Therapeutic Potential of "Smart" Exosomes in Peripheral Nerve Regeneration.

Rajiv Supra, Daniel R Wilson, Devendra K Agrawal
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引用次数: 1

Abstract

Peripheral nerve injury results in severe loss of motor and sensory function in the affected limb. The gold standard for peripheral nerve repair is autologous nerve grafts, but their inherent drawbacks limit their use. Satisfactory clinical data are yet to be obtained using tissue engineered nerve grafts with neurotrophic factors introduced in these grafts for nerve repair. Therefore, peripheral nerve regeneration still remains a challenge for clinicians. Exosomes are secreted nanovesicles from the extracellular membrane. They are critical for communication within the cell and play a crucial role in the pathologic process of the peripheral nervous system. Recent research supports the role of exosomes in exhibiting neurotherapeutic effects through axonal growth, Schwann cell activation, and regulating inflammation. Indeed, the use of "smart" exosomes by reprogramming or manipulating the secretome contents and functions are rising as a therapeutic option for treating peripheral nerve defects. This review provides an overview on the promising role of exosomes in the process of peripheral nerve regeneration.

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“智能”外泌体在周围神经再生中的治疗潜力。
周围神经损伤可导致患肢运动和感觉功能的严重丧失。周围神经修复的金标准是自体神经移植,但其固有的缺陷限制了其应用。使用组织工程神经移植物并引入神经营养因子进行神经修复,目前还没有令人满意的临床数据。因此,周围神经再生仍然是临床医生面临的挑战。外泌体是从胞外膜分泌的纳米囊泡。它们对细胞内的通讯至关重要,在周围神经系统的病理过程中起着至关重要的作用。最近的研究支持外泌体通过轴突生长、雪旺细胞活化和调节炎症表现出神经治疗作用的作用。事实上,通过重编程或操纵分泌组的内容和功能来使用“智能”外泌体正在成为治疗周围神经缺陷的一种治疗选择。本文就外泌体在周围神经再生中的重要作用作一综述。
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The ERK Signaling Cascade Inhibits Gonadotropin-Stimulated Steroidogenesis. Immunomodulatory Effect of Electromagnetic Field in the Treatment of Traumatic Brain Injury. Accelerating Minimap2 for Accurate Long Read Alignment on GPUs. Cellular Mechanisms of Electromagnetic Field in Traumatic Brain Injury. Therapeutic Potential of "Smart" Exosomes in Peripheral Nerve Regeneration.
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