摘要
OBJECTIVE To investigate the inhibitory effect and mechanism of sodium ferulate(SF)on myocardial hypertrophy in spontaneously hypertensive(SHR).METHODS Forty 14-week-old SHR male rats were randomly divided into model group(SHR,receive distilled water)and SF treatment groups(SF 20,40 and 80 mg·kg^-1 per day,respectively).Age-matched male Wistar-Kyoto(WKY)rats gavaged with distilled water served as controls.After 12 weeks of treatment,the effects of SF on cardiac hypertrophy were evaluated using echocardiographic measurement,pathological analysis and the expression of atrial natriuretic peptide(ANP),myosin heavy chainβ(β-MHC)-a gene related to myocardial hypertrophy.In order to explore the mechanism of SF on myocardial hypertrophy,the calcium-sensing receptor(CaSR),calcineurin(CaN),nuclear factor of activated T cell 3(NFAT3),phosphorylation NFAT3(p-NFAT3),zinc finger transcription factor(GATA4),phosphorylation GATA4(p-GATA4),protein kinase Cβ(PKC-β),Raf-1,extracellular regulated protein kinase 1/2(ERK 1/2),phosphorylation ERK1/2(p-ERK 1/2)and mitogen-activated protein kinase phosphatase-1(MKP-1)were detected.RESULTS The myocardial hypertrophy parameters,myocardial cell cross section area,left ventricular wall thickness and expression of ANP and β-MHC,CaSR,CaN,NFAT3,p-GATA4,PKC-β,Raf-1,and p-ERK 1/2 were significantly increased,while the left ventricular cavity was significantly smaller,expression of p-NFAT3 and MKP-1 were significantly decreased,meanwhile,the ultra⁃structure of cardiomyocytes was significantly damaged in 26-week-old SHR rats.Notably,SF significantly ameliorated myocardial hyper⁃trophy in 26-week-old SHR rats;suppressed the overexpression of ANP,β-MHC,CaSR,CaN,NFAT3,p-GATA4,PKC-β,Raf-1,and p-ERK 1/2 and increased the expression of p-NFAT3 and MKP-1.CONCLUSION SF can inhibit cardiac hypertrophy in SHR rats,and the mechanism may be related to the inhibition of CaSR mediated signaling pathway.
OBJECTIVE To investigate the inhibitory effect and mechanism of sodium ferulate(SF) on myocardial hypertrophy in spontaneously hypertensive(SHR). METHODS Forty 14-week-old SHR male rats were randomly divided into model group(SHR,receive distilled water) and SF treatment groups(SF 20, 40 and 80 mg·kg-1 per day, respectively). Age-matched male Wistar-Kyoto(WKY) rats gavaged with distilled water served as controls. After 12 weeks of treatment, the effects of SF on cardiac hypertrophy were evaluated using echocardiographic measurement, pathological analysis and the expression of atrial natriuretic peptide(ANP), myosin heavy chain β(β-MHC) — a gene related to myocardial hypertrophy. In order to explore the mechanism of SF on myocardial hypertrophy,the calcium-sensing receptor(CaS R), calcineurin(CaN), nuclear factor of activated T cell 3(NFAT3), phosphorylation NFAT3(p-NFAT3),zinc finger transcription factor(GATA4), phosphorylation GATA4(p-GATA4), protein kinase C β(PKC-β), Raf-1, extracellular regulated protein kinase 1/2(ERK 1/2), phosphorylation ERK1/2(p-ERK 1/2) and mitogen-activated protein kinase phosphatase-1(MKP-1) were detected. RESULTS The myocardial hypertrophy parameters, myocardial cell cross section area, left ventricular wall thickness and expression of ANP and β-MHC, Ca SR, Ca N, NFAT3, p-GATA4, PKC-β, Raf-1, and p-ERK 1/2 were significantly increased, while the left ventricular cavity was significantly smaller, expression of p-NFAT3 and MKP-1 were significantly decreased, meanwhile, the ultrastructure of cardiomyocytes was significantly damaged in 26-week-old SHR rats. Notably, SF significantly ameliorated myocardial hypertrophy in 26-week-old SHR rats; suppressed the overexpression of ANP, β-MHC, Ca SR, Ca N, NFAT3, p-GATA4, PKC-β, Raf-1, and p-ERK 1/2 and increased the expression of p-NFAT3 and MKP-1. CONCLUSION SF can inhibit cardiac hypertrophy in SHR rats, and the mechanism may be related to the inhibition of Ca SR mediated signaling pathway.
出处
《中国药理学与毒理学杂志》
CAS
北大核心
2019年第9期752-752,共1页
Chinese Journal of Pharmacology and Toxicology
基金
National Natural Science Foundation of China(81860732)
Scientific and Technological Projects for Social Development in Guizhou Province of China([2011]3036)
the State Key Laboratory of Cardiovascular Disease(2017kf-03)