|本期目录/Table of Contents|

[1]廖荣恒,祁禛,汪永义.RhoA/ROCK2通路在心脏成纤维细胞分化中的作用机制[J].国际心血管病杂志,2021,06:365-369.
 LIAO Rongheng,QI Zhen,WANG Yongyi.Mechanism of RhoA/ROCK2 pathway in cardiac fibroblasts differentiation[J].International Journal of Cardiovascular Disease,2021,06:365-369.
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RhoA/ROCK2通路在心脏成纤维细胞分化中的作用机制(PDF)

《国际心血管病杂志》[ISSN:1006-6977/CN:61-1281/TN]

期数:
2021年06期
页码:
365-369
栏目:
基础研究
出版日期:
2021-12-01

文章信息/Info

Title:
Mechanism of RhoA/ROCK2 pathway in cardiac fibroblasts differentiation
作者:
廖荣恒祁禛汪永义
200001 上海交通大学医学院附属仁济医院心血管外科
Author(s):
LIAO Rongheng QI Zhen WANG Yongyi
Department of Cardiovascular Surgery, Renji Hospital Affiliated to Shanghai Jiaotong University School of Medicine, Shanghai 200127, China
关键词:
心肌梗死 RhoA/ROCK2通路 心脏纤维化 心脏成纤维细胞分化
Keywords:
Myocardiac infarction RhoA/ROCK2 pathway Myocardial fibrosis Cardiac fibroblasts differentiation
分类号:
-
DOI:
10.3969/j.issn.1673-6583.2021.06.012
文献标识码:
-
摘要:
目的:探讨RhoA/ROCK2通路在急性心肌梗死(AMI)后心脏成纤维细胞分化过程中的作用机制。方法:选取12只清洁级6~8周龄雄性C57小鼠,随机平均分为AMI组与假手术组,AMI组开胸结扎左前降支,假手术组仅作开胸处理。21 d后处死小鼠取心脏组织,通过免疫组织化学技术分别对比梗死区与正常区域RhoA与ROCK2表达情况,运用实时荧光定量聚合酶链反应(qRT-PCR)及Western blot技术检测组织匀浆中RhoAROCK2表达情况。体外培养人心肌成纤维细胞,随机分为
Abstract:
Objective:To elucidate the effect and mechanism of RhoA/ROCK2 pathway on cardiac fibroblasts differentiation after acute myocardial infarction(AMI).Methods:Twelve clean male C57 mice, aged 6-8 weeks, were divided randomly into AMI group and sham group. Li

参考文献/References

[1] Van Den Borne SWM, Diez J, Blankesteijn WM, et al. Myocardial remodeling after infarction: the role of myofibroblasts[J]. Nat Rev Cardiol, 2010, 7(1):30.
[2] Rodriguez P, Sassi Y, Troncone L, et al. Deletion of delta-like 1 homologue accelerates fibroblast-myofibroblast differentiation and induces myocardial fibrosis[J]. Eur Heart J, 2018, 40(12):967-978.
[3] Chistiakov DA, Orekhov AN, Bobryshev YV. The role of cardiac fibroblasts in post-myocardial heart tissue repair[J]. Exp Mol Pathol, 2016,101(2):231-240.
[4] Porter KE, Turner NA. Cardiac fibroblasts: at the heart of myocardial remodeling[J]. Pharmacol Ther, 2009, 123(2):255-278.
[5] Kawaguchi M, Takahashi M, Hata T, et al. Inflammasome activation of cardiac fibroblasts is essential for myocardial ischemia/reperfusion injury[J]. Circ, 2011, 123(6):594-604.
[6] Manabe I, Shindo T, Nagai R, Gene expression in fibroblasts and fibrosis: involvement in cardiac hypertrophy[J]. Circ Res, 2002, 91:1103-1113.
[7] Amano M, Nakayama M, Kaibuchi K. Rho-Kinase/ROCK: a key regulator of the cytoskeleton and cell polarity[J]. Cell Motil Cytoskeleton, 2010, 67:545-554.
[8] Zhou Q, Liao JK. Rho kinase: an important mediator of atherosclerosis and vascular disease[J]. CPD, 2009, 15(27):3108-3115.
[9] Yang X, Li Q, Lin X, et al. Mechanism of fibrotic cardiomyopathy in mice expressing truncated Rho-associated coiled-coil protein kinase 1[J]. FASEB J, 2012, 26(5):2105-2116.
[10] Mita SI, Kobayashi N, Yoshida K, et al. Cardioprotective mechanisms of Rho-kinase inhibition associated with eNOS and oxidative stress-LOX-1 pathway in Dahl salt-sensitive hypertensive rats[J]. J Hypertens Suppl, 2005, 23(1):87-96.
[11] Qiu Y, Yuan R, Zhang S, et al. Rock2 stabilizes β-catenin to promote tumor invasion and metastasis in colorectal cancer[J]. Biochem Biophys Res Commun, 2015, 467:629-637.
[12] Tallquist MD, Molkentin JD. Redefining the identity of cardiac fibroblasts[J]. Nat Rev Cardiol, 2017, 14:484-491.
[13] Gellings LN, Swaney JS, Moreno KM, et al. Sphingosine-1-phosphate and sphingosine kinase are critical for transforming growth factor-beta-stimulated collagen production by cardiac fibroblasts[J]. Cardiovasc Res, 2009, 82:303-312.
[14] Weber KT. Fibrosis and hypertensive heart disease[J]. Curr Opin Cardiol, 2000, 15(4):264.
[15] Calderone A, Bel-Hadj S, Drapeau J, et al. Scar myofibroblasts of the infarcted rat heart express natriuretic peptides[J]. J Cell Physiol, 2006, 207:165-173.
[16] Qi Y, Liang XY, Dai F, et al. RhoA/ROCK pathway activation is regulated by AT1 receptor and participates in smooth muscle migration and dedifferentiation via promoting actin cytoskeleton polymerization[J]. Int J Mol Sci, 2020, 21(15):5398
[17] Deng ZH, Jia YM, Liu HF, et al. RhoA/ROCK pathway: implication in osteoarthritis and therapeutic targets[J]. Am J Transl Res, 2019, 11(9):5324-5331.

备注/Memo

备注/Memo:
通信作者:汪永义,E-mail:wangyongyi77@163.com
更新日期/Last Update: 2021-12-01