Advancements in stimulation therapies for peripheral nerve regeneration

再生(生物学) 刺激 医学 伤口愈合 细胞外基质 神经调节 组织工程 神经科学 再生医学 软组织 生物医学工程 病理 外科 干细胞 生物 细胞生物学 内科学
作者
Rosalie Bordett,Khadija Basiru Danazumi,Suranji Wijekoon,Christopher J Garcia,Sama Abdulmalik,Sangamesh G. Kumbar
出处
期刊:Biomedical Materials [IOP Publishing]
卷期号:19 (5): 052008-052008 被引量:3
标识
DOI:10.1088/1748-605x/ad651d
摘要

Abstract Soft-tissue injuries affecting muscles, nerves, vasculature, tendons, and ligaments often diminish the quality of life due to pain, loss of function, and financial burdens. Both natural healing and surgical interventions can result in scarring, which potentially may impede functional recovery and lead to persistent pain. Scar tissue, characterized by a highly disorganized fibrotic extracellular matrix, may serve as a physical barrier to regeneration and drug delivery. While approaches such as drugs, biomaterials, cells, external stimulation, and other physical forces show promise in mitigating scarring and promoting regenerative healing, their implementation remains limited and challenging. Ultrasound, laser, electrical, and magnetic forms of external stimulation have been utilized to promote soft tissue as well as neural tissue regeneration. After stimulation, neural tissues experience increased proliferation of Schwann cells, secretion of neurotropic factors, production of myelin, and growth of vasculature, all aimed at supporting axon regeneration and innervation. Yet, the outcomes of healing vary depending on the pathophysiology of the damaged nerve, the timing of stimulation following injury, and the specific parameters of stimulation employed. Increased treatment intensity and duration have been noted to hinder the healing process by inducing tissue damage. These stimulation modalities, either alone or in combination with nerve guidance conduits and scaffolds, have been demonstrated to promote healing. However, the literature currently lacks a detailed understanding of the stimulation parameters used for nerve healing applications. In this article, we aim to address this gap by summarizing existing reports and providing an overview of stimulation parameters alongside their associated healing outcomes.

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