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锶-阿利克斯相互作用增强滑膜间充质干细胞中外泌体miRNA的选择性装载,用于颞下颌关节骨关节炎的治疗。

Strontium-Alix interaction enhances exosomal miRNA selectively loading in synovial MSCs for temporomandibular joint osteoarthritis treatment.

作者信息

Yuan Wenxiu, Liu Jiaqi, Zhang Zhenzhen, Ye Chengxinyue, Zhou Xueman, Yi Yating, Wu Yange, Li Yijun, Zhang Qinlanhui, Xiong Xin, Xiao Hengyi, Liu Jin, Wang Jun

机构信息

State Key Laboratory of Oral Diseases & National Clinical Research Center for Oral Diseases & Department of Orthodontics, West China Hospital of Stomatology, Sichuan University, Chengdu, China.

Laboratory of Aging Research and Department of Geriatrics, State Key Laboratory of Biotherapy, National Clinical Research Center for Geriatrics, West China Hospital, Sichuan University, Chengdu, China.

出版信息

Int J Oral Sci. 2025 Feb 1;17(1):6. doi: 10.1038/s41368-024-00329-5.

Abstract

The ambiguity of etiology makes temporomandibular joint osteoarthritis (TMJOA) "difficult-to-treat". Emerging evidence underscores the therapeutic promise of exosomes in osteoarthritis management. Nonetheless, challenges such as low yields and insignificant efficacy of current exosome therapies necessitate significant advances. Addressing lower strontium (Sr) levels in arthritic synovial microenvironment, we studied the effect of Sr element on exosomes and miRNA selectively loading in synovial mesenchymal stem cells (SMSCs). Here, we developed an optimized system that boosts the yield of SMSC-derived exosomes (SMSC-EXOs) and improves their miRNA profiles with an elevated proportion of beneficial miRNAs, while reducing harmful ones by pretreating SMSCs with Sr. Compared to untreated SMSC-EXOs, Sr-pretreated SMSC-derived exosomes (Sr-SMSC-EXOs) demonstrated superior therapeutic efficacy by mitigating chondrocyte ferroptosis and reducing osteoclast-mediated joint pain in TMJOA. Our results illustrate Alix's crucial role in Sr-triggered miRNA loading, identifying miR-143-3p as a key anti-TMJOA exosomal component. Interestingly, this system is specifically oriented towards synovium-derived stem cells. The insight into trace element-driven, site-specific miRNA selectively loading in SMSC-EXOs proposes a promising therapeutic enhancement strategy for TMJOA.

摘要

病因的不明确使得颞下颌关节骨关节炎(TMJOA)“难以治疗”。新出现的证据强调了外泌体在骨关节炎治疗中的潜在应用价值。然而,目前外泌体疗法存在产量低和疗效不显著等挑战,仍需取得重大进展。为了解决关节炎滑膜微环境中锶(Sr)含量较低的问题,我们研究了Sr元素对滑膜间充质干细胞(SMSC)中外泌体和miRNA选择性装载的影响。在此,我们开发了一种优化系统,该系统可提高SMSC来源的外泌体(SMSC-EXOs)的产量,并通过提高有益miRNA的比例来改善其miRNA谱,同时通过用Sr预处理SMSC来减少有害miRNA。与未处理的SMSC-EXOs相比,Sr预处理的SMSC来源的外泌体(Sr-SMSC-EXOs)通过减轻软骨细胞铁死亡和减轻TMJOA中破骨细胞介导的关节疼痛,显示出卓越的治疗效果。我们的结果说明了Alix在Sr触发的miRNA装载中的关键作用,确定miR-143-3p是一种关键的抗TMJOA外泌体成分。有趣的是,该系统专门针对滑膜来源的干细胞。对微量元素驱动的、位点特异性miRNA在SMSC-EXOs中的选择性装载的深入了解,为TMJOA提出了一种有前景的治疗增强策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf9e/11785994/8f32b494fed3/41368_2024_329_Fig1_HTML.jpg

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