Research progress of the mechanism of traditional Chinese medicine in the prevention and treatment of atherosclerosis based on miRNA regulation of vascular endothelial cell injury
返回论文页
|更新时间:2023-06-26
|
Research progress of the mechanism of traditional Chinese medicine in the prevention and treatment of atherosclerosis based on miRNA regulation of vascular endothelial cell injury
LIU Dandan,QIN Hewei,GAO Yang,et al.Research progress of the mechanism of traditional Chinese medicine in the prevention and treatment of atherosclerosis based on miRNA regulation of vascular endothelial cell injury[J].ZHONGGUO YAOFANG,2023,34(12):1524-1528.
LIU Dandan,QIN Hewei,GAO Yang,et al.Research progress of the mechanism of traditional Chinese medicine in the prevention and treatment of atherosclerosis based on miRNA regulation of vascular endothelial cell injury[J].ZHONGGUO YAOFANG,2023,34(12):1524-1528. DOI: 10.6039/j.issn.1001-0408.2023.12.22.
Research progress of the mechanism of traditional Chinese medicine in the prevention and treatment of atherosclerosis based on miRNA regulation of vascular endothelial cell injury
The injury of vascular endothelial cells is not only the initial condition to promote the occurrence of early atherosclerosis (AS) plaques, but also an important link in the pathogenesis of AS. The microRNA (miRNA), as an important medium of intercellular communication and gene regulatory factor, can affect vascular endothelial function and participate in the development of AS. The molecular mechanism of miRNA’s multi-target intervention in vascular endothelial cell injury has become a hot topic in the research of cardiovascular diseases. Monomers of traditional Chinese medicines such as ginsenoside Rb
2
and paeonol, as well as traditional Chinese medicine for resolving phlegm and removing blood stasis could regulate miRNA to improve endothelial cell inflammation; astragaloside Ⅳ, dihydromyricetin and notoginsenoside could target miRNA and inhibit vascular endothelial oxidative stress; Danhong injection, Jianpi qutan and huayu prescription and paeonol could affect endothelial autophagy through miRNA; resveratrol, Bushen huoxue formula and Bushen tongmai formula could inhibit vascular endothelial aging by miRNA; dendrobine played an active role in regulating miRNA and improving endoplasmic reticulum stress. In the future, more in-depth research is needed on the effectiveness, mechanism of action, diagnosis and treatment plans, and safety of targeted regulation of miRNA for AS therapy by traditional Chinese medicine.
关键词
微RNA内皮细胞损伤动脉粥样硬化中药作用机制
Keywords
endothelial cell injuryatheroscle-rosistraditional Chinese medicinemechanism of action
LU T X,ROTHENBERG M E. microRNA[J]. J Allergy Clin Immunol,2018,141(4):1202-1207.
HO P T B,CLARK I M,LE L T T. microRNA-based diagnosis and therapy[J]. Int J Mol Sci,2022,23(13):7167.
KILIKEVICIUS A,MEISTER G,COREY D R. Reexa-mining assumptions about miRNA-guided gene silencing[J]. Nucleic Acids Res,2022,50(2):617-634.
LU Y,THAVARAJAH T,GU W D,et al. Impact of miRNA in atherosclerosis[J]. Arterioscler Thromb Vasc Biol,2018,38(9):e159-e170.
DIENER C,KELLER A,MEESE E. Emerging concepts of miRNA therapeutics:from cells to clinic[J]. Trends Genet,2022,38(6):613-626.
MATSUYAMA H,SUZUKI H I. Systems and synthetic microRNA biology:from biogenesis to disease pathoge-nesis[J]. Int J Mol Sci,2019,21(1):E132.
FERRAGUT CARDOSO A P,BANERJEE M,NAIL A N,et al. miRNA dysregulation is an emerging modulator of genomic instability[J]. Semin Cancer Biol,2021,76:120-131.
ZHU Y,XIAN X,WANG Z,et al. Research progress on the relationship between atherosclerosis and inflammation[J]. Biomolecules,2018,8(3):E80.
JIANG F J,CHEN Q,WANG W,et al. Hepatocyte-derived extracellular vesicles promote endothelial inflammation and atherogenesis via microRNA-1[J]. J Hepatol,2020,72(1):156-166.
CHEN Y T,WANG S T,YANG S J,et al. Inhibitory role of ginsenoside Rb2 in endothelial senescence and inflammation mediated by microRNA‑216a[J]. Mol Med Rep,2021,23(6):415.
LIU Y R,LI C,WU H F,et al. Paeonol attenuated inflammatory response of endothelial cells via stimulating monocytes-derived exosomal microRNA-223[J]. Front Pharmacol,2018,9:1105.
SHI X Y,XIE X M,SUN Y,et al. Paeonol inhibits NLRP3 mediated inflammation in rat endothelial cells by elevating hyperlipidemic rats plasma exosomal miRNA-223[J]. Eur J Pharmacol,2020,885:173473.
MAGENTA A,GRECO S,GAETANO C,et al. Oxidative stress and microRNAs in vascular diseases[J]. Int J Mol Sci,2013,14(9):17319-17346.
ZHANG L,LI Q L,CHEN Y X,et al. LncRNA OIP5-AS1 accelerates ox-LDL-treated HUVECs injury by NF-κB pathway via miR-30c-5p[J]. Clin Hemorheol Microcirc,2021,78(4):449-460.
SHAO X,LIU Z Z,LIU S S,et al. Astragaloside Ⅳ alle-viates atherosclerosis through targeting circ_0000231/miR-135a-5p/CLIC4 axis in AS cell model in vitro[J]. Mol Cell Biochem,2021,476(4):1783-1795.
YANG D F,YANG Z S,CHEN L,et al. Dihydromyricetin increases endothelial nitric oxide production and inhibits atherosclerosis through microRNA-21 in apolipoprotein E-deficient mice[J]. J Cell Mol Med,2020,24(10):5911-5925.
ZHAO J,CUI L,SUN J,et al. Notoginsenoside R1 alle-viates oxidized low-density lipoprotein-induced apoptosis,inflammatory response,and oxidative stress in HUVECS through modulation of XIST/miR-221-3p/TRAF6 axis[J]. Cell Signal,2020,76:109781.
LI W,SULTANA N,SIRAJ N,et al. Autophagy dysfunction and regulatory cystatin C in macrophage death of athe-rosclerosis[J]. J Cell Mol Med,2016,20(9):1664-1672.
SERMERSHEIM M A,PARK K H,GUMPPER K,et al. microRNA regulation of autophagy in cardiovascular di-sease[J]. Front Biosci (Landmark Ed),2017,22(1):48-65.
LIANG W J,FAN T B,LIU L,et al. Knockdown of growth-arrest specific transcript 5 restores oxidized low-density lipoprotein-induced impaired autophagy flux via upregulating miR-26a in human endothelial cells[J]. Eur J Pharmacol,2019,843:154-161.
GUO Y,YANG J H,CAO S D,et al. Effect of main ingredients of Danhong injection against oxidative stress induced autophagy injury via miR-19a/SIRT1 pathway in endothelial cells[J]. Phytomedicine,2021,83:153480.
LI C,YANG L,WU H F,et al. Paeonol inhibits oxidized low-density lipoprotein-induced vascular endothelial cells autophagy by upregulating the expression of miRNA-30a[J]. Front Pharmacol,2018,9:95.
DE YÉBENES V G,BRIONES A M,MARTOS-FOLGADO I,et al. Aging-associated miR-217 aggravates atherosclerosis and promotes cardiovascular dysfunction[J]. Arterioscler Thromb Vasc Biol,2020,40(10):2408-2424.
YANG S J,WU M,LI X Y,et al. Role of endoplasmic reticulum stress in atherosclerosis and its potential as a therapeutic target[J]. Oxid Med Cell Longev,2020,2020:9270107.
GE P P,GAO M X,DU J,et al. Downregulation of microRNA-512-3p enhances the viability and suppresses the apoptosis of vascular endothelial cells,alleviates autophagy and endoplasmic reticulum stress as well as represses atherosclerotic lesions in atherosclerosis by adjus-ting spliced/unspliced ratio of X-box binding protein 1 (XBP-1S/XBP-1U)[J]. Bioengineered,2021,12(2):12469-12481.
MENG J,SONG X Y,YAN G L,et al. Dendrobine suppresses endoplasmic reticulum stress-induced apoptosis through upregulating microRNA miR-381-3p to decrease caspase-4[J]. Bioengineered,2021,12(1):4452-4463.
QIAN W B,QIAN Q H,CAI X R,et al. Astragaloside Ⅳ inhibits oxidized low‑density lipoprotein‑induced endothelial damage via upregulation of miR‑140‑3p[J]. Int J Mol Med,2023,51(2):17.
CAMPAGNOLO P,HONG X C,BERNARDINI E D,et al. Resveratrol-induced vascular progenitor differentiation towards endothelial lineage via miR-21/akt/β-catenin is protective in vessel graft models[J]. PLoS One,2015,10(5):e0125122.
LIN C M,WANG B W,PAN C M,et al. Chrysin boosts KLF2 expression through suppression of endothelial cell-derived exosomal microRNA-92a in the model of atheroprotection[J]. Eur J Nutr,2021,60(8):4345-4355.
ZHONG X M,ZHANG L,LI Y M,et al. Kaempferol alleviates ox-LDL-induced apoptosis by up-regulation of miR-26a-5p via inhibiting TLR4/NF-κB pathway in human endothelial cells[J]. Biomed Pharmacother,2018,108:1783-1789.
PAONE S,BAXTER A A,HULETT M D,et al. Endothelial cell apoptosis and the role of endothelial cell-derived extracellular vesicles in the progression of atherosclerosis[J]. Cell Mol Life Sci,2019,76(6):1093-1106.