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具有自适配能力的大孔三维支架用于有效修复大面积肩袖撕裂

Macroporous 3D Scaffold with Self-Fitting Capability for Effectively Repairing Massive Rotator Cuff Tear.

作者信息

Wang Liren, Kang Yuhao, Chen Sihao, Mo Xiumei, Jiang Jia, Yan Xiaoyu, Zhu Tonghe, Zhao Jinzhong

机构信息

Department of Sports Medicine, Department of Orthopedics, Shanghai Jiao Tong University Affiliated Sixth People's Hospital, No. 600 Yishan Road, Shanghai 200233, PR China.

Multidisciplinary Center for Advanced Materials, Advanced Research Institute, Shanghai University of Engineering Science, No. 333 Longteng Road, Shanghai 201620, PR China.

出版信息

ACS Biomater Sci Eng. 2021 Mar 8;7(3):904-915. doi: 10.1021/acsbiomaterials.0c00193. Epub 2020 Apr 23.

Abstract

The postoperative retear rate of direct repair of massive rotator cuff tear has risen up to 40% because of the dissatisfied tendon-to-bone healing and poor regenerative potential of remnant rotator cuff tissue. A biological scaffold that connects the remnant rotator cuff tissue and bone might be a promising substitute. In the present study, we have developed a macroporous three-dimensional scaffold poly(ester-urethane)urea (PEUU), with self-fitting capability employing thermally induced phase separation (TIPS) technique. The scaffold provides oriented connected macropores for cells migration, and promoted tendon-to-bone healing on the basis of surgical repair. The scaffolds were characterized by scanning electron microscopy, stress-strain test and cell biocompatibility study. In vitro studies exhibited that PEUU scaffold with suitable elastic mechanical properties can better support proliferation and migration of rabbit bone mesenchymal stem cells (RBMSCs). After three months postreconstruction of massive rotator cuff tear in a rabbit model using PEUU scaffold, there was complete regeneration of rotator cuff with physical tendon-to-bone interface and continuous tendon tissue, as observed from histological analysis. Further, biomechanical testing demonstrated that rotator cuff induced by PEUU scaffold had no significant difference as compared to normal rotator cuff. This macroporous, mechanically matched scaffold is potentially suitable for the application in massive rotator cuff repair. In conclusion, this study demonstrates the high efficiency of the macroporous 3D scaffold with self-fitting capability in facilitating rotator cuff regeneration.

摘要

由于肌腱与骨愈合效果不佳以及残余肩袖组织再生潜力较差,巨大肩袖撕裂直接修复术后的再撕裂率高达40%。一种连接残余肩袖组织与骨的生物支架可能是一种有前景的替代方法。在本研究中,我们利用热致相分离(TIPS)技术开发了一种具有自适配能力的大孔三维支架聚(酯 - 脲)脲(PEUU)。该支架为细胞迁移提供定向连通的大孔,并在手术修复的基础上促进肌腱与骨的愈合。通过扫描电子显微镜、应力 - 应变测试和细胞生物相容性研究对支架进行了表征。体外研究表明,具有合适弹性力学性能的PEUU支架能够更好地支持兔骨髓间充质干细胞(RBMSCs)的增殖和迁移。在兔模型中使用PEUU支架重建巨大肩袖撕裂三个月后,组织学分析显示肩袖完全再生,具有物理性的肌腱与骨界面以及连续的肌腱组织。此外,生物力学测试表明,PEUU支架诱导的肩袖与正常肩袖相比无显著差异。这种大孔、力学匹配的支架有可能适用于巨大肩袖修复。总之,本研究证明了具有自适配能力的大孔三维支架在促进肩袖再生方面的高效性。

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