Basic & Clinical Medicine ›› 2022, Vol. 42 ›› Issue (9): 1428-1432.doi: 10.16352/j.issn.1001-6325.2022.09.1428
• Mini Reviews • Previous Articles Next Articles
LIU Zhen-zhu1, LI Jing1, HE Dan3*, QU Peng1,2*
Received:
2021-02-09
Revised:
2021-07-17
Online:
2022-09-05
Published:
2022-09-02
CLC Number:
LIU Zhen-zhu, LI Jing, HE Dan, QU Peng. Research progress of PI3K signaling pathway regulating the pathogenesis of atherosclerosis[J]. Basic & Clinical Medicine, 2022, 42(9): 1428-1432.
[1] | Newling M, Sritharan L, Van Der Ham AJ, et al. C-reactive protein promotes inflammation through fcγr-induced glycolytic reprogramming of human macrophages[J]. J Immunol, 2019, 203: 225-235. |
[2] | Huang J, Cai C, Zheng T, et al. Endothelial scaffolding protein enh (enigma homolog protein) promotes phlpp2 (pleckstrin homology domain and leucine-rich repeat protein phosphatase 2)-mediated dephosphorylation of akt1 and enos (endothelial no synthase) promoting vascular remodeling[J]. Arterioscler Thromb Vasc Biol, 2020, 40: 1705-1721. |
[3] | Li P, Wang J, Zhao X, et al. Pten inhibition attenuates endothelial cell apoptosis in coronary heart disease via modulating the ampk-creb-mfn2-mitophagy signaling pathway[J]. J Cell Physiol, 2020, 235: 4878-4889. |
[4] | Li FP, Lin DQ, Gao LY. LncRNA tug1 promotes proliferation of vascular smooth muscle cell and atherosclerosis through regulating mirna-21/pten axis[J]. Eur Rev Med Pharmacol Sci, 2018, 22: 7439-7447. |
[5] | Xu CX, Xu L, Peng FZ, et al. miR-647 promotes proliferation and migration of ox-ldl-treated vascular smooth muscle cells through regulating PTEN/PI3K/AKT pathway[J]. Eur Rev Med Pharmacol Sci, 2019, 23: 7110-7119. |
[6] | Islam S, Yoshioka K, Aki S, et al. Class Ⅱ phosphatidylinositol 3-kinase α and β isoforms are required for vascular smooth muscle rho activation, contraction and blood pressure regulation in mice[J]. J Physiol Sci, 2020, 70: 18. doi: 10.1186/s12576-020-00745-2. |
[7] | Lin T, Ruan S, Huang D, et al. MeHg-induced autophagy via jnk/vps34 complex pathway promotes autophagosome accumulation and neuronal cell death[J]. Cell Death Dis, 2019, 10: 399. doi: 10.1038/s41419-019-1632-z. |
[8] | 杨卉, 莫显刚, 王兰, 等. Apoe~(-/-)小鼠动脉粥样硬化斑块中nhe1与netrin-1表达上调[J].基础医学与临床, 2020, 40: 777-783. |
[9] | Zheng Z, Zeng Y, Zhu X, et al. Apom-s1p modulates ox-ldl-induced inflammation through the PI3K/AKT signaling pathway in huvecs[J]. Inflammation, 2019, 42: 606-617. |
[10] | Yan H, Ma Y, Li Y, et al. Insulin inhibits inflammation and promotes atherosclerotic plaque stability via PI3K-AKT pathway activation[J]. Immunol Lett, 2016, 170: 7-14. |
[11] | Jiang L, Qiao Y, Wang Z, et al. Inhibition of microrna-103 attenuates inflammation and endoplasmic reticulum stress in atherosclerosis through disrupting the pten-mediated mapk signaling[J]. J Cell Physiol, 2020, 235: 380-393. |
[12] | Zhang X, Wang L, Peng L, et al. Dihydromyricetin protects huvecs of oxidative damage induced by sodium nitroprusside through activating PI3K/AKT/foxO3a signalling pathway[J]. J Cell Mol Med, 2019, 23: 4829-4838. |
[13] | Gu L, Ye P, Li H, et al. Lunasin attenuates oxidant-induced endothelial injury and inhibits atherosclerotic plaque progression in apoE(-/-) mice by up-regulating heme oxygenase-1 via PI3K/AKT/NRF2/are pathway[J]. Faseb J, 2019, 33: 4836-4850. |
[14] | Zhou PL, Li M, Han XW, et al. Perilipin 5 deficiency promotes atherosclerosis progression through accelerating inflammation, apoptosis, and oxidative stress[J]. J Cell Biochem, 2019, 120: 19107-19123. |
[15] | Babaev VR, Ding L, Zhang Y, et al. Loss of 2 AKT(protein kinase b) isoforms in hematopoietic cells diminished monocyte and macrophage survival and reduces atherosclerosis in ldl receptor-null mice[J]. Arterioscler Thromb Vasc Biol, 2019, 39: 156-169. |
[16] | Song N, Jia L, Cao H, et al. Gypenoside inhibits endothelial cell apoptosis in atherosclerosis by modulating mitochondria through PI3K/AKT/BAD pathway[J]. Biomed Res Int, 2020, 2020: 2819658. doi: 10.1155/2020/2819658. |
[17] | Wang Z, Bao Z, Ding Y, et al. Nε-carboxymethyl-lysine-induced PI3K/AKT signaling inhibition promotes foam cell apoptosis and atherosclerosis progression[J]. Biomed Pharmacother, 2019, 115: 108880. doi: 10.1016/j.biopha.2019.108880. |
[18] | Jamuna S, Ashokkumar R, Sakeena Sadullah MS, et al. Oligomeric proanthocyanidins and epigallocatechin gallate aggravate autophagy of foam cells through the activation of class Ⅲ PI3K/beclin1-complex mediated cholesterol efflux[J]. Biofactors, 2019, 45: 763-773. |
[19] | Zhai C, Cheng J, Mujahid H, et al. Selective inhibition of pi3k/akt/mtor signaling pathway regulates autophagy of macrophage and vulnerability of atherosclerotic plaque[J]. PLoS One, 2014, 9: e90563. doi: 10.1371/journal.pone.0090563. |
[20] | Miao W, Yan Y, Bao TH, et al. Ischemic postcondition-ing exerts neuroprotective effect through negatively regulating pi3k/akt2 signaling pathway by microrna-124[J]. Biomed Pharmacother, 2020, 126: 109786. doi: 10.1016/j.biopha.2019.109786. |
[21] | Durham KK, Chathely KM, Trigatti BL. High-density lipoprotein protects cardiomyocytes against necrosis induced by oxygen and glucose deprivation through sr-b1, pi3k, and akt1 and 2[J]. Biochem J, 2018, 475: 1253-1265. |
[22] | Pi S, Mao L, Chen J, et al. The p2ry12 receptor promotes vsmc-derived foam cell formation by inhibiting autophagy in advanced atherosclerosis[J]. Autophagy, 2020, 1-21. |
[23] | Li B, Fang J, He T, et al. Resistin up-regulates lpl expression through the pparγ-dependent PI3K/AKT signaling pathway impacting lipid accumulation in raw264.7 macrophages[J]. Cytokine, 2019, 119: 168-174. |
[24] | Li M, Li M, Yang Y, et al. Remodeling tumor immune microenvironment via targeted blockade of PI3K-γ and csf-1/csf-1r pathways in tumor associated macrophages for pancreatic cancer therapy[J]. J Control Release, 2020, 321: 23-35. |
[25] | Fougerat A, Gayral S, Gourdy P, et al. Genetic and pharmacological targeting of phosphoinositide 3-kinase-gamma reduces atherosclerosis and favors plaque stability by modulating inflammatory processes[J]. Circulation, 2008, 117: 1310-1317. |
[26] | Liu F, Qiu H, Xue M, et al. Msc-secreted TGF-β regulates lipopolysaccharide-stimulated macrophage M2-like polarization via the AKT/FoxO1 pathway[J]. Stem Cell Res Ther, 2019, 10: 345. doi: 10.1186/s13287-019-1447-y. |
[27] | Liu Y, Tie L. Apolipoprotein m and sphingosine-1-phosphate complex alleviates tnf-α-induced endothelial cell injury and inflammation through PI3K/AKT signaling pathway[J]. BMC Cardiovasc Disord, 2019, 19: 279. doi: 10.1186/s12872-019-1263-4. |
[28] | Ma Q, Zhang W, Zhu C, et al. FUNDC2 regulates platelet activation through AKT/GSK-3β/cGMP axis[J]. Cardiovasc Res, 2019, 115: 1672-1679. |
[29] | Zheng Y, Lv P, Huang J, et al. GYY4137 exhibits anti-atherosclerosis effect in apolipoprotein E(-/-) mice via PI3K/AKT and TLR4 signalling[J]. Clin Exp Pharmacol Physiol, 2020, 47: 1231-1239. |
[1] | CHEN Linmu, HUANG Yunxiu. Chitosan oligosaccharides alleviates the formation of atherosclerotic plaque through up-regulating core-fucosylation of SRBI in mice [J]. Basic & Clinical Medicine, 2024, 44(4): 474-482. |
[2] | YU Hanqiao, LI Chao, YU Yubin, FENG Lina, SHENG Xiaosheng, YE Xiaoxia, WANG Linyan. Inhibition of triggering receptor expressed on myeloid cells-1(TREM-1) attenuates chronic intermittent hypoxia-induced atherosclerosis in mouse models [J]. Basic & Clinical Medicine, 2024, 44(3): 368-373. |
[3] | ZHANG Xiuli, HU Xiaogang, MO Jun, CHEN Ling. Guanxinning tablet alleviates carotid atherosclerotic plaque injury in rats [J]. Basic & Clinical Medicine, 2024, 44(2): 192-198. |
[4] | GUO Jianhong, WANG Yaling, CUI Wenguang. Research progress on the role of lipoprotein- associated phospholipase A2 in acute coronary syndrome [J]. Basic & Clinical Medicine, 2024, 44(1): 103-107. |
[5] | SONG Xingming, Harisa·ERKENJIAN, Dilihumal·ABLAITI, GAO Ying. Research progress of endothelial lipase as a therapeutic target for coronary heart disease [J]. Basic & Clinical Medicine, 2023, 43(9): 1443-1447. |
[6] | DU Fenghe, LIU Bao. Research progress on the mechanism of perivascular adipose tissue inflammation promoting atherosclerosis [J]. Basic & Clinical Medicine, 2023, 43(4): 685-689. |
[7] | LIU Yifei, WANG Xinyu, WANG Jiahui, DU Xiaobing, WANG Tu, ZHAO Juan. Urotensin Ⅱ receptor antagonist(urantide) alleviates renal injury in rats with atherosclerosis [J]. Basic & Clinical Medicine, 2023, 43(11): 1668-1672. |
[8] | YANG Jiaoyang, SHU Gege, LI Dongbao, ZHOU Jin. Research progress of signaling pathways in gastric cancer metastasis [J]. Basic & Clinical Medicine, 2023, 43(11): 1707-1712. |
[9] | ZHAO Mao-yu, LI You-mei, LIU Huan-yun, MAO Qi. Research progress of insulin resistance markers in atherogenesis [J]. Basic & Clinical Medicine, 2022, 42(8): 1302-1305. |
[10] | XIE Si-an, XU Jun-xuan, NING Ting-ting, ZHANG Nan, ZHU Sheng-tao, LIU Si. VAV1 is a potential target and a new biomarker for the prognosis of atherosclerosis [J]. Basic & Clinical Medicine, 2022, 42(7): 1092-1098. |
[11] | ZHANG Qi-yue, ZHANG Wei-li. The role of vascular aging in atherosclerosis [J]. Basic & Clinical Medicine, 2022, 42(3): 372-377. |
[12] | ZHAO Chuan-rong, ZHOU Jing. Shear-sensitive factors in therapeutic targets for atherosclerosis [J]. Basic & Clinical Medicine, 2022, 42(3): 378-383. |
[13] | LI Huan-huan, ZHANG Yu-qi, LYU Hai-hong. Research progress of oxidative stress increasing the risk of cardiovascular disease of polycystic ovary syndrome patients [J]. Basic & Clinical Medicine, 2022, 42(12): 1950-1954. |
[14] | SHENG Yan, LI Xiu-mao, GUO Xin, XIE Qian, HUANG Ren-jie, SHENG Xin. Reduction of carotid perfusion promotes inflammation of vascular endothelial cells in rabbits [J]. Basic & Clinical Medicine, 2021, 41(9): 1247-1252. |
[15] | ZHANG Chuan-xi, ZHANG Yu, GUO Sha-sha, LI Jing, YUAN Yi-qiang, WANG Ming-jie. Correlation of serum miR-181b and miR-27a expression with the severity of carotid atherosclerosis [J]. Basic & Clinical Medicine, 2021, 41(8): 1133-1138. |
Viewed | ||||||||||||||||||||||||||||||||||||||||||||||||||
Full text 488
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||
Abstract 337
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||