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首页> 外文期刊>Journal of biomedical materials research, Part A >Neurotrophin‐3 released from implant of tissue‐engineered fibroin scaffolds inhibits inflammation, enhances nerve fiber regeneration, and improves motor function in canine spinal cord injury
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Neurotrophin‐3 released from implant of tissue‐engineered fibroin scaffolds inhibits inflammation, enhances nerve fiber regeneration, and improves motor function in canine spinal cord injury

机译:从组织工程化纤维素支架植入物中释放的神经营养蛋白-3抑制炎症,增强神经纤维再生,并改善犬脊髓损伤中的运动功能

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Abstract Spinal cord injury (SCI) normally results in cell death, scarring, cavitation, inhibitory molecules release, etc., which are regarded as a huge obstacle to reconnect the injured neuronal circuits because of the lack of effective stimulus. In this study, a functional gelatin sponge scaffold was used to inhibit local inflammation, enhance nerve fiber regeneration, and improve neural conduction in the canine. This scaffold had good porosity and modified with neurotrophin‐3 (NT‐3)/fibroin complex, which showed sustained release in vitro . After the scaffold was transplanted into canine spinal cord hemisection model, hindlimb movement, and neural conduction were improved evidently. Migrating host cells, newly formed neurons with associated synaptic structures together with functional blood vessels with intact endothelium in the regenerating tissue were identified. Taken together, the results demonstrated that using bioactive scaffold could establish effective microenvironment stimuli for endogenous regeneration, providing a potential and practical strategy for treatment of spinal cord injury. ? 2018 The Authors Journal of Biomedical Materials Research Part A Published by Wiley Periodicals, Inc. J Biomed Mater Res Part A: 106A: 2158‐2170, 2018.
机译:摘要脊髓损伤(SCI)通常会导致细胞死亡,疤痕,空化,抑制分子释放等,这被认为是重新连接受伤神经元电路的巨大障碍,因为缺乏有效的刺激。在该研究中,使用功能性明胶海绵支架来抑制局部炎症,增强神经纤维再生,并改善犬内的神经传导。该支架具有良好的孔隙率和用神经滋生蛋白-3(NT-3)/纤维素复合物改性,其显示体外持续释放。将支架移植到犬脊髓周切模型后,明显改善了后肢运动和神经传导。鉴定了宿主细胞,具有相关突触结构的新形成的神经元与具有再生组织中的完整内皮的功能血管一起进行鉴定。连胜,结果表明,使用生物活性支架可以建立有效的微环境刺激,用于内源再生,提供脊髓损伤的潜在和实际策略。还2018年作者杂志研究了Wiley期刊发布的A Inc.J生物密制A部分:106A:2158-2170,2018。

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