Graduate Institute of Basic Medical Sciences, China Medical University, Taichung, Taiwan.
Department of Traditional Chinese Medicine, Tzu Chi Hospital, Hualien, Taiwan.
Sci Rep. 2017 Dec 13;7(1):17489. doi: 10.1038/s41598-017-17792-2.
In our previous study, we found that gelatin-based materials exhibit good conductivity and are non-cytotoxic. In this study, gelatin was cross-linked with bisvinyl sulfonemethyl (BVSM) to fabricate a biodegradable conduit for peripheral nerve repair. First, BVSM on the prepared conduit was characterized to determine its mechanical properties and contact angle. The maximum tensile strength and water contact angle of the gelatin-BVSM conduits were 23 ± 4.8 MPa and 74.7 ± 9°, which provided sufficient mechanical strength to resist muscular contraction; additionally, the surface was hydrophilic. Cytotoxicity and apoptosis assays using Schwann cells demonstrated that the gelatin-BVSM conduits are non-cytotoxic. Next, we examined the neuronal electrophysiology, animal behavior, neuronal connectivity, macrophage infiltration, calcitonin gene-related peptide localization and expression, as well as the expression levels of nerve regeneration-related proteins. The number of fluorogold-labelled cells and histological analysis of the gelatin-BVSM nerve conduits was similar to that observed with the clinical use of silicone rubber conduits after 8 weeks of repair. Therefore, our results demonstrate that gelatin-BVSM conduits are promising substrates for application as bioengineered grafts for nerve tissue regeneration.
在我们之前的研究中,我们发现基于明胶的材料具有良好的导电性且无细胞毒性。在这项研究中,我们使用双乙烯砜甲基(BVSM)交联明胶,以制备用于周围神经修复的可生物降解导管。首先,对制备好的导管上的 BVSM 进行了特征描述,以确定其机械性能和接触角。明胶-BVSM 导管的最大拉伸强度和水接触角分别为 23±4.8 MPa 和 74.7±9°,这为抵抗肌肉收缩提供了足够的机械强度;此外,表面具有亲水性。使用施万细胞进行的细胞毒性和细胞凋亡检测表明,明胶-BVSM 导管无细胞毒性。接下来,我们研究了神经元电生理学、动物行为、神经元连接、巨噬细胞浸润、降钙素基因相关肽定位和表达以及与神经再生相关的蛋白质表达水平。修复 8 周后,荧光金标记细胞的数量和明胶-BVSM 神经导管的组织学分析与临床使用硅橡胶导管的结果相似。因此,我们的结果表明,明胶-BVSM 导管是作为神经组织再生的生物工程移植物应用的有前途的基质。