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多通道神经导管,具有神经营养因子的空间梯度和定向纳米形貌,用于修复周围神经系统。

Multichanneled Nerve Guidance Conduit with Spatial Gradients of Neurotrophic Factors and Oriented Nanotopography for Repairing the Peripheral Nervous System.

机构信息

Department of Neurosurgery, Cathay General Hospital , Taipei 106, Taiwan.

Department of Materials Engineering, Tatung University , Taipei 10491, Taiwan.

出版信息

ACS Appl Mater Interfaces. 2017 Nov 1;9(43):37623-37636. doi: 10.1021/acsami.7b12567. Epub 2017 Oct 17.

Abstract

Peripheral nerve injuries, causing sensory and motor impairment, affect a great number of patients annually. It is therefore important to incorporate different strategies to promote nerve healing. Among the treatment options, however, the efficacy of nerve conduits is often compromised by their lack of living cells, insufficient growth factors, and absence of the extracellular matrix (ECM)-like structure. To improve the functional recovery, we aimed to develop a natural biodegradable multichanneled scaffold characterized with aligned electrospun nanofibers and neurotrophic gradient (MC/AN/NG) to guide axon outgrowth. The gelatin-based conduits mimicked the fascicular architecture of natural nerve ECM. The multichanneled (MC) scaffolds, cross-linked with microbial transglutaminase, possessed sustainable mechanical stability. Meanwhile, the release profile of dual neurotrophic factors, nerve growth factor (NGF) and brain-derived neurotrophic factor (BDNF), exhibited a temporal-controlled manner. In vitro, the differentiated neural stem cells effectively extended their neurites along the aligned nanofibers. Besides, in the treated group, the cell density increased in high NGF concentration regions of the gradient membrane, and the BDNF significantly promoted myelination. In a rabbit sciatic nerve transection in vivo model, the MC/AN/NG scaffold showed superior nerve recovery and less muscle atrophy comparable to autograft. By integrating multiple strategies to promote peripheral nerve regeneration, the MC/AN/NG scaffolds as nerve guidance conduits showed promising results and efficacious treatment alternatives for autologous nerve grafts.

摘要

周围神经损伤导致感觉和运动功能障碍,每年影响大量患者。因此,采用不同策略促进神经愈合非常重要。然而,在这些治疗选择中,神经导管的疗效常常受到缺乏活细胞、生长因子不足和缺乏细胞外基质 (ECM) 样结构的限制。为了改善功能恢复,我们旨在开发一种具有取向电纺纳米纤维和神经营养递降梯度的天然可生物降解多腔支架 (MC/AN/NG),以引导轴突生长。基于明胶的导管模拟了天然神经 ECM 的束状结构。用微生物转谷氨酰胺酶交联的多腔 (MC) 支架具有可持续的机械稳定性。同时,双重神经营养因子神经生长因子 (NGF) 和脑源性神经营养因子 (BDNF) 的释放呈时间控制方式。体外,分化的神经干细胞有效地沿着取向纳米纤维延伸其神经突。此外,在处理组中,梯度膜中高 NGF 浓度区域的细胞密度增加,BDNF 显著促进髓鞘形成。在兔坐骨神经横断体内模型中,MC/AN/NG 支架显示出优越的神经恢复和与自体移植物相当的肌肉萎缩减少。通过整合多种策略来促进周围神经再生,MC/AN/NG 支架作为神经引导导管显示出有希望的结果,并为自体神经移植物提供了有效的治疗选择。

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