[1]马艺萍 袁玉娟 艾力菲热·艾海提 马清玉 阿卜拉江·艾合麦提 穆叶赛·尼加提.内皮细胞微粒miRNA在急性心肌梗死中的研究进展[J].心血管病学进展,2023,(6):557.[doi:10.16806/j.cnki.issn.1004-3934.2023.06.017]
 Ma Yiping,Yuan Yujuan,Ailifeire·Aihaiti,et al.Endothelial Microparticles miRNA in Acute Myocardial Infarction[J].Advances in Cardiovascular Diseases,2023,(6):557.[doi:10.16806/j.cnki.issn.1004-3934.2023.06.017]
点击复制

内皮细胞微粒miRNA在急性心肌梗死中的研究进展()
分享到:

《心血管病学进展》[ISSN:51-1187/R/CN:1004-3934]

卷:
期数:
2023年6期
页码:
557
栏目:
综述
出版日期:
2023-06-25

文章信息/Info

Title:
Endothelial Microparticles miRNA in Acute Myocardial Infarction
作者:
马艺萍1 袁玉娟1 艾力菲热·艾海提 1 马清玉2 阿卜拉江·艾合麦提1 穆叶赛·尼加提3
(1.新疆医科大学,新疆 乌鲁木齐 830000;2.石河子大学,新疆 石河子 832003;3.新疆维吾尔自治区人民医院,新疆 乌鲁木齐 830000)
Author(s):
Ma Yiping1Yuan Yujuan1Ailifeire·Aihaiti1Ma Qingyu2Abulajiang·Aihemaiti1Muyesai·Nijiati3
Xinjiang Medical University ,Urumqi 830000,Xinjiang,China; 2.Shihezi University,Shihezi 832003,Xinjiang,China; 3.People’s Hospital of Xinjiang Uygur Autonomous Region ,Urumqi 830000,Xinjiang,China)
关键词:
内皮细胞微粒miRNA急性心肌梗死
Keywords:
Endothelial microparticles miRNA Acute myocardial infarction
DOI:
10.16806/j.cnki.issn.1004-3934.2023.06.017
摘要:
急性心肌梗死(AMI)是世界范围内死亡的主要原因,及早发现该疾病是风险管理和有效治疗的关键目标。内皮细胞微粒(EMPs)是内皮细胞脱落的细胞外小囊泡,可以作为携带细胞因子、信号蛋白、微小RNA(miRNA)等物质远距离传输生物学信息的载体,在调节内皮细胞功能、炎症反应、氧化应激和血管生成中起关键作用。miRNA是一种含有约22个核苷酸的短链、内源性、非编码RNA,与靶mRNA特异性结合,导致翻译阻遏,调节转录后基因的表达,从而参与细胞的生长分化等病理生理过程。近年来研究显示EMPs可以借助miRNA调节多种信号通路,在AMI的发生、发展中具有重要作用,在诊断和治疗方面具有较大应用前景。现针对EMPs miRNA在AMI中的研究进展进行简要概述。
Abstract:
Acute myocardial infarction (AMI) is the leading cause of death worldwide,and early detection of this disease is a key goal for risk management and effective treatment. Endothelial microparticles (EMPs) are exfoliated extracellular vesicles of endothelial cells,which can carry cytokines,signaling proteins,microRNA (miRNA) and other substances to transmit biological information over long distance,and play a key role in regulating endothelial cell function,inflammation,oxidative stress and angiogenesis. miRNA is a kind of short chain,endogenous and non-coding RNA containing about 22 nucleotides. It specifically binds to target mRNA,leads to translation repression,regulates the expression of post-transcribed genes,and thus participates in the pathophysiological processes of cell growth and differentiation. In recent years,studies have shown that EMPs can regulate a variety of signaling pathways with the help of miRNA,which plays an important role in the occurrence and development of AMI and has great application prospects in diagnosis and treatment. This paper will briefly review the research progress of EMPs miRNA in AMI

参考文献/References:

[1] Wu X,Reboll MR,Korf-Klingebiel M,et al. Angiogenesis after acute myocardial infarction[J]. Cardiovasc Res,2021,117(5):1257-1273.

[2] Ramachandra CJA,Hernandez-Resendiz S,Crespo-Avilan GE,et al. Mitochondria in acute myocardial infarction and cardioprotection[J]. EBioMedicine,2020,57:102884.

[3] Suleiman T,Scott A,Tong D,et al. Contemporary device management of cardiogenic shock following acute myocardial infarction[J]. Heart Fail Rev,2022,27(3):915-925.

[4] Chen X,Li X,Xu X,et al. Ferroptosis and cardiovascular disease: role of free radical-induced lipid peroxidation[J]. Free Radic Res,2021,55(4):405-415.

[5] Song J,Murugiah K,Hu S,et al. China PEACE Collabortive Group. Incidence,predictors,and prognostic impact of recurrent acute myocardial infarction in China[J]. Heart,2020,107(4):313-318.

[6] Yuan Y,Maitusong M,Muyesai N. Association of endothelial and red blood cell microparticles with acute myocardial infarction in Chinese: a retrospective study[J]. Ann Palliat Med,2020,9(4):1564-1570.

[7] Ma Y,He X,Liu X,et al. Endothelial microparticles derived from primary pulmonary microvascular endothelial cells mediate lung inflammation in chronic obstructive pulmonary disease by transferring microRNA-126[J]. J Inflamm Res,2022,15:1399-1411.

[8] Zhang J,Zhu Y,Wu Y,et al. Synergistic effects of EMPs and PMPs on pulmonary vascular leakage and lung injury after ischemia/reperfusion[J]. Cell Commun Signal,2020,18(1):184.

[9] Nik Ibrahim NNI,Abdul Rahman R,Azlan M,et al. Endothelial microparticles as potential biomarkers in the assessment of endothelial dysfunction in hypercholesterolemia[J]. Medicina (Kaunas),2022,58(6):824.

[10] Shah R,Patel T,Freedman JE. Circulating extracellular vesicles in human disease[J]. N Engl J Med,2018,379(10):958-966.

[11] Li B,Huang Q,Lin C,et al. Increased circulating CD31+/CD42b-EMPs in Perthes disease and inhibit HUVECs angiogenesis via endothelial dysfunction[J]. Life Sci,2021,265:118749.

[12] Huang HY,Lin YC,Cui S,et al. miRTarBase update 2022:an informative resource for experimentally validated miRNA-target interactions[J]. Nucleic Acids Res,2022,50(D1):D222-D230.

[13] Zhang L,Zhang Y,Xue S,et al. Clinical significance of circulating microRNAs as diagnostic biomarkers for coronary artery disease[J]. J Cell Mol Med,2020,24(1):1146-1150.

[14] Mir R,Elfaki I,Khullar N,et al. Role of selected miRNAs as diagnostic and prognostic biomarkers in cardiovascular diseases,including coronary artery disease,myocardial infarction and atherosclerosis[J]. J Cardiovasc Dev Dis,2021,8(2):22.

[15] Sharma AR,Sharma G,Bhattacharya M,et al. Circulating miRNA in atherosclerosis: a clinical biomarker and early diagnostic tool[J]. Curr Mol Med,2022,22(3):250-262.

[16] 帕孜丽亚·阿地力. 急性冠脉综合征患者冠脉血内皮细胞微粒及其中的miR-126水平分析[D]. 石河子大学,2020.

[17] 麦合甫热提·乌甫尔,袁玉娟,冯彦玲,等. 急性心肌梗死冠脉血内皮细胞微粒研究[J]. 临床急诊杂志,2021,22(6):421-425.

[18] Shu Z,Tan J,Miao Y,et al. The role of microvesicles containing microRNAs in vascular endothelial dysfunction[J]. J Cell Mol Med,2019,23(12):7933-7945.

[19] Puhm F,Afonyushkin T,Resch U,et al. Mitochondria are a subset of extracellular vesicles released by activated monocytes and induce type I IFN and TNF responses in Endothelial cells[J]. Circ Res,2019,125(1):43-52.

[20] Desita SR,Hariftyani AS,Jannah AR,et al. PCSK9 and LRP6: potential combination targets to prevent and reduce atherosclerosis[J]. J Basic Clin Physiol Pharmacol,2022,33(5):529-534.

[21] Li C,Li S,Zhang F,et al. Endothelial microparticles-mediated transfer of microRNA-19b promotes atherosclerosis via activating perivascular adipose tissue inflammation in apoE-/- mice [J]. Biochem Biophys Res Commun,2018,495(2):1922-1929.

[22] Haohan S,Pussadhamma B,Jumnainsong A,et al. Association of major histocompatibility complex class I related chain A/B positive microparticles with acute myocardial infarction and disease severity[J]. Diagnostics (Basel),2020,10(10):766.

[23] Liao Z,Chen Y,Duan C,et al. Cardiac telocytes inhibit cardiac microvascular endothelial cell apoptosis through exosomal miRNA-21-5p-targeted cdip1 silencing to improve angiogenesis following myocardial infarction[J]. Theranostics,2021,11(1):268-291.

[24] Liang HZ,Li SF,Zhang F,et al. Effect of endothelial microparticles induced by hypoxia on migration and angiogenesis of human umbilical vein endothelial cells by delivering microRNA-19b[J]. Chin Med J (Engl),2018,131(22):2726-2733.

[25] Zhang Y,Cheng J,Chen F,et al. Circulating endothelial microparticles and miR-92a in acute myocardial infarction[J]. Biosci Rep,2017,37(2):BSR20170047.

[26] Yu SR,Cui YX,Song ZQ,et al. Endothelial microparticle-mediated transfer of microRNA-19b inhibits the function and distribution of lymphatic vessels in atherosclerotic mice[J]. Front Physiol,2022,13:850298.

[27] Arderiu G,Pe?a E,Civit-Urgell A,et al. Endothelium-released microvesicles transport miR-126 that induces proangiogenic reprogramming in monocytes[J]. Front Immunol,2022,13:836662.

[28] Zi Y,Yi-An Y,Bing J,et al. Sirt6-induced autophagy restricted TREM-1-mediated pyroptosis in ox-LDL-treated endothelial cells: relevance to prognostication of patients with acute myocardial infarction[J]. Cell Death Discov,2019,5:88.

相似文献/References:

[1]张维 张恒 康品方.外泌体在心血管疾病中的研究进展[J].心血管病学进展,2019,(5):818.[doi:10.16806/j.cnki.issn.1004-3934.2019.05.038]
 Zhang WeiKang Pinfang.Exosome in Cardiovascular Diseases[J].Advances in Cardiovascular Diseases,2019,(6):818.[doi:10.16806/j.cnki.issn.1004-3934.2019.05.038]
[2]马韵之 李剑 周鹏.糖尿病心肌病血清生物标志物研究进展[J].心血管病学进展,2021,(5):392.[doi:10.16806/j.cnki.issn.1004-3934.2021.05.002]
 Serum Biomarkers of Diabetic Cardiomyopathy.[J].Advances in Cardiovascular Diseases,2021,(6):392.[doi:10.16806/j.cnki.issn.1004-3934.2021.05.002]
[3]杨珂欣 李星辉 肖晨朦 姚晓涛 林萌 蔡佳.间充质干细胞来源外泌体改善心肌纤维化的研究进展[J].心血管病学进展,2022,(12):1123.[doi:10.16806/j.cnki.issn.1004-3934.20.10.015]
 YANG Kexin LI Xinghui XIAO ChenmengYAO XiaotaoLIN MengCAI Jia.Improving Myocardial Fibrosis by Exosome Derived from Mesenchymal Stem Cell[J].Advances in Cardiovascular Diseases,2022,(6):1123.[doi:10.16806/j.cnki.issn.1004-3934.20.10.015]

更新日期/Last Update: 2023-07-21