Neurobiological Correlates of Rheumatoid Arthritis and Osteoarthritis: Remodelling and Plasticity of Nociceptive and Autonomic Innervations in Synovial Joints.

IF 3.5 3区 医学 Q1 CLINICAL NEUROLOGY
Neuroscientist Pub Date : 2025-08-01 Epub Date: 2024-12-12 DOI:10.1177/10738584241293049
Sharon Mathew, Sadaf Ashraf, Susan Shorter, Gianluca Tozzi, Stella Koutsikou, Saak V Ovsepian
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引用次数: 0

Abstract

Swelling, stiffness, and pain in synovial joints are primary hallmarks of osteoarthritis and rheumatoid arthritis. Hyperactivity of nociceptors and excessive release of inflammatory factors and pain mediators play a crucial role, with emerging data suggesting extensive remodelling and plasticity of joint innervations. Herein, we review structural, functional, and molecular alterations in sensory and autonomic axons wiring arthritic joints and revisit mechanisms implicated in the sensitization of nociceptors, leading to chronic pain. Sprouting and reorganization of sensory and autonomic fibers with the invasion of ectopic branches into surrounding inflamed tissues are associated with the upregulation of pain markers. These changes are frequently complemented by a phenotypic switch of sensory and autonomic profiles and activation of silent axons, inferring homeostatic adjustments and reprogramming of innervations. Identifying critical molecular players and neurobiological mechanisms underpinning the rewiring and sensitization of joints is likely to elucidate causatives of neuroinflammation and chronic pain, assisting in finding new therapeutic targets and opportunities for interventions.

类风湿关节炎和骨关节炎的神经生物学相关性:滑膜关节损伤感觉神经和自主神经的重塑和可塑性。
滑膜关节肿胀、僵硬和疼痛是骨关节炎和类风湿性关节炎的主要特征。痛觉感受器的过度活跃以及炎症因子和疼痛介质的过度释放起到了至关重要的作用,新出现的数据表明关节神经支配存在广泛的重塑和可塑性。在此,我们回顾了连接关节炎关节的感觉和自律神经轴突的结构、功能和分子变化,并重新审视了导致慢性疼痛的痛觉感受器敏感化机制。感觉和自律神经纤维的萌发和重组以及异位分支侵入周围炎症组织与疼痛标记物的上调有关。这些变化经常与感觉和自律神经的表型转换以及沉默轴突的激活相辅相成,从而推断出神经支配的同态调整和重编程。确定关节重新布线和敏感化的关键分子角色和神经生物学机制很可能会阐明神经炎症和慢性疼痛的成因,帮助找到新的治疗目标和干预机会。
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来源期刊
Neuroscientist
Neuroscientist 医学-临床神经学
CiteScore
11.50
自引率
0.00%
发文量
68
期刊介绍: Edited by Stephen G. Waxman, The Neuroscientist (NRO) reviews and evaluates the noteworthy advances and key trends in molecular, cellular, developmental, behavioral systems, and cognitive neuroscience in a unique disease-relevant format. Aimed at basic neuroscientists, neurologists, neurosurgeons, and psychiatrists in research, academic, and clinical settings, The Neuroscientist reviews and updates the most important new and emerging basic and clinical neuroscience research.
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