View clinical trials related to Diabetic Neuropathies.
Filter by:Management of symptoms associated with diabetic neuropathy is a difficult issue for clinicians since it usually does not respond to standard analgesics. Resveratrol is a naturally occurring plant-derived, polyphenolic compound, it exerts pleiotropic activity. The investigators believed that the implementation of multidisciplinary approaches including pharmacotherapy and provision of healthcare professional services such as pharmacist intervention are needed for alleviation of diabetic associated neuropathy.Therefore, the hypothesis of the present protocol is that the administration of resveratrol and/or provision of pharmaceutical care in patients with diabetic neuropathy might be of value in improving quality of life and managing diabetic neuropathic pain.The study is designed as a four-arm randomized, placebo-controlled clinical trial. Group one will be given only conventional hypoglycemic drugs. Group two patients will receive conventional hypoglycemic drugs accompanied by pharmacist interventions. Group three; patients will receive resveratrol 500 mg orally once daily after meals for three months, in addition to their regular hypoglycemic drugs. Group four; patients will receive resveratrol 500 mg orally once daily after meals along with their regular hypoglycemic drugs for a period of three months, accompanied by pharmacist interventions. Neuropathic pain will be measured by various neuropathic pain assessment tools. Nerve conduction studies will be performed to assess the effect of interventional therapy. The expected outcome will be the improvement of diabetic neuropathy associated symptoms along with glycemic status.
Diabetic peripheral neuropathy (DPN) is the most common chronic complication of diabetes, affecting about 50% of patients with diabetes and leading to severe morbidity, poor quality of life, high mortality, and high health care costs. Due to the complex structure and anatomy of the peripheral nervous system, DPN presents with a very broad spectrum of clinical symptoms and deficits, including severe pain, sensory deficits, foot ulcers and amputations. Presently there is no treatment for DPN and even with good blood glucose control DPN develops especially in patients with type 2 diabetes. There is a need to identify effective interventions for DPN. Preclinical studies have provided evidence that the combination of fish oil and salsalate is an effective treatment of DPN. The human subject study to be performed will examine the effect of fish oil with and without salsalate on the blood lipid profile and circulating metabolites of omega-3 polyunsaturated fatty acids (PUFA). Fish oil is an excellent source for the nutrition dependent omega-3 PUFA, primarily eicosapentaenoic acid (EPA; 20:5) and docosahexaenoic acid (DHA; 22:6). These fatty acids are the source of anti-inflammatory metabolites known as resolvin, neuroprotectin and maresin. Preclinical studies have also demonstrated that the metabolites of EPA and DHA are neuroprotective. Furthermore, when fish oil is combined with salsalate the production of these metabolites is increased in vivo. Thus, the investigators hypothesize that fish oil and salsalate will be an effective therapy of DPN. However, prior to doing a formal study of the effect of fish oil + salsalate on DPN there is a need to learn more about what concentration combination will provide the most efficacious effect on the omega-3 index (defined as the sum of EPA and DHA, as a percentage of total fatty acids in red blood cells) and that will safely increase the production of the anti-inflammatory metabolites. These studies will be performed at two sites the University of Iowa (Dr. Yorek) and University of Michigan (Dr. Pop-Busui) by treating human subjects with type 2 diabetes and DPN with either 2g or 4g of fish oil per day (capsules) for 4 months and then adding salsalate 1.5 g or 3g per day (tablets) to the fish oil treatments for an additional 2 months. At baseline and after treatment with fish oil alone and after treatment with the combination of fish oil and salsalate the omega-3 index and levels of circulating omega-3 PUFA metabolites will be determined as primary endpoints. Secondary endpoints will include determination of circulatory inflammatory markers and non-invasive measurements for DPN. The risks to subjects are minimal and are very reasonable in relation to the importance of the knowledge to be gained.
The purpose of this research is to compare the effectiveness of providing dietary education to complement Intraneural Facilitation® Therapy (INF® Therapy) (a physical therapy technique being evaluated that may help improve circulation) versus INF® Therapy only in adults with a type of neuropathy called distal symmetric polyneuropathy (DSPN).
Aims: To investigate early markers of arterial stiffness and nerve dysfunction and the association to an extended glucose metabolic profile comprising glucose control (current and past), glucose variability and insulin sensitivity in children and adolescents with type 1 diabetes (T1D). Background: Most Danish children and adolescents with T1D do not achieve their metabolic target and are at increased risk of developing long-term diabetic complications, reducing their life expectancy and increase their morbidity rate. Hence, improved metabolic control, a better understanding of what optimal metabolic control means, combined with detailed monitoring of the first markers of long-term complications and their reversibility or lack thereof are needed. Methods: A prospectivel study of 400 children, aged 6-18 years old, with T1D>12 months. Early markers of long-term diabetic complications will be investigated as arterial stiffness, nerve dysfunction and nephropathy. Data on T1D onset, duration, treatment modality, self-monitoring-blood-glucose profiles, growth, weight, and pubertal status will be collected. Blood sampling will include routine tests and markers of glucose, lipid, bone, and gastrointestinal metabolism. DXA-scan, Fibroscan, bone-age, eye-examination and physical activity will be measured. Data on retrospective glucose- and lipid-profiles will be collected. The children will be offered a followup every 5 years for the next two decades. Perspectives: This study provides novel insight into the frequency of early markers of long-term diabetic complications and its association to the interplay of the pancreas, adipose, gastrointestinal and bone metabolic axis. Which can assist in identifying subgroups of children and adolescents requiring earlier in-depth screening for early markers of long-term diabetic complications, for putative interventions for prevention, hence reducing morbidity and mortality in T1D.
Sensorimotor neuropathy (SMN) and cardiovascular autonomic neuropathy (CAN) are the most common complications of type 2 diabetes (T2D). SMN affects ~30% of people with T2D and CAN ~20%. SMN causes pain, impairs and limits physical activity, and increases the risk for physical disability, complications (such as foot ulcerations), and premature mortality. Moreover, both motor and sensory nerve function are important regulators of muscle function; impaired myofiber innervation causes myofiber loss, muscle fat infiltration, and increases the risk of age-associated sarcopenia and falls. CAN often goes unrecognized because it presents with non-specific symptoms, such as resting tachycardia and fixed heart rate, exercise intolerance, and orthostatic hypotension. However, CAN is a serious problem because it increases the risk for cardiovascular events and mortality several-fold. Both SMN and CAN have long been considered a consequence of T2D, but it is now becoming clear that they precede the diagnosis of T2D and are already detectable in people with prediabetes, especially those with impaired glucose tolerance. Treatments for both SMN and CAN focus on symptom management because there are no effective therapeutics that target the underlying neuropathy. The results from studies conducted in animal models suggest fish oil-derived n-3 polyunsaturated fatty acids (n-3 PUFA) may have therapeutic effects for people with SMN and CAN. The purpose of this proposal is to conduct a randomized controlled trial to test the hypothesis that dietary supplementation with fish oil-derived n-3 PUFA improves sensorimotor and cardiovascular autonomic functions in people with impaired glucose tolerance. Forty 55-80 year old men and women with impaired glucose tolerance (plasma glucose 2 h after a 75 g glucose challenge ≥140 mg/dl) and evidence of SMN (assessed as epidermal nerve fiber density) will be randomized to either receive fish oil-derived n-3 PUFA (4.2 g per day; n=20) or placebo (n=20) for six months. Sensorimotor and cardiovascular autonomic function will be evaluated after three and 6 months of the interventions.
The aim of the study is to evaluate the effects of neuropathic pain due to type 2 diabetes on balance and gait. The study is a prospective controlled study. The study is being carried out at the Physical Therapy and Rehabilitation Center Gait Analysis Laboratory Unit in Turkey. Individuals diagnosed with neuropathic pain due to Type 2 Diabetes and individuals with diabetes without neuropathic pain are included in the study by clinical examination and tests by a physician. At the same time, healthy individuals are participating as the control group. There will 3 groups in the study : Group 1: Individuals diagnosed with neuropathic pain due to type 2 diabetes (n=14) Group 2: Individuals with type 2 diabetes but no neuropathic pain (n=14) Group 3: Healthy control group (n=14) Assessments: Individual and clinical characteristics of individuals: age, gender, height, body weight, marital status, education level, duration of complaints, and dominant side. Douleur Neuropathique en 4 questions (DN4) Leeds Assessment of Neuropathic Symptoms and Signs (LANSS) Pain Questionnaire Visual Analog Scale (VAS) Gait analysis Static and dynamic balance The data will be analyzed using the statistical program for social sciences (SPSS) version 21.0 (IBM SPSS Statistics for Windows, Armonk, NY: IBM Corp.). The data will be expressed as mean standard deviation (X±SD) and number (n%). The homogeneity of the groups will be evaluated with the Levene Test. Balance, plantar pressure, and walking values between the groups will be compared using the Kruskal Wallis Test. All the statistical analyses will be set a priori at an alpha level of p<0.05.
The purpose of this study is to investigate the efficacy, safety, tolerability and pharmacokinetics of MT-8554, compared to placebo, in subjects with painful diabetic peripheral neuropathy.
This study primarily seeks to evaluate dysfunction of small blood vessels and their linkage to dysfunction of nerves in people with Type 2 Diabetes. The purpose of this research is to explore some of the underlying pathophysiology of diabetic peripheral neuropathy, particularly painful diabetic peripheral neuropathy. The pain experienced by individuals with painful diabetic peripheral neuropathy is severe and associated with low quality of life. The pain does not typically respond well to pharmacological management. The processes underpinning the sources of pain are poorly understood, consequently only around a third of patients benefit from existing treatments. Some historic research on the sources of pain suggest the retention of the ability to reduce blood flow in small vessels may underpin these pain pathways. This research aims to explore this possibility, looking at the nerve-linked response in small vessels with a flickering light within the eye. Participants will complete three or four questionnaires: one demographic, two to aid with stratifying participants into groups concerning symptoms of neuropathy and an additional questionnaire if participants are stratified to the painful DPN group. A basic neurological examination of the feet will follow. Basic measurements of height, weight and blood pressure will be recorded for each participant. The primary sites of measurement of this small vessel dysfunction will be the eye and the foot investigated in a non-invasive manner. A bright flickering light will be shone into participants eyes, with the reaction of small vessels recorded. Sensors will also be placed on the feet and chest of participants and warmed to ~44C. An image will be taken of participants eyes to measure nerve layer thickness and an area of skin on the forearm will be illuminated to measure for levels of a metabolic marker. A picture of the eye will also be taken to determine nerve layer thickness.
Aging is a natural process that is frequently accompanied by chronic physical or mental health problems. Aging as well as a sedentary lifestyle behavior may produce identical pathological and morphological changes. Saudi population, especially elderly people assume sedentary lifestyle, with little physical activity is a strong predisposition for developing a disability that adversely affects many aspects of physical and mental functions; mainly mobility and the ability to perform the basic daily living activities (ADL); resulting finally in increased risk of independence, loss of functionality, and falls. Type 2 diabetes mellitus (T2DM) is a widespread chronic metabolic disorder, accounts for 90-95% of all patients with diabetes. It is one of the most life-threatening public health challenges in the world, characterized by long term complications that almost involves all systems of the body. Polyneuropathy is the most common symptomatic complication in patients with type 2 diabetes mellitus, found in 50 to 60 % of patients over the age of sixty, with the impaired glycemic control and deteriorated quality of life are among the most debilitating problems in patients with diabetic polyneuropathy.
Aging can be defined as sequential deterioration that occurs in elderly people including weakness, loss of mobility, decline of physical capabilities, increase susceptibility to disease and many other age-related physiological changes .The beginning of old age in most developed countries is about 60 or 65 years old. Diabetes mellitus (DM) and most commonly type 2 DM is one of the most common chronic non-communicable diseases affecting old people in Saudi Arabia which might be resulted from decline in physical activities. Polyneuropathy (PN) and its serious consequences represent the most common complication in diabetic mellitus which could contribute to an increased gait abnormality and risk of falling.