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材料辅助策略治疗骨软骨缺损。

Material-Assisted Strategies for Osteochondral Defect Repair.

机构信息

Université de Nantes, Oniris, CHU Nantes, INSERM, Regenerative Medicine and Skeleton, RMeS, UMR 1229, Nantes, F-44000, France.

HTL Biotechnology, 7 Rue Alfred Kastler, Javené, 35133, France.

出版信息

Adv Sci (Weinh). 2022 May;9(16):e2200050. doi: 10.1002/advs.202200050. Epub 2022 Mar 24.

Abstract

The osteochondral (OC) unit plays a pivotal role in joint lubrication and in the transmission of constraints to bones during movement. The OC unit does not spontaneously heal; therefore, OC defects are considered to be one of the major risk factors for developing long-term degenerative joint diseases such as osteoarthritis. Yet, there is currently no curative treatment for OC defects, and OC regeneration remains an unmet medical challenge. In this context, a plethora of tissue engineering strategies have been envisioned over the last two decades, such as combining cells, biological molecules, and/or biomaterials, yet with little evidence of successful clinical transfer to date. This striking observation must be put into perspective with the difficulty in comparing studies to identify overall key elements for success. This systematic review aims to provide a deeper insight into the field of material-assisted strategies for OC regeneration, with particular considerations for the therapeutic potential of the different approaches (with or without cells or biological molecules), and current OC regeneration evaluation methods. After a brief description of the biological complexity of the OC unit, the recent literature is thoroughly analyzed, and the major pitfalls, emerging key elements, and new paths to success are identified and discussed.

摘要

软骨-骨(OC)单位在关节润滑和运动过程中对骨骼的约束传递中起着关键作用。OC 单位不会自发愈合;因此,OC 缺损被认为是导致长期退行性关节疾病(如骨关节炎)的主要危险因素之一。然而,目前对于 OC 缺损还没有治愈的方法,OC 再生仍然是一个未满足的医学挑战。在这种情况下,过去二十年中已经设想了许多组织工程策略,例如结合细胞、生物分子和/或生物材料,但迄今为止,成功的临床转化证据很少。这一惊人的观察结果必须与比较研究以确定成功的总体关键因素的难度相协调。本系统评价旨在深入了解材料辅助 OC 再生策略领域,特别考虑不同方法(有或没有细胞或生物分子)的治疗潜力,以及当前 OC 再生评估方法。在简要描述 OC 单位的生物学复杂性之后,对最新文献进行了深入分析,并确定和讨论了主要的缺陷、新兴的关键因素和新的成功途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba87/9165504/5aaabaeeb2d4/ADVS-9-2200050-g008.jpg

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