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丝支架中的同种异体肌腱干细胞/祖细胞用于功能性肩部修复。

Allogenous tendon stem/progenitor cells in silk scaffold for functional shoulder repair.

机构信息

Center for Stem Cell and Tissue Engineering, School of Medicine, Zhejiang University, Hangzhou, China.

出版信息

Cell Transplant. 2012;21(5):943-58. doi: 10.3727/096368911X627453. Epub 2012 Mar 8.

DOI:10.3727/096368911X627453
PMID:22405331
Abstract

Tendon stem/progenitor cells (TSPCs) were recently identified within tendon tissues. The aim of this study was to investigate TSPC-seeded knitted silk-collagen sponge scaffold for functional shoulder repair. The multidifferentiation potential, proliferation, and immune properties of TSPCs were investigated in vitro, while the efficacy of TSPC-seeded knitted silk-collagen sponge scaffolds in promoting rotator cuff regeneration was evaluated in vivo within a rabbit model. TSPCs, which exhibited universal stem cell characteristics (i.e., clonogenicity, high proliferative capacity, and multidifferentiation potential), nonimmunogenicity, and immunosuppression, proliferated well on our scaffold in vitro. Implantation of allogenous TSPC-seeded scaffolds within a rabbit rotator cuff injury model did not elicit an immunological reaction, but instead increased fibroblastic cell ingrowth and reduced infiltration of lymphocytes within the implantation sites at 4 and 8 weeks postsurgery. After 12 weeks, the allogenous TSPC-treated group exhibited increased collagen deposition and had better structural and biomechanical properties compared to the control group. This study thus demonstrated that the allogenous TSPC-seeded knitted silk-collagen sponge scaffold enhanced the efficacy of rotator cuff tendon regeneration by differentiating into tenocytes, and by secreting anti-inflammatory cytokines that prevent immunological rejection. Hence, allogenous TSPC-seeded knitted silk-collagen sponge scaffolds can be a clinically useful application for tendon tissue engineering.

摘要

肌腱干/祖细胞(TSPCs)最近在肌腱组织中被鉴定出来。本研究旨在研究 TSPC 接种的编织丝胶原海绵支架在功能性肩部修复中的应用。体外研究了 TSPC 的多向分化潜能、增殖能力和免疫特性,体内兔模型研究了 TSPC 接种的编织丝胶原海绵支架在促进肩袖再生中的功效。TSPC 具有普遍的干细胞特性(即克隆形成能力、高增殖能力和多向分化潜能)、非免疫原性和免疫抑制性,在我们的支架上体外增殖良好。在兔肩袖损伤模型中植入同种异体 TSPC 接种支架不会引起免疫反应,反而会在术后 4 周和 8 周增加纤维母细胞的内生长,并减少植入部位的淋巴细胞浸润。12 周后,与对照组相比,经同种异体 TSPC 处理的组表现出增加的胶原沉积,并且具有更好的结构和生物力学特性。因此,本研究表明,同种异体 TSPC 接种的编织丝胶原海绵支架通过向肌腱细胞分化和分泌抗炎细胞因子来预防免疫排斥反应,从而增强肩袖肌腱再生的功效。因此,同种异体 TSPC 接种的编织丝胶原海绵支架可作为一种有临床应用价值的肌腱组织工程支架。

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