed a questionnaire on characteristics of the pain sensation.
Nearly half of the patients overall complained of pain on the visual analog scale. Patients with type 2 diabetes reported it more frequently than did those with type 1 (53.6% versus 34.9%).
The occurrence of diabetic polyneuropathy was significantly higher among type 2 diabetes patients than type 1 patients (50.8% versus 25.6%, P=0.0007).
The prevalence of painful diabetic polyneuropathy showed the same significant difference (17.9% versus 5.6%).
Factors associated with higher diabetic neuropathy in a multivariate analysis were male gender (P=0.02), increasing age (P<0.0001), type 2 diabetes (P=0.02), increasing duration of the disease (P=0.0006), and HDL cholesterol at or below 40 mg/dL for men or 50 mg/dL for women (P<0.0001).
The strongest predictors of neuropathy in a bivariate analysis were foot problems (odds ratio 10.5, P<0.0001) and low HDL cholesterol (OR 2.14, P<0.0001).
Independent predictors of painful diabetic neuropathy were:
Low HDL cholesterol (OR 2.17, 95% confidence interval 1.38 to 3.41, P=0.0008).
Triglyceride levels at or above 150 mg/dL (OR 1.76, 95% CI 1.13 to 2.75, P=0.01).
Obesity (OR 1.62, 95% CI 1.05 to 2.49, P=0.03).
Nephropathy (OR 1.69, 95% CI 1.10 to 2.59, P=0.02).
Age (OR 1.47 per decade, 95% CI 1.20 to 1.81, P=0.0003).
Diabetes duration (OR 1.14 per five years, 95% 1.02 to 1.28, P=0.02).
The researchers concluded that neuropathy and painful neuropathy are mainly associated with type 2 diabetes, potentially via the metabolic syndrome, which encompassed the majority of the strong predictors found.