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炎症介质和基质金属蛋白酶(MMPs)在骨关节炎进展中的作用。

The role of inflammatory mediators and matrix metalloproteinases (MMPs) in the progression of osteoarthritis.

作者信息

Mukherjee Anwesha, Das Bodhisatwa

机构信息

Department of Biomedical Engineering, Indian Institute of Technology Ropar, India.

出版信息

Biomater Biosyst. 2024 Feb 21;13:100090. doi: 10.1016/j.bbiosy.2024.100090. eCollection 2024 Mar.

Abstract

Osteoarthritis (OA) is a chronic musculoskeletal disorder characterized by an imbalance between (synthesis) and catabolism (degradation) in altered homeostasis of articular cartilage mediated primarily by the innate immune system. OA degenerates the joints resulting in synovial hyperplasia, degradation of articular cartilage with damage of the structural and functional integrity of the cartilage extracellular matrix, subchondral sclerosis, osteophyte formation, and is characterized by chronic pain, stiffness, and loss of function. Inflammation triggered by factors like biomechanical stress is involved in the development of osteoarthritis. In OA apart from catabolic effects, anti-inflammatory anabolic processes also occur continually. There is also an underlying chronic inflammation present, not only in cartilage tissue but also within the synovium, which perpetuates tissue destruction of the OA joint. The consideration of inflammation in OA considers synovitis and/or other cellular and molecular events in the synovium during the progression of OA. In this review, we have presented the progression of joint degradation that results in OA. The critical role of inflammation in the pathogenesis of OA is discussed in detail along with the dysregulation within the cytokine networks composed of inflammatory and anti-inflammatory cytokines that drive catabolic pathways, inhibit matrix synthesis, and promote cellular apoptosis. OA pathogenesis, fluctuation of synovitis, and its clinical impact on disease progression are presented here along with the role of synovial macrophages in promoting inflammatory and destructive responses in OA. The role of interplay between different cytokines, structure, and function of their receptors in the inter-cellular signaling pathway is further explored. The effect of cytokines in the increased synthesis and release of matrix-decomposing proteolytic enzymes, such as matrix metalloproteinase (MMPs) and a disintegrin-like and metalloproteinase with thrombospondin motif (ADAMTS), is elaborated emphasizing the potential impact of MMPs on the chondrocytes, synovial cells, articular and periarticular tissues, and other immune system cells migrating to the site of inflammation. We also shed light on the pathogenesis of OA via oxidative damage particularly due to nitric oxide (NO) via its angiogenic response to inflammation. We concluded by presenting the current knowledge about the tissue inhibitors of metalloproteinases (TIMPs). Synthetic MMP inhibitors include zinc binding group (ZBG), non-ZBG, and mechanism-based inhibitors, all of which have the potential to be therapeutically beneficial in the treatment of osteoarthritis. Improving our understanding of the signaling pathways and molecular mechanisms that regulate the MMP gene expression, may open up new avenues for the creation of therapies that can stop the joint damage associated with OA.

摘要

骨关节炎(OA)是一种慢性肌肉骨骼疾病,其特征是在主要由先天免疫系统介导的关节软骨内稳态改变中,(合成)与分解代谢(降解)之间失衡。OA会导致关节退变,引起滑膜增生、关节软骨降解,同时破坏软骨细胞外基质的结构和功能完整性,还会导致软骨下硬化、骨赘形成,其特征表现为慢性疼痛、僵硬和功能丧失。由生物力学应力等因素引发的炎症参与了骨关节炎的发展过程。在OA中,除了分解代谢作用外,抗炎合成代谢过程也持续发生。不仅在软骨组织中,而且在滑膜内也存在潜在的慢性炎症,这种炎症使OA关节的组织破坏持续存在。对OA炎症的考量涉及OA进展过程中的滑膜炎和/或滑膜中的其他细胞及分子事件。在本综述中,我们阐述了导致OA的关节退变过程。详细讨论了炎症在OA发病机制中的关键作用,以及由驱动分解代谢途径、抑制基质合成并促进细胞凋亡的炎性和抗炎细胞因子组成的细胞因子网络内的失调情况。本文介绍了OA的发病机制、滑膜炎的波动及其对疾病进展的临床影响,以及滑膜巨噬细胞在促进OA炎症和破坏反应中的作用。进一步探讨了不同细胞因子之间的相互作用、其受体在细胞间信号通路中的结构和功能。阐述了细胞因子对基质分解蛋白水解酶(如基质金属蛋白酶(MMPs)和含血小板反应蛋白基序的解聚素样金属蛋白酶(ADAMTS))合成和释放增加的影响,强调了MMPs对软骨细胞、滑膜细胞、关节及关节周围组织以及迁移到炎症部位的其他免疫系统细胞的潜在影响。我们还通过氧化损伤,特别是一氧化氮(NO)通过其对炎症的血管生成反应,阐明了OA的发病机制。最后,我们介绍了目前关于金属蛋白酶组织抑制剂(TIMPs)的知识。合成的MMP抑制剂包括锌结合基团(ZBG)、非ZBG和基于机制的抑制剂,所有这些都有可能在骨关节炎治疗中发挥治疗作用。增进我们对调节MMP基因表达的信号通路和分子机制的理解,可能会为开发能够阻止与OA相关的关节损伤的治疗方法开辟新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e77d/10910010/373e1e314a94/ga1.jpg

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