Literature DB >> 23210435

Paeoniflorin protects myocardial cell from doxorubicin-induced apoptosis through inhibition of NADPH oxidase.

Jian-Zhe Li1, Shu-Yi Yu, Jian-Hua Wu, Qing-Rui Shao, Xiao-Min Dong.   

Abstract

Increased intracellular reactive oxygen species (ROS) are involved in doxorubicin (DOX)-induced myocardial cell apoptosis, and paeoniflorin (PEF) has been shown to exert an antioxidant effect. The aim of the present study was to explore the protective effect of PEF on DOX-induced myocardial cell apoptosis and the underlying mechanisms. In cultured H9c2 cells, different concentrations (1, 10, or 100 μmol/L) of PEF was added for 2 h prior to exposure to DOX (5 μmol/L) for 24 h. Cell apoptosis was evaluated by hoechst 33342 staining, and caspase-3 expression and activity. The mRNA and protein expression of NADPH oxidase (NOX) 2 and NOX4 was determined by real-time polymerase chain reaction and Western blot, respectively. Intracellular ROS and NOX activity were measured by assay kit. The results showed that DOX significantly increased myocardial cell apoptosis, increased caspase-3 expression and activity concomitantly with enhanced ROS production, and increased NOX2, NOX4 mRNA and protein expression, and NOX activity. These effects were remarkably inhibited by pretreatment of PEF. Our results suggested that PEF has a protective effect against DOX-induced myocardial cell apoptosis through a mechanism involving a decrease in ROS production by inhibition of NOX2, NOX4 expression, and NOX activity.

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Year:  2012        PMID: 23210435     DOI: 10.1139/y2012-140

Source DB:  PubMed          Journal:  Can J Physiol Pharmacol        ISSN: 0008-4212            Impact factor:   2.273


  13 in total

1.  Protective role of Osthole on myocardial cell apoptosis induced by doxorubicin in rats.

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2.  Paeoniflorin attenuates pressure overload-induced cardiac remodeling via inhibition of TGFβ/Smads and NF-κB pathways.

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Journal:  Br J Pharmacol       Date:  2014-08-14       Impact factor: 8.739

4.  Paeoniflorin inhibits doxorubicin-induced cardiomyocyte apoptosis by downregulating microRNA-1 expression.

Authors:  Jian-Zhe Li; Xiu-Neng Tang; Ting-Ting Li; Li-Juan Liu; Shu-Yi Yu; Guang-Yu Zhou; Qing-Rui Shao; Hui-Ping Sun; Cheng Wu; Yang Yang
Journal:  Exp Ther Med       Date:  2016-03-24       Impact factor: 2.447

Review 5.  Recent Insights Into the Protective Mechanisms of Paeoniflorin in Neurological, Cardiovascular, and Renal Diseases.

Authors:  Feng Jiao; Kevin Varghese; Shaoxun Wang; Yedan Liu; Hongwei Yu; George W Booz; Richard J Roman; Ruen Liu; Fan Fan
Journal:  J Cardiovasc Pharmacol       Date:  2021-06-01       Impact factor: 3.271

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Authors:  Qiang Liu; Hong Li; Ningfu Wang; Huaihong Chen; Qihui Jin; Ruoyu Zhang; Jing Wang; Ying Chen
Journal:  PLoS One       Date:  2013-12-31       Impact factor: 3.240

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Authors:  Fu Jun Li; Ryan N Duggal; Octavio M Oliva; Suman Karki; Ranu Surolia; Zheng Wang; R Douglas Watson; Victor J Thannickal; Mickie Powell; Stephen Watts; Tejaswini Kulkarni; Hitesh Batra; Subhashini Bolisetty; Anupam Agarwal; Veena B Antony
Journal:  PLoS One       Date:  2015-04-02       Impact factor: 3.240

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Journal:  Sci Rep       Date:  2017-09-14       Impact factor: 4.379

Review 9.  Reversal of Doxorubicin-induced Cardiotoxicity by Using Phytotherapy: A Review.

Authors:  Azar Hosseini; Amirhossein Sahebkar
Journal:  J Pharmacopuncture       Date:  2017-08-22

Review 10.  TRPC channels in exercise-mimetic therapy.

Authors:  Takuro Numaga-Tomita; Sayaka Oda; Kazuhiro Nishiyama; Tomohiro Tanaka; Akiyuki Nishimura; Motohiro Nishida
Journal:  Pflugers Arch       Date:  2018-10-08       Impact factor: 3.657

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