再生(生物学)
体内
细胞生物学
周围神经
神经导管
雪旺细胞
外周神经系统
生物
外围设备
解剖
神经科学
中枢神经系统
医学
内科学
生物技术
作者
Meiyuan Li,Xiyang Cheng,Shuyue Feng,Hui Zhu,Panjian Lu,Ping Zhang,Xiaodong Cai,Pingping Qiao,Xiaosong Gu,Gang Wang,Chengbin Xue,Hongkui Wang
出处
期刊:Glia
[Wiley]
日期:2023-03-27
卷期号:71 (7): 1755-1769
被引量:8
摘要
Prevascularization strategies have become a hot spot in tissue engineering. As one of the potential candidates for seed cells, skin precursor-derived Schwann cells (SKP-SCs) were endowed with a new role to more efficiently construct prevascularized tissue-engineered peripheral nerves. The silk fibroin scaffolds seeded with SKP-SCs were prevascularized through subcutaneously implantation, which was further assembled with the SKP-SC-containing chitosan conduit. SKP-SCs expressed pro-angiogenic factors in vitro and in vivo. SKP-SCs significantly accelerated the satisfied prevascularization in vivo of silk fibroin scaffolds compared with VEGF. Moreover, the NGF expression revealed that pregenerated blood vessels adapted to the nerve regeneration microenvironment through reeducation. The short-term nerve regeneration of SKP-SCs-prevascularization was obviously superior to that of non-prevascularization. At 12 weeks postinjury, both SKP-SCs-prevascularization and VEGF-prevascularization significantly improved nerve regeneration with a comparable degree. Our figures provide a new enlightenment for the optimization of prevascularization strategies and how to further utilize tissue engineering for better repair.
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