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Effect of Heying Anxin prescription on oxidative stress injury in embryo myocardium of rats
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DOI   10.11656/j.issn.1673-9043.2014.04.07
Key Words   Heying Anxin prescription;H2O2;myocardium cell;oxidative stress
Author NameAffiliationE-mail
HE Wei Hebei North University, Zhangjiakou 075029, China  
LI Yong-min Hebei North University, Zhangjiakou 075029, China liyongmin2001@sina.com 
ZHANG Hai-xia Hebei North University, Zhangjiakou 075029, China  
ZHU Juan Hebei North University, Zhangjiakou 075029, China  
GAO Yue Hebei North University, Zhangjiakou 075029, China  
Abstract
    [Objective] To investigate the effect of Heying Anxin prescription on embryo myocardium injury caused by H2O2.[Methods] Reflux condenser extraction with 70% ethanol of Heying Anxin prescription was used and the cardiomyocytes were incubated with H2O2(200 μmol/L) for 2 hours in model group. the same dose of H2O2 was administered for 2 hours after treatment with Heying Anxin prescription (500 mg/kg, 250 mg/kg, 125 mg/kg) in therapeutic group and incubated for another 24 hours. Metabolic rate of MTT, content of MDA, activity of LDH and the levels of CAT and SOD in each group were measured.[Results] Metabolic rate of MTT: compared with control group, metabolic rates of MTT was decreased significantly in H2O2 group(P<0.01), while Heying Anxin prescription had no significant effect on cardiac myocytes of MTT metabolic rates. Content of MDA: compared with that of H2O2 group, the content of MDA was decreased in Heying Anxin prescription groups significantly(P>0.05).Content of LDH: compared with that of control group, the content of LDH was decreased in Heying Anxin prescription groups significantly(P>0.05).Content of CAT: compared with that of H2O2 group, the content of CAT was elevated in Heying Anxin prescription groups significantly(P>0.05).Content of SOD:compared with that of H2O2 group,the content of SOD was elevated in Heying Anxin prescription groups significantly(P<0.01).[Conclusion] Heying Anxin prescription has significant protective effects on injured myocardium cell induced by H2O2 in rats, and it may be related to the inhibition of oxidative damage.

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