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用于同时促进新血管形成和神经再生的双功能化壳聚糖/胶原蛋白支架的构建

Construction of Dual-Biofunctionalized Chitosan/Collagen Scaffolds for Simultaneous Neovascularization and Nerve Regeneration.

作者信息

Li Guicai, Han Qi, Lu Panjian, Zhang Liling, Zhang Yuezhou, Chen Shiyu, Zhang Ping, Zhang Luzhong, Cui Wenguo, Wang Hongkui, Zhang Hongbo

机构信息

Key Laboratory of Neuroregeneration of Jiangsu and Ministry of Education, Nantong University, 226001 Nantong, China.

Co-Innovation Center of Neuroregeneration, Nantong University, 226001 Nantong, China.

出版信息

Research (Wash D C). 2020 Aug 10;2020:2603048. doi: 10.34133/2020/2603048. eCollection 2020.

Abstract

Biofunctionalization of artificial nerve implants by incorporation of specific bioactive factors has greatly enhanced the success of grafting procedures for peripheral nerve regeneration. However, most studies on novel biofunctionalized implants have emphasized the promotion of neuronal and axonal repair over vascularization, a process critical for long-term functional restoration. We constructed a dual-biofunctionalized chitosan/collagen composite scaffold with Ile-Lys-Val-Ala-Val (IKVAV) and vascular endothelial growth factor (VEGF) by combining solution blending, lyophilization, and surface biomodification. Immobilization of VEGF and IKVAV on the scaffolds was confirmed both qualitatively by staining and quantitatively by ELISA. Various single- and dual-biofunctionalized scaffolds were compared for the promotion of endothelial cell (EC) and Schwann cell (SC) proliferation as well as the induction of angiogenic and neuroregeneration-associated genes by these cells in culture. The efficacy of these scaffolds for vascularization was evaluated by implantation in chicken embryos, while functional repair capacity was assessed in rats subjected to a 10 mm sciatic nerve injury. Dual-biofunctionalized scaffolds supported robust EC and SC proliferation and upregulated the expression levels of multiple genes and proteins related to neuroregeneration and vascularization. Dual-biofunctionalized scaffolds demonstrated superior vascularization induction in embryos and greater promotion of vascularization, myelination, and functional recovery in rats. These findings support the clinical potential of VEGF/IKVAV dual-biofunctionalized chitosan/collagen composite scaffolds for facilitating peripheral nerve regeneration, making it an attractive candidate for repairing critical nerve defect. The study may provide a critical experimental and theoretical basis for the development and design of new artificial nerve implants with excellent biological performance.

摘要

通过掺入特定生物活性因子对人工神经植入物进行生物功能化,极大地提高了周围神经再生移植手术的成功率。然而,大多数关于新型生物功能化植入物的研究都强调促进神经元和轴突修复,而忽视了血管生成这一长期功能恢复的关键过程。我们通过溶液共混、冻干和表面生物改性相结合的方法,构建了一种含有异亮氨酸-赖氨酸-缬氨酸-丙氨酸-缬氨酸(IKVAV)和血管内皮生长因子(VEGF)的双功能化壳聚糖/胶原蛋白复合支架。通过染色定性和ELISA定量证实了VEGF和IKVAV在支架上的固定。比较了各种单功能化和双功能化支架对内皮细胞(EC)和雪旺细胞(SC)增殖的促进作用,以及这些细胞在培养中对血管生成和神经再生相关基因的诱导作用。通过植入鸡胚评估这些支架的血管生成效果,同时在坐骨神经损伤10毫米的大鼠中评估其功能修复能力。双功能化支架支持强大的EC和SC增殖,并上调了与神经再生和血管生成相关的多个基因和蛋白质的表达水平。双功能化支架在胚胎中表现出卓越的血管生成诱导能力,在大鼠中对血管生成、髓鞘形成和功能恢复有更大的促进作用。这些发现支持了VEGF/IKVAV双功能化壳聚糖/胶原蛋白复合支架在促进周围神经再生方面的临床潜力,使其成为修复严重神经缺损的有吸引力的候选材料。该研究可能为开发具有优异生物学性能的新型人工神经植入物提供关键的实验和理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c5b/7436332/51e5cd49af67/RESEARCH2020-2603048.001.jpg

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