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用于治疗血友病性关节炎的巨噬细胞膜包裹的微小RNA纳米递送系统。

Macrophage membrane-encapsulated miRNA nanodelivery system for the treatment of hemophilic arthritis.

作者信息

Qian Yufan, Ma Yetian, Banchev Atanas, Duan Weifeng, Xu Pingcheng, Zhao Lingying, Jiang Miao, Yu Ziqiang, Zhou Feng, Guo Jiong Jiong

机构信息

Department of Orthopedics and Sports Medicine, The First Affiliated Hospital of Soochow University, Suzhou, Jiangsu, PR China.

Department of Paediatric Haematology and Oncology, University Hospital "Tzaritza Giovanna - ISUL", Sofia, Bulgaria.

出版信息

J Control Release. 2025 Jan 10;377:632-647. doi: 10.1016/j.jconrel.2024.11.034. Epub 2024 Nov 29.

Abstract

Hemophilic arthritis (HA) is one of the most pathologically altered joint diseases. Specifically, periodic spontaneous hemorrhage-induced hyperinflammation of the synovium and irreversible destruction of the cartilage are the main mechanisms that profoundly affect the behavioral functioning and quality of life of patients. In this study, we isolated and characterized platelet-rich plasma-derived exosomes (PRP-exo). We performed microRNA (miRNA) sequencing and bioinformatics analysis on these exosomes to identify the most abundant miRNA, miR-451a. Following this, we developed an M@ZIF-8@miR nanotherapeutic system that utilizes nanoscale zeolitic imidazolate framework (ZIF) as a carrier for miRNA delivery, encapsulated within M2 membranes to enhance its anti-inflammatory effects. In vitro and in vivo studies demonstrated that M@ZIF-8@miR significantly reduced pro-inflammatory cytokines, controlled synovial inflammation, and achieved potent therapeutic efficacy by reducing joint damage. We suggest that the ability of M@ZIF-8@miR nanocomposites to inhibit pro-inflammatory cytokines, enhance cellular uptake, and exhibit good endosomal escape properties makes them promising carriers for the efficient delivery of therapeutic nucleic acid drugs. This approach delays joint degeneration and provides a promising combinatorial strategy for HA treatment.

摘要

血友病性关节炎(HA)是病理改变最为严重的关节疾病之一。具体而言,周期性自发性出血引发的滑膜过度炎症以及软骨的不可逆破坏是深刻影响患者行为功能和生活质量的主要机制。在本研究中,我们分离并鉴定了富含血小板血浆来源的外泌体(PRP-exo)。我们对这些外泌体进行了微小RNA(miRNA)测序和生物信息学分析,以确定最丰富的miRNA,即miR-451a。在此之后,我们开发了一种M@ZIF-8@miR纳米治疗系统,该系统利用纳米级沸石咪唑框架(ZIF)作为miRNA递送载体,封装在M2膜内以增强其抗炎作用。体外和体内研究表明,M@ZIF-8@miR显著降低促炎细胞因子水平,控制滑膜炎症,并通过减少关节损伤实现了有效的治疗效果。我们认为,M@ZIF-8@miR纳米复合材料抑制促炎细胞因子、增强细胞摄取以及展现良好的内体逃逸特性的能力,使其成为有效递送治疗性核酸药物的有前景的载体。这种方法延缓了关节退变,并为HA治疗提供了一种有前景的联合策略。

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