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微小RNA-126与冠心病发生发展关系的研究进展 被引量:3
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作者 滕菲 王玲 《内蒙古医科大学学报》 2016年第4期361-365,共5页
微小RNA(miRNAs)是一类高度保守的内源性非编码小分子单链RNA,能通过特异性识别靶基因mRNA,在翻译水平调节基因表达,从而调节细胞分化、生长发育、增殖与凋亡、激素分泌等各种过程。现已经发现多种miRNA,其中微小RNA-126(miR-126)主要... 微小RNA(miRNAs)是一类高度保守的内源性非编码小分子单链RNA,能通过特异性识别靶基因mRNA,在翻译水平调节基因表达,从而调节细胞分化、生长发育、增殖与凋亡、激素分泌等各种过程。现已经发现多种miRNA,其中微小RNA-126(miR-126)主要存在于血管内皮细胞和血小板当中,与血管的生成、发育、修复功能密切相关,与高血压、冠心病、心力衰竭等心血管疾病密切相关。其中,冠心病即将成为危害全人类健康的头号致死杀手,其诊断和治疗备受关注。本文就miR-126在冠心病发生发展过程中的作用进行系统综述。 展开更多
关键词 微小RNA-126 冠心病 内皮功能障碍 动脉粥样硬化 血管生成 血管修复 生物标志物
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The miR-21-5p enriched in the apoptotic bodies of M2 macrophage-derived extracellular vesicles alleviates osteoarthritis by changing macrophage phenotype 被引量:3
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作者 Leilei Qin Jianye Yang +10 位作者 Xudong Su Xilan li Yiting Lei Lili Dong Hong Chen Cheng Chen Chen Zhao Huan Zhang Jun Deng Ning Hu Wei Huang 《Genes & Diseases》 SCIE CSCD 2023年第3期1114-1129,共16页
Macrophages (Mφs) play a crucial role in the pathological progression of osteoarthritis (OA) by regulating inflammation and tissue repair. Decreasing pro-inflammatory M1-Mφs and increasing anti-inflammatory M2-Mφs ... Macrophages (Mφs) play a crucial role in the pathological progression of osteoarthritis (OA) by regulating inflammation and tissue repair. Decreasing pro-inflammatory M1-Mφs and increasing anti-inflammatory M2-Mφs can alleviate OA-related inflammation and promote cartilage repair. Apoptosis is a natural process associated with tissue repair. A large number of apoptotic bodies (ABs), a type of extracellular vesicle, are produced during apoptosis, and this is associated with a reduction in inflammation. However, the functions of apoptotic bodies remain largely unknown. In this study, we investigated the role of M2-Mφs-derived apoptotic bodies (M2-ABs) in regulating the M1/M2 balance of macrophages in a mouse model of OA. Our data show that M2-ABs can be targeted for uptake by M1-Mφs, and this reprograms M1-to-M2 phenotypes within 24 h. The M2-ABs significantly ameliorated the severity of OA, alleviated the M1-mediated pro-inflammatory environment, and inhibited chondrocyte apoptosis in mice. RNA-seq revealed that M2-ABs were enriched with miR-21–5p, a microRNA that is negatively correlated with articular cartilage degeneration. Inhibiting the function of miR-21–5p in M1-Mφs significantly reduced M2-ABs-guided M1-to-M2 reprogramming following in vitro cell transfection. Together, these results suggest that M2-derived apoptotic bodies can prevent articular cartilage damage and improve gait abnormalities in OA mice by reversing the inflammatory response caused by M1 macrophages. The mechanism underlying these findings may be related to miR-21-5p-regulated inhibition of inflammatory factors. The application of M2-ABs may represent a novel cell therapy, and could provide a valuable strategy for the treatment of OA and/or chronic inflammation. 展开更多
关键词 Apoptotic body Extracellular vesicles Macrophage phenotype switch micr orna-21 OSTEOARTHRITIS
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