Laboratory of Biomechanical Orthopedics, EPFL, Lausanne, Switzerland.
Curr Res Transl Med. 2021 Jul;69(3):103299. doi: 10.1016/j.retram.2021.103299. Epub 2021 Jun 27.
In mature individuals, hyaline cartilage demonstrates a poor intrinsic capacity for repair, thus even minor defects could result in progressive degeneration, impeding quality of life. Although numerous attempts have been made over the past years for the advancement of effective treatments, significant challenges still remain regarding the translation of in vitro cartilage engineering strategies from bench to bedside. This paper reviews the latest concepts on engineering cartilage tissue in view of biomaterial scaffolds, tissue biofabrication, mechanobiology, as well as preclinical studies in different animal models. The current work is not meant to provide a methodical review, rather a perspective of where the field is currently focusing and what are the requirements for bridging the gap between laboratory-based research and clinical applications, in light of the current state-of-the-art literature. While remarkable progress has been accomplished over the last 20 years, the current sophisticated strategies have reached their limit to further enhance healthcare outcomes. Considering a clinical aspect together with expertise in mechanobiology, biomaterial science and biofabrication methods, will aid to deal with the current challenges and will present a milestone for the furtherance of functional cartilage engineering.
在成熟个体中,透明软骨自身的修复能力很差,因此,即使是轻微的损伤也可能导致进行性退化,从而影响生活质量。尽管在过去的几年中,人们已经尝试了许多方法来推进有效的治疗方法,但在将体外软骨工程策略从实验室转化为临床应用方面,仍然存在着重大挑战。本文综述了生物材料支架、组织生物制造、机械生物学以及不同动物模型的临床前研究方面,软骨组织工程的最新概念。目前的工作并不是为了提供系统的综述,而是基于当前的文献,从实验室研究到临床应用的差距,着眼于该领域目前的重点以及对这些差距进行弥补的要求。尽管在过去的 20 年中已经取得了显著的进展,但目前复杂的策略已经达到了进一步提高医疗保健效果的极限。考虑到临床方面以及机械生物学、生物材料科学和生物制造方法方面的专业知识,将有助于应对当前的挑战,并为进一步发展功能性软骨工程奠定基础。