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软骨诱导肽在软骨再生中的应用。

Chondroinductive Peptides for Cartilage Regeneration.

机构信息

Stephenson School of Biomedical Engineering, University of Oklahoma, Norman, Oklahoma, USA.

出版信息

Tissue Eng Part B Rev. 2022 Aug;28(4):745-765. doi: 10.1089/ten.TEB.2021.0125. Epub 2021 Oct 18.

Abstract

Inducing and maintaining a hyaline cartilage phenotype are the greatest challenge for cartilage regeneration. Synthetic chondroinductive biomaterials might be the answer to the unmet clinical need for a safe, stable, and cost-effective material capable of inducing true hyaline cartilage formation. The past decade witnessed an emergence of peptides to achieve chondrogenesis, as peptides have the advantages of versatility, high target specificity, minimized toxicity and immunogenicity, and ease of synthesis. In this study, we review peptides as the basis for creating promising synthetic chondroinductive biomaterials for scaffold-based cartilage regeneration. We provide a thorough review of peptides evaluated for cartilage regeneration while distinguishing between peptides reported to induce chondrogenesis independently, and peptides reported to act in synergy with other growth factors to induce cartilage regeneration. In addition, we highlight that most peptide studies have been , and appropriate controls are not always present. A few rigorously performed studies have proceeded to studies, but the peptides in those studies were mainly introduced through systemic, subcutaneous, or intra-articular injections, with a paucity of studies employing defects with appropriate controls. Clinical translation of peptides will require the evaluation of these peptides in well-controlled cartilage defect studies. In the decade ahead, we may be poised to leverage peptides to design devices that are safe, reproducible, cost-efficient, and scalable biomaterials, which are themselves chondroinductive to achieve true hyaline cartilage regeneration without the need for growth factors and other small molecules. Impact statement The regeneration of articular cartilage into its original structural, functional, and organizational hyaline phenotype remains a significant problem in the tissue engineering and orthopedic community. While cell-based solutions have shown promising outcomes, there are realistic translational challenges inherent to cell therapies. Alternatively, biomaterials have been widely studied and used as scaffolds to support and facilitate cartilage regeneration; however, the key technical challenge is to independently induce cartilage regeneration. The search for chondroinductive compounds and materials is an emerging area of research with peptides at its heart, which presents a timely opportunity to review and highlight peptides with cartilage regenerative activity and to fill gaps from previous reviews. The content of this review will serve as a valuable guide for researchers pursuing the discovery of new chondroinductive peptides or looking into incorporating the most promising existing peptides in their work.

摘要

诱导和维持透明软骨表型是软骨再生的最大挑战。合成软骨诱导生物材料可能是满足临床对安全、稳定、经济有效、能够诱导真正透明软骨形成的材料的未满足需求的答案。过去十年见证了肽类物质在软骨生成中的出现,因为肽类物质具有多功能性、高靶向特异性、最小化毒性和免疫原性以及易于合成等优点。在这项研究中,我们综述了肽类物质作为构建基于支架的软骨再生的有前途的合成软骨诱导生物材料的基础。我们全面回顾了用于软骨再生的肽类物质,同时区分了独立诱导软骨生成的肽类物质和与其他生长因子协同作用诱导软骨生成的肽类物质。此外,我们强调,大多数肽类研究已经进行,并且并非总是存在适当的对照。少数经过严格执行的研究已经进行了临床试验,但这些临床试验中的肽类物质主要通过全身、皮下或关节内注射引入,缺乏使用适当对照的软骨缺损研究。肽类物质的临床转化需要在经过良好控制的软骨缺损研究中评估这些肽类物质。在未来十年,我们可能有能力利用肽类物质来设计安全、可重复、具有成本效益和可扩展的生物材料,这些材料本身具有软骨诱导性,可以在不需要生长因子和其他小分子的情况下实现真正的透明软骨再生。

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