基于工程生物功能材料的视神经再生神经引导导管:细胞视角、挑战与未来展望

IF 5.6 1区 医学 Q1 MATERIALS SCIENCE, BIOMATERIALS
Regenerative Biomaterials Pub Date : 2024-11-22 eCollection Date: 2025-01-01 DOI:10.1093/rb/rbae133
Enoch Obeng, Baoguo Shen, Wei Wang, Zhenyuan Xie, Wenyi Zhang, Zhixing Li, Qinqin Yao, Wencan Wu
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引用次数: 0

摘要

神经损伤可以等同于严重的损害,标准的治疗方法,如使用自体移植物或手术,会带来并发症,并能缩短缓解时间。与视神经再生有关的机制似乎尚未完全揭示。由于视神经受到直接或间接的损伤而导致的视力丧失的普遍比率是惊人的。目前,神经引导导管(NGC)的使用在一定程度上是可靠的,特别是在啮齿动物和周围神经系统中,这是一个有希望的再生和功能恢复的基础,然而在视神经中,这种NGC功能似乎并不为人所知。NGC的应用不足和视神经的完整再生可能是由于对细胞和分子活动的信息有限。本文就外伤性视神经病变的细胞和分子活性及NGC在视神经再生中的应用作一综述。对细胞和分子概念的理解包括,眼部炎症,轴突生长的外在信号和内在信号,移动锌的作用,与视神经相关的Ca2+因子,基于分子信息的纳米技术替代疗法,最后是纳米技术的前景,包括适用的生物材料和使用NGC进行再生。并对视神经再生面临的挑战和前景进行了展望。基于多种方法,细胞和分子机制的综合作用可能为NGC在视神经再生中的有效应用奠定基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Engineered bio-functional material-based nerve guide conduits for optic nerve regeneration: a view from the cellular perspective, challenges and the future outlook.

Nerve injuries can be tantamount to severe impairment, standard treatment such as the use of autograft or surgery comes with complications and confers a shortened relief. The mechanism relevant to the regeneration of the optic nerve seems yet to be fully uncovered. The prevailing rate of vision loss as a result of direct or indirect insult on the optic nerve is alarming. Currently, the use of nerve guide conduits (NGC) to some extent has proven reliable especially in rodents and among the peripheral nervous system, a promising ground for regeneration and functional recovery, however in the optic nerve, this NGC function seems quite unfamous. The insufficient NGC application and the unabridged regeneration of the optic nerve could be a result of the limited information on cellular and molecular activities. This review seeks to tackle two major factors (i) the cellular and molecular activity involved in traumatic optic neuropathy and (ii) the NGC application for the optic nerve regeneration. The understanding of cellular and molecular concepts encompassed, ocular inflammation, extrinsic signaling and intrinsic signaling for axon growth, mobile zinc role, Ca2+ factor associated with the optic nerve, alternative therapies from nanotechnology based on the molecular information and finally the nanotechnological outlook encompassing applicable biomaterials and the use of NGC for regeneration. The challenges and future outlook regarding optic nerve regenerations are also discussed. Upon the many approaches used, the comprehensive role of the cellular and molecular mechanism may set grounds for the efficient application of the NGC for optic nerve regeneration.

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来源期刊
Regenerative Biomaterials
Regenerative Biomaterials Materials Science-Biomaterials
CiteScore
7.90
自引率
16.40%
发文量
92
审稿时长
10 weeks
期刊介绍: Regenerative Biomaterials is an international, interdisciplinary, peer-reviewed journal publishing the latest advances in biomaterials and regenerative medicine. The journal provides a forum for the publication of original research papers, reviews, clinical case reports, and commentaries on the topics relevant to the development of advanced regenerative biomaterials concerning novel regenerative technologies and therapeutic approaches for the regeneration and repair of damaged tissues and organs. The interactions of biomaterials with cells and tissue, especially with stem cells, will be of particular focus.
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