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स्क्रिनमा देखिने चुरोट: सुर्तीजन्य हानि न्यूनीकरण नीतिमा दक्षिण एसियाले अझै के छुटाइरहेको छनेपालमा पिसाब नलीको संक्रमण र एन्टिबायोटिक प्रतिरोधको बढ्दो संकटFrontline Perspectives on Nursing Leadership in NepalProtecting the Smallest Lungs from the Hidden Grip of RSV in KathmanduThe Heavy Burden of Bullying on Student Wellbeing in NepalThe Emerging Landscape of Thyroid Health in Central NepalHow a Recent Western Nepal Study is Redefining Anemia DiagnosisHow H. Pylori is Impacting the Health of Karnali’s High-Altitude CommunitiesSweet Poison, Bitter Reality: The Unseen Diabetes Epidemic Among Nepal’s YouthHow Missing Checklists and Protocols are Costing Lives in Nepal’s ERsस्क्रिनमा देखिने चुरोट: सुर्तीजन्य हानि न्यूनीकरण नीतिमा दक्षिण एसियाले अझै के छुटाइरहेको छनेपालमा पिसाब नलीको संक्रमण र एन्टिबायोटिक प्रतिरोधको बढ्दो संकटFrontline Perspectives on Nursing Leadership in NepalProtecting the Smallest Lungs from the Hidden Grip of RSV in KathmanduThe Heavy Burden of Bullying on Student Wellbeing in NepalThe Emerging Landscape of Thyroid Health in Central NepalHow a Recent Western Nepal Study is Redefining Anemia DiagnosisHow H. Pylori is Impacting the Health of Karnali’s High-Altitude CommunitiesSweet Poison, Bitter Reality: The Unseen Diabetes Epidemic Among Nepal’s YouthHow Missing Checklists and Protocols are Costing Lives in Nepal’s ERs

Roadmap update: Sensory neurodegeneration in diabetes.

Researchers

Douglas W Zochodne, Maskaki Kobayashi, Prashanth Komirishetty, Aparna Areti

Abstract

Human diabetic polyneuropathy (DPN) is a pervasive disabling complication of both types 1 and 2 diabetes mellitus (DM). Here we build on our previous report in this journal, addressing the direct targeting of sensory neurons and the subsequent withdrawal of their distal axon terminals. Specific, albeit largely untested, translational therapeutic approaches are available to 'shore up' the sensory neuron and enable it to regrow its branches. This review provides updated information over several selected pathways our research team has been focused on. We review the evidence for sensory neuron targeting in DM including new human work, specific molecules within neuron perikarya (cell bodies) that foster sensory regeneration and newer ideas on how local nonsystemic targeting of growth cones might also promote regrowth. Our update presupposes important connections between the molecular machinery that supports intact neurons and the capacity of neurons to regrow, reversing DPN deficits. This review is limited in scope but may be a template to investigate the wide repertoire of proteins and noncoding RNAs that might be employed to eventually treat and reverse DPN.
Source: PubMed (PMID: 42767719)View Original on PubMed