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Tendon and ligament mechanical loading in the pathogenesis of inflammatory arthritis

医学 肌腱 肌腱病 机械转化 关节炎 机械生物学 韧带 生物力学 类风湿性关节炎 细胞外基质 解剖 免疫学 神经科学 细胞生物学 生物
作者
Eric Gracey,Arne Burssens,Isabelle Cambré,Georg Schett,Rik Lories,Iain B. McInnes,Hiroshi Asahara,Dirk Elewaut
出处
期刊:Nature Reviews Rheumatology [Nature Portfolio]
卷期号:16 (4): 193-207 被引量:235
标识
DOI:10.1038/s41584-019-0364-x
摘要

Mechanical loading is an important factor in musculoskeletal health and disease. Tendons and ligaments require physiological levels of mechanical loading to develop and maintain their tissue architecture, a process that is achieved at the cellular level through mechanotransduction-mediated fine tuning of the extracellular matrix by tendon and ligament stromal cells. Pathological levels of force represent a biological (mechanical) stress that elicits an immune system-mediated tissue repair pathway in tendons and ligaments. The biomechanics and mechanobiology of tendons and ligaments form the basis for understanding how such tissues sense and respond to mechanical force, and the anatomical extent of several mechanical stress-related disorders in tendons and ligaments overlaps with that of chronic inflammatory arthritis in joints. The role of mechanical stress in ‘overuse’ injuries, such as tendinopathy, has long been known, but mechanical stress is now also emerging as a possible trigger for some forms of chronic inflammatory arthritis, including spondyloarthritis and rheumatoid arthritis. Thus, seemingly diverse diseases of the musculoskeletal system might have similar mechanisms of immunopathogenesis owing to conserved responses to mechanical stress. Mechanical loading is an important factor in the development of tendon and ligament disorders. In this Review, the authors discuss the evidence for the known role of mechanical loading in tendinopathy and its potential role in inflammatory arthritis.
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