Department of Human Genetics and Molecular Medicine, School of Health Sciences, Central University of Punjab, Bathinda, India.
Department of Medical Lab Technology, University Institute of Applied Health Sciences, Chandigarh University, Mohali, India.
Life Sci. 2023 May 15;321:121641. doi: 10.1016/j.lfs.2023.121641. Epub 2023 Mar 28.
Rheumatoid arthritis (RA) related autoimmunity is developed at mucosal sites due to the interplay between genetic risk factors and environmental triggers. The pre-RA phase that leads to anti-citrullinated protein antibodies, rheumatoid factor, and other autoantibodies spread in the systemic circulation may not affect articular tissue for years until a mysterious second hit triggers the localization of RA-related autoimmunity in joints. Several players in the joint microenvironment mediate the synovial innate and adaptive immunological processes, eventually leading to clinical synovitis. There still exists a gap in the early phase of RA pathogenesis, i.e., the progression of diseases from the systemic circulation to joints. The lack of better understanding of these events results in the inability to answer questions about why only after a certain point of time the disease appears in joints and why in some cases, it simply remains latent and doesn't affect joints at all. In the current review, we focused on the immunomodulatory and regenerative role of mesenchymal stem cells and associated exosomes in RA pathology. We also highlighted the age-related dysregulations in activities of mesenchymal stem cells and how that might trigger homing of systemic autoimmunity to joints.
类风湿关节炎(RA)相关的自身免疫是由于遗传风险因素和环境触发因素之间的相互作用在黏膜部位发展起来的。导致抗瓜氨酸蛋白抗体、类风湿因子和其他自身抗体在全身循环中扩散的 RA 前阶段可能不会影响关节组织多年,直到一个神秘的第二次打击触发 RA 相关自身免疫在关节中的定位。关节微环境中的几个参与者介导了滑膜固有和适应性免疫过程,最终导致临床滑膜炎。RA 发病机制的早期阶段仍然存在一个空白,即疾病从全身循环向关节的进展。对这些事件缺乏更好的理解导致无法回答为什么疾病只是在特定时间点出现在关节,以及为什么在某些情况下,它只是潜伏而根本不影响关节的问题。在本综述中,我们重点关注间充质干细胞及其相关外泌体在 RA 病理中的免疫调节和再生作用。我们还强调了间充质干细胞活性的与年龄相关的失调,以及这如何可能引发系统性自身免疫向关节的归巢。