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负载脂肪干细胞的聚赖氨酸修饰大孔微载体在体内促进神经再生。

Polylysine-decorated macroporous microcarriers laden with adipose-derived stem cells promote nerve regeneration in vivo.

作者信息

Sun Yi, Chi Xiaoqi, Meng Haoye, Ma Mengjiao, Wang Jing, Feng Zhaoxuan, Quan Qi, Liu Guodong, Wang Yansen, Xie Yajie, Zheng Yudong, Peng Jiang

机构信息

School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing, 100083, PR China.

Qingdao National Laboratory for Marine Science and Technology, Qingdao, 266237, PR China.

出版信息

Bioact Mater. 2021 Apr 19;6(11):3987-3998. doi: 10.1016/j.bioactmat.2021.03.029. eCollection 2021 Nov.

Abstract

Cell transplantation is an effective strategy to improve the repair effect of nerve guide conduits (NGCs). However, problems such as low loading efficiency and cell anoikis undermine the outcomes. Microcarriers are efficient 3D cell culture scaffolds, which can also prevent cell anoikis by providing substrate for adhesion during transplantation. Here, we demonstrate for the first time microcarrier-based cell transplantation in peripheral nerve repair. We first prepared macroporous chitosan microcarriers (CSMCs) by the emulsion-phase separation method, and then decorated the CSMCs with polylysine (pl-CSMCs) to improve cell affinity. We then loaded the pl-CSMCs with adipose-derived stem cells (ADSCs) and injected them into electrospun polycaprolactone/chitosan NGCs to repair rat sciatic nerve defects. The ADSCs-laden pl-CSMCs effectively improved nerve regeneration as demonstrated by evaluation of histology, motor function recovery, electrophysiology, and gastrocnemius recovery. With efficient cell transplantation, convenient operation, and the multiple merits of ADSCs, the ADSCs-laden pl-CSMCs hold good potential in peripheral nerve repair.

摘要

细胞移植是提高神经导管(NGCs)修复效果的有效策略。然而,低负载效率和细胞失巢凋亡等问题影响了治疗效果。微载体是高效的三维细胞培养支架,在移植过程中还可通过提供黏附底物来防止细胞失巢凋亡。在此,我们首次展示了基于微载体的细胞移植用于周围神经修复。我们首先通过乳液相分离法制备了大孔壳聚糖微载体(CSMCs),然后用聚赖氨酸修饰CSMCs(pl-CSMCs)以提高细胞亲和力。接着,我们将脂肪来源干细胞(ADSCs)负载到pl-CSMCs上,并将其注入电纺聚己内酯/壳聚糖NGCs中以修复大鼠坐骨神经缺损。组织学评估、运动功能恢复、电生理学和腓肠肌恢复结果表明,负载ADSCs的pl-CSMCs有效促进了神经再生。凭借高效的细胞移植、简便的操作以及ADSCs的多种优点,负载ADSCs的pl-CSMCs在周围神经修复中具有良好的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd7f/8082165/b8193829fbcb/ga1.jpg

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