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膝关节半月板纤维软骨作为稳定承重结构的重要性,为人体膝关节组织提供全面保护。

The Importance of the Knee Joint Meniscal Fibrocartilages as Stabilizing Weight Bearing Structures Providing Global Protection to Human Knee-Joint Tissues.

机构信息

Raymond Purves Bone and Joint Research Laboratory, Kolling Institute, Northern Sydney Local Health District, St. Leonards, NSW 2065, Australia.

Graduate School of Biomedical Engineering, University of New South Wales, Sydney, NSW 2052, Australia.

出版信息

Cells. 2019 Apr 6;8(4):324. doi: 10.3390/cells8040324.

Abstract

The aim of this study was to review aspects of the pathobiology of the meniscus in health and disease and show how degeneration of the meniscus can contribute to deleterious changes in other knee joint components. The menisci, distinctive semilunar weight bearing fibrocartilages, provide knee joint stability, co-ordinating functional contributions from articular cartilage, ligaments/tendons, synovium, subchondral bone and infra-patellar fat pad during knee joint articulation. The meniscus contains metabolically active cell populations responsive to growth factors, chemokines and inflammatory cytokines such as interleukin-1 and tumour necrosis factor-alpha, resulting in the synthesis of matrix metalloproteases and A Disintegrin and Metalloprotease with ThromboSpondin type 1 repeats (ADAMTS)-4 and 5 which can degrade structural glycoproteins and proteoglycans leading to function-limiting changes in meniscal and other knee joint tissues. Such degradative changes are hall-marks of osteoarthritis (OA). No drugs are currently approved that change the natural course of OA and translate to long-term, clinically relevant benefits. For any pharmaceutical therapeutic intervention in OA to be effective, disease modifying drugs will have to be developed which actively modulate the many different cell types present in the knee to provide a global therapeutic. Many individual and combinatorial approaches are being developed to treat or replace degenerate menisci using 3D printing, bioscaffolds and hydrogel delivery systems for therapeutic drugs, growth factors and replacement progenitor cell populations recognising the central role the menisci play in knee joint health.

摘要

本研究旨在回顾半月板在健康和疾病中的病理生物学方面,并展示半月板退变如何导致膝关节其他关节成分的有害变化。半月板是独特的半月形承重纤维软骨,在膝关节关节运动过程中提供膝关节稳定性,协调关节软骨、韧带/肌腱、滑膜、软骨下骨和髌下脂肪垫的功能贡献。半月板含有代谢活跃的细胞群体,对生长因子、趋化因子和炎症细胞因子(如白细胞介素-1 和肿瘤坏死因子-α)有反应,导致基质金属蛋白酶和 A 型血小板反应蛋白 1 型重复(ADAMTS)-4 和 5 的合成,这些酶可以降解结构糖蛋白和蛋白聚糖,导致半月板和其他膝关节组织的功能受限变化。这种降解变化是骨关节炎(OA)的特征。目前尚无改变 OA 自然病程并转化为长期、临床相关益处的药物获得批准。任何治疗 OA 的药物干预都必须开发出能够积极调节膝关节中存在的许多不同细胞类型的疾病修饰药物,以提供全面的治疗。正在开发许多单独和组合的方法来治疗或替代退变的半月板,使用 3D 打印、生物支架和水凝胶输送系统来输送治疗药物、生长因子和替代祖细胞群体,认识到半月板在膝关节健康中发挥的核心作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2151/6523218/645c1b478880/cells-08-00324-g001.jpg

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