View clinical trials related to Diabetic Neuropathies.
Filter by:At the current time there is no effective disease modifying therapy for diabetic neuropathy (DN). The proposed study design employs a quantifiable early measure of DN, intraepidermal nerve fiber density (IENFD), allowing for accurate assessment of actual nerve fiber density. Preclinical data supports the use of Niagen® (3-(Aminocarbonyl)-1-β-D-ribofuranosyl-pyridinium chloride - NR) as a potential therapy for diabetic neuropathy. Phase I data indicates safety in humans. This study seeks to investigate the use of Niagen® (NR) as a potential treatment for diabetic neuropathy in subjects with type 2 diabetes mellitus or impaired glucose tolerance over a 6 month period. The endpoint measures in addition to the IENFD with determine changes in clinical and electrophysiological outcomes, quality of life and biochemical measures.
This study evaluated the effects of interactive video game-based exercise (IVGB) on balance in diabetic patients with peripheral neuropathy. Twenty-four patients were randomly assigned to two groups (12 participants per group). Group A received IVGB training for the first 6 weeks, with no exercise in the subsequent 6 weeks. Group B had no exercise for the first 6 weeks and then underwent IVGB training in the subsequent 6 weeks. Both subjective and objective measures were used to determine whether IVGB exercise improves balance function.
This study evaluates the analgesic effect of Omnitram for the treatment of painful diabetic neuropathy. Each subject with diabetic neuropathy will be treated for four weeks with Omnitram and for four weeks with placebo. The order of the Omnitram and placebo treatment will be random.
The purpose of this study is to assess the effects of Transcranial Direct Current Stimulation (tDCS) in combination with Transcranial ultrasound (TUS) for the treatment of pain and functional limitations in subjects with Diabetic Neuropathic Pain.
Peripheral neuropathy is very common in diabetes mellitus (DM). Till now there is no available effective therapy for this pathology. Objective: To evaluate the clinical effect of perineural platelet-rich plasma (PRP) injection as a treatment of diabetic peripheral neuropathy (DPN).
The study will evaluate whether an experimental medical device that emits a series of brief, intense magnetic pulse will relieve foot pain from Diabetic Neuropathy (DN). The United States Food and Drug Administration (FDA) has approved a similar device for treatment of migraine headaches, but this type of device has not been studied for the treatment of DN.
This study evaluates the effect of additional hyperbaric oxygen therapy after lower extremity amputation. The patients will be randomized after amputation to either a treatment group receiving hyperbaric oxygen therapy, or control group.
Painful Diabetic peripheral Neuropathy Study of Chinese OutPatiEnt (PDN-SCOPE): a multi-center cross-sectional registry study of clinical characteristics and treatment survey of PDN in China
Diabetes mellitus is the leading cause of polyneuropathy in the Western world. Diabetic neuropathy is a frequent complication of diabetes and may have great clinical transcendence due to pain and possible ulceration of the lower extremities. It is also a relevant cause of morbidity and mortality in patients with diabetes. Although the cause of polyneuropathy in patients with diabetes is only partially known, it has been associated with chronic hyperglycaemia suggesting the possible aetiopathogenic implication of advanced glycosylation end-products. The strategy of choice in the medical management of diabetic neuropathy is early detection since glycaemic control and the use of certain drugs may prevent or slow the development of this disease. Diabetic neuropathy most often presents with a dysfunction of unmyelinated C-fibers, manifested as an alteration of the sweat reflex of the eccrine glands. This dysfunction can now be demonstrated using a newly developed technology which measures dermal electrochemical conductivity. This noninvasive test is easy and cost-effective. The aim of the present study is to evaluate the feasibility and effectiveness of dermal electrochemical conductance measurement (quantitative expression of the sudomotor reflex) as a screening test for the diagnosis of diabetic neuropathy in patients in primary care.
Part A of this trial is a multi-center, prospective, double-blinded, sham-controlled, randomized clinical trial. Part A will evaluate PEMF treatment compared to sham treatment in patients with painful diabetic distal symmetric peripheral neuropathy (DSPN) when treatment is administered 30 minutes twice daily through a 120-day period (4 months). Part B is a 8-month open-label active treatment extension period designed to collect longer-term data on pain, medication use, quality of life and safety (Part B).Part B of this trial is a an extension period upon completion of Part A.