治疗周围神经损伤的分子疗法的生理学基础:初级读本

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引用次数: 0

摘要

在手部和上肢遭受创伤的患者中,有相当一部分人受到周围神经损伤的影响。尽管显微外科修复技术不断进步,但如何改善这些损伤的修复效果仍是一项临床挑战。神经再生过程中的缺陷,包括不精确的神经再支配、远端轴突退化和肌肉萎缩,使修复过程变得更加复杂。然而,周围神经的再生能力为治疗提供了一个进步的途径。再生是一个时间和空间上的动态过程,由许旺细胞和神经元等细胞类型协调。神经营养因子是在修复环境中控制细胞生长和分化的主要手段。通过施用神经营养因子,包括胶质细胞源性神经营养因子、神经生长因子、无菌α和含TIR基序1以及促红细胞生成素,可改善轴突的持续存活和再生,从而改善动物模型中神经修复的功能结果。研究表明,通过明胶神经导管、多腔导管和水凝胶定向和持续输送神经营养因子可增强这些因子的先天作用,从而促进动物模型中外周神经的快速和准确再生。这些给药方法可能有助于解决神经营养因子临床应用中的实际限制,包括全身副作用以及需要仔细计时、精确定位的释放时间表。此外,他克莫司也能改善动物模型的周围神经再生,最近还显示出治疗人类疾病的前景。最终,这些辅助药物疗法有望改善患者的治疗效果,推动周围神经修复领域的发展。
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The Physiologic Basis of Molecular Therapeutics for Peripheral Nerve Injury: A Primer

Peripheral nerve injuries affect a significant number of patients who experience trauma affecting the hand and upper extremity. Improving unsatisfactory outcomes from repair of these injuries remains a clinical challenge despite advancements in microsurgical repair. Imperfections of the nerve regeneration process, including imprecise reinnervation, distal axon degradation, and muscular atrophy, complicate the repair process. However, the capacity for peripheral nerves to regenerate offers an avenue for therapeutic advancement. Regeneration is a temporally and spatially dynamic process coordinated by Schwann cells and neurons among other cell types. Neurotrophic factors are a primary means of controlling cell growth and differentiation in the repair setting. Sustained axon survival and regrowth and consequently functional outcomes of nerve repair in animal models are improved by the administration of neurotrophic factors, including glial cell-derived neurotrophic factor, nerve growth factor, sterile alpha and TIR motif containing 1, and erythropoietin. Targeted and sustained delivery of neurotrophic factors through gelatin-based nerve conduits, multiluminal conduits, and hydrogels have been shown to enhance the innate roles of these factors to promote expedient and accurate peripheral nerve regeneration in animal models. These delivery methods may help address the practical limitations to clinical use of neurotrophic factors, including systemic side effects and the need for carefully timed, precisely localized release schedules. In addition, tacrolimus has also improved peripheral nerve regrowth in animal models and has recently shown promise in addressing human disease. Ultimately, this realm of adjunct pharmacotherapies provides ample promise to improve patient outcomes and advance the field of peripheral nerve repair.

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1.10
自引率
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发文量
111
审稿时长
12 weeks
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