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Diabetic Neuropathies clinical trials

View clinical trials related to Diabetic Neuropathies.

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NCT ID: NCT05813496 Recruiting - Clinical trials for Polyneuropathy, Diabetic

Phase IV Trial to Evaluate Efficacy of Alpha-Lipoic Acid in Treating Symptomatic Diabetic Polyneuropathy in Egypt

MIRACLE-ALA
Start date: October 26, 2022
Phase: Phase 4
Study type: Interventional

The purpose of the study is to find out whether ALA is effective and safe for treating Egyptian diabetic patients with symptomatic polyneuropathy. The ADA stated that despite the exploration of several pharmacological therapies for DPN management, substantial evidence on medicines that modify the natural history of DPN is still absent. This is a multicenter, interventional, two-arm, parallel-group, randomized, double-blinded, placebo-controlled, phase IV trial. Patients will be administered either one tablet of placebo or one tablet containing 600 mg of ALA twice a day for 24 weeks, depending on the randomization process.

NCT ID: NCT05777317 Recruiting - Clinical trials for Painful Diabetic Neuropathy

Pain and Neurological Function Improvements With 10 kHz Spinal Cord Stimulation Treatment of Painful Diabetic Neuropathy

PDN-SENSORY
Start date: April 24, 2023
Phase: N/A
Study type: Interventional

The purpose of this post-market study is to evaluate changes in pain and neurological function with high frequency, 10 kHz spinal cord stimulation (SCS) therapy in patients with chronic, intractable lower limb pain associated with diabetic peripheral neuropathy, a condition known as painful diabetic neuropathy (PDN). This is a multi-center, prospective, randomized controlled study to evaluate improvement in pain and neurological function in PDN patients, with neurological function assessed via objective measures. Patients will be randomized to conventional medical management (CMM) or 10 kHz SCS plus CMM.

NCT ID: NCT05754190 Recruiting - Chronic Pain Clinical Trials

Assessing Symptom and Mood Dynamics in Pain Using the Smartphone Application SOMA

Start date: June 20, 2023
Phase:
Study type: Observational

This study relies on the use of a smartphone application (SOMA) that the investigators developed for tracking daily mood, pain, and activity status in acute pain, chronic pain, and healthy controls over four months.The primary goal of the study is to use fluctuations in daily self-reported symptoms to identify computational predictors of acute-chronic pain transition, pain recovery, and/or chronic pain maintenance or flareups. The general study will include anyone with current acute or chronic pain, while a smaller sub-study will use a subset of patients from the chronic pain group who have been diagnosed with chronic low back pain, failed back surgery syndrome, or fibromyalgia. These sub-study participants will first take part in one in-person EEG testing session while completing simple interoception and reinforcement learning tasks and then begin daily use of the SOMA app. Electrophysiologic and behavioral data from the EEG testing session will be used to determine predictors of treatment response in the sub-study.

NCT ID: NCT05683106 Recruiting - Clinical trials for Diabetic Neuropathies

Effects of Customized Silicone Digital Orthoses in People With Diabetic Neuropathy

Start date: September 6, 2023
Phase: N/A
Study type: Interventional

The present study aims to evaluate the efficacy and safety of the use of customized silicone digital orthoses for six months in the distribution of plantar pressure, in the reduction of pre-ulcerative lesions and plantar ulcers in the forefoot, foot deformities, quality of life and foot health and functionality in people with diabetes and neuropathy with risk category 2 and 3 for ulcers, according to the International Working Group on Diabetic Foot.

NCT ID: NCT05642143 Recruiting - Type 2 Diabetes Clinical Trials

Deep Phenotyping of Bone Disease in Type 2 Diabetes and Relations to Diabetic Neuropathy

Start date: February 24, 2023
Phase:
Study type: Observational

Objectives: The goal of this cross sectional clinical trial is to examine the phenotype of bone disease in type 2 diabetes.The main aims are to: 1. Compare bone microarchitecture, bone biomechanical competence, and bone turnover markers as well as postural control in T2D patients with and without fractures. 2. Examine how autonomic and peripheral neuropathy affects bone microarchitecture, bone material strength and bone turnover markers as well as postural control in T2D. Methods: The trial is of cross-sectional design and consists of examinations including - Blood samples to analyze bone markers, glycemic state i.e. - Bone scans including dual energy x-ray absorptiometry (DXA) and high resolution peripheral quantitative computed tomography (HRpQCT) to evaluate Bone Mineral Density, t-score and bone structure. - Microindentation to evaluate bone material strength - Skin autofluorescence to measure levels of advanced glycation endproducts (AGEs) in the skin - Assesment of nerve function (peripheral and autonomic) - Assesment of postural control, muscle strength and gait Participants: A total of 300 type 2 diabetes patients divided to three groups: - 160 with no history of fractures or diabetic neuropathy - 100 with a history of fracture(s) - 40 with autonomic neuropathy or severe peripheral neuropathy

NCT ID: NCT05624762 Recruiting - Clinical trials for Painful Diabetic Neuropathy

The Therapeutic Effect of Low-intensity Focused Ultrasound on Painful Diabetic Peripheral Neuropathy

Start date: July 7, 2022
Phase: N/A
Study type: Interventional

Diabetic painful peripheral neuropathy (DPN) constitutes a serious threat to the outcomes of patients with diabetes. Yet, the treatments for targeting the underlying nerve damage and relieving pain are limited. The low-intensity focused ultrasound (LIFU) has been demonstrated to regulate neuronal activity without any concomitant tissue damage. Studies in animal models have shown that LIFU could protect nerve cells against inflammation and oxidative stress, as well as stimulate neurotrophic factor production. In humans, LIFU has been reported to be effective in relieving peripheral neurogenic pain caused by carpal tunnel syndrome and chemotherapy drugs. Thus, we aim to design a randomized controlled double-blind study by using LIFU. The primary endpoint is the patient's pain score (NRS), and the secondary endpoints include Neuropathy Symptom Score (NSS) and Neuropathy Deficit Score (NDS). Through this study, we anticipate establishing a new method for managing painful DPN.

NCT ID: NCT05623111 Recruiting - Clinical trials for Diabetic Neuropathy, Painful

Perineural Injections of Incobotulinumtoxin-A for Diabetic Neuropathic Pain of the Lower Extremities

PINBOT
Start date: August 1, 2023
Phase: Phase 2
Study type: Interventional

The goal of this clinical trial is to test perineural injections (injections around a nerve) of incobotulinumtoxin-A in participants with diabetic nerve pain of the feet and lower legs. The main questions it aims to answer are: - Is the treatment safe and effective? - Does the treatment affect participants quality of life, depression, physical activity, daily life, and sensation? Participants will be treated every 12 weeks, for a total of 24 weeks, with either incobotulinumtoxin-A or a placebo.

NCT ID: NCT05521737 Recruiting - Clinical trials for Diabetic Peripheral Neuropathy

Effect of Electroacupuncture on Sensitive Symptoms of Distal Diabetic Peripheral Neuropathy

EA&DPN
Start date: November 1, 2021
Phase: N/A
Study type: Interventional

This is a controlled clinical trial with the aim to study the effects of electroacupuncture on neuropathic pain reduction, quality of life and changes in sensory and motor nerve conduction velocity in patients with type 2 diabetes mellitus, beneficiaries of the familiar medical centers 20, 40 and 41 of the Instituto Mexicano del Seguro Social, at north of Mexico City, in colaboration with the human acupuncture specialty of the Escuela Nacional de Medicina y Homeopatía, Instituto Politécnico Nacional, Mexico.

NCT ID: NCT05507697 Recruiting - Clinical trials for Diabetic Peripheral Neuropathy Type 2

Treatment With Human Umbilical Cord Mesenchymal Stem Cells for Refractory Diabetic Peripheral Neuropathy

Start date: May 19, 2022
Phase: Phase 1/Phase 2
Study type: Interventional

Diabetic Peripheral Neuropathy (DPN) is one of the most common chronic complications in type 2 diabetes, conventional drug therapy can only target a single pathogenesis but not treat Diabetic Peripheral Neuropathy (DPN) fundamentally. As a novel technique, stem cell transplantation provides a new option for patients with DPN. In 2012, Wuhan Central Hospital, took the lead in carrying out clinical research on the treatment of DPN with autologous bone marrow stem cells in China, and patients were significantly relieved. Based on this research, our clinical trial is to evaluate the safety and efficacy of HUC-MSCs in the treatment of refractory diabetic peripheral neuropathy (DPN) by formulating standard operating procedures (SOP) and quality standards (QS) to explore the possible mechanism of HUC-MSCs in the treatment of DPN.

NCT ID: NCT05483816 Recruiting - Amputation Clinical Trials

multiSENSory Stimulation to tArgeT Sensory Loss and chronIc Pain in neurOpathic patieNts

SENSATION
Start date: June 30, 2022
Phase: N/A
Study type: Interventional

Neuropathy is a costly and disabling health issue, which consists of a degeneration of the peripheral nerves. Even though the causes may be different, such as diabetes or amputation, the consequences for neuropathic patients are multiple and extremely debilitating. Among the alarming symptoms it implicates, chronic pain and sensory loss are among the most severe ones. Because of the loss of sensations, patients are forced to have an altered gait strategy, an impaired balance and a fivefold increased risk of falling. Furthermore, since they lose sensations and feel numbness in their extremity, they are discouraged in walking, hence leading to a sedentary lifestyle. All of this is worsened by the development of neuropathic pain, which has a high comorbidity with psychological issues, such as depression and anxiety. Today, proper treatments for neuropathic pain that exclude pharmacological solutions are still missing. This is due to the complexity of the neurobiological mechanisms underlying the origin of neuropathy, the multifaceted physical and psychological nature of pain and the lack of reliable biomarkers. The aim of this project is to tackle the major problems connected to neuropathy thanks to non-invasive stimulation of the peripheral nervous system. The system is composed of an insole with pressure sensors that captures in real time the force exerted by the subject on the foot and couples this information with parameters of electrical stimulation. Thanks to optimal electrode placement and intensity modulation, subjects are able to perceive in real-time in a somatotopic manner (i.e., under their foot) how they are walking. The aim now is twofold: first the investigators want to couple this stimulation with Virtual Reality (VR) to develop a neuroadaptive non-invasive brain computer interface (BCI) to treat pain and secondly the investigators want to measure through fMRI scans whether the use of the sensory feedback system allows any beneficial plastic changes in the brain. Finally, the investigators want to measure through fMRI scans whether the use of the sensory feedback system allows any beneficial plastic changes in the brain.