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Yi-Xin-Shu capsule ameliorates cardiac hypertrophy by regulating RB/HDAC1/GATA4 signaling pathway based on proteomic and mass spectrometry image analysis

关贸总协定 HDAC1型 纤维化 免疫组织化学 污渍 心功能曲线 细胞生物学 化学 免疫荧光 心力衰竭 信号转导 免疫印迹 组蛋白 分子生物学 病理 生物 组蛋白脱乙酰基酶 医学 内科学 生物化学 抗体 免疫学 基因表达 基因
作者
Minyu Zhang,Feifei Guo,Xianyu Li,Minghua Xian,Tingting Wang,Hongwei Wu,Junying Wei,Ying Huang,Xiangning Cui,Sha Wu,Muxin Gong,Hongjun Yang
出处
期刊:Phytomedicine [Elsevier]
卷期号:103: 154185-154185 被引量:5
标识
DOI:10.1016/j.phymed.2022.154185
摘要

Cardiac hypertrophy (CH) forms the main pathological basis of chronic heart failure (CHF). Mitigating and preventing CH is the key strategy for the treatment of ventricular remodeling in CHF. Yi-Xin-Shu capsule (YXS) has been commonly applied in the clinical treatment of CHF in Asian countries for several decades. However, the underlying mechanism of YXS has not been revealed yet.To assess the efficiency of YXS in CH and identify its potential therapeutic targets for the managing of CH.Ultrasonic cardiogram was used to evaluate the cardiac function of CH rats. Hematein Eosin (HE)-staining, Masson-staining and transmission electron microscope were used to measure the morphological changes, cardiac fibrosis degree and ultrastructure characteristics of cardiomyocytes, respectively. ELISA was used to detect the myocardial injury biomarkers. Then, the potential targets regulated by YXS were screened out via proteomic analysis and mass spectrometry image analysis. Finally, the targets were validated by real-time quantitative (RT-q) PCR, immunofluorescence, immunohistochemistry, and western-blotting methods.YXS improved the cardiac function of CH rats and attenuated the injuries in morphology and subcellular structure of cardiomyocytes. A core protein-protein interaction network was established on differentially expressed proteins (DEP) using proteomics analysis. GATA binding protein 4 (GATA4) was identified as the key target regulated by YXS. The results of mass spectrometry image analysis indicated that the expressions of histone deacetylase 1 (HDAC1) and retinoblastoma (RB) could also be regulated by YXS. Further valuative experiments showed that YXS may attenuate CH by regulating the RB/HDAC1/GATA4 signaling pathway.For the first time, this study discloses the precise mechanism investigation of the efficacy of YXS against CH. These data demonstrate that YXS may protect against CH by regulating the RB/HDAC1/GATA4 signaling pathway.
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