Center for Materials Innovation and Future Fashion (CMIFF), School of Fashion and Textiles, RMIT University, Brunswick, Australia.
Department of Dyes and Chemical Engineering, Bangladesh University of Textiles, Dhaka, Bangladesh.
J Biomed Mater Res A. 2023 Dec;111(12):1916-1950. doi: 10.1002/jbm.a.37595. Epub 2023 Aug 9.
At present, peripheral nerve injuries (PNIs) are one of the leading causes of substantial impairment around the globe. Complete recovery of nerve function after an injury is challenging. Currently, autologous nerve grafts are being used as a treatment; however, this has several downsides, for example, donor site morbidity, shortage of donor sites, loss of sensation, inflammation, and neuroma development. The most promising alternative is the development of a nerve guide conduit (NGC) to direct the restoration and renewal of neuronal axons from the proximal to the distal end to facilitate nerve regeneration and maximize sensory and functional recovery. Alternatively, the response of nerve cells to electrical stimulation (ES) has a substantial regenerative effect. The incorporation of electrically conductive biomaterials in the fabrication of smart NGCs facilitates the function of ES throughout the active proliferation state. This article overviews the potency of the various categories of electroactive smart biomaterials, including conductive and piezoelectric nanomaterials, piezoelectric polymers, and organic conductive polymers that researchers have employed latterly to fabricate smart NGCs and their potentiality in future clinical application. It also summarizes a comprehensive analysis of the recent research and advancements in the application of ES in the field of NGC.
目前,周围神经损伤(PNI)是全球导致严重功能障碍的主要原因之一。神经损伤后的功能完全恢复具有挑战性。目前,自体神经移植被用作一种治疗方法;然而,这种方法有几个缺点,例如供体部位发病率、供体部位短缺、感觉丧失、炎症和神经瘤形成。最有前途的替代方法是开发神经引导导管(NGC),以引导从近端到远端的神经元轴突的恢复和更新,从而促进神经再生并最大限度地提高感觉和功能恢复。或者,神经细胞对电刺激(ES)的反应具有实质性的再生作用。在智能 NGC 的制造中加入导电生物材料,有助于 ES 在主动增殖状态下发挥作用。本文综述了各种电活性智能生物材料的效力,包括导电和压电纳米材料、压电聚合物以及有机导电聚合物,研究人员最近利用这些材料来制造智能 NGC 及其在未来临床应用中的潜力。它还总结了对 ES 在 NGC 领域应用的最新研究和进展的全面分析。