A novel histone deacetylase inhibitor Se-SAHA attenuates isoproterenol-induced heart failure via antioxidative stress and autophagy inhibition

IF 3.3 3区 医学 Q2 PHARMACOLOGY & PHARMACY Toxicology and applied pharmacology Pub Date : 2024-05-10 DOI:10.1016/j.taap.2024.116957
Tianwei Cheng , Chang Liu , Yufei Wang , Guangru Li , Lifeng Feng , Shengzheng Zhang , Bing Qi , Jianlin Cui , Lihong Guo , Lei Cao , Yanming Wang , Zhi Qi , Liang Yang
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Abstract

Heart failure is associated with histone deacetylase (HDAC) regulation of gene expression, the inhibition of which is thought to be beneficial for heart failure therapy. Here, we explored the cardioprotective effects and underlying mechanism of a novel selenium-containing HDAC inhibitor, Se-SAHA, on isoproterenol (ISO)-induced heart failure. We found that pretreatment with Se-SAHA attenuated ISO-induced cardiac hypertrophy and fibrosis in neonatal rat ventricular myocytes (NRVMs). Se-SAHA significantly attenuated the generation of ISO-induced reactive oxygen species (ROS) and restored the expression levels of superoxide dismutase 2 (SOD2) and heme oxygenase-1 (HO-1) in vitro. Furthermore, Se-SAHA pretreatment prevented the accumulation of autophagosomes. Se-SAHA reversed the high expression of HDAC1 and HDAC6 induced by ISO incubation. However, after the addition of the HDAC agonist, the effect of Se-SAHA on blocking autophagy was inhibited. Using ISO-induced mouse models, cardiac ventricular contractile dysfunction, hypertrophy, and fibrosis was reduced treated by Se-SAHA. In addition, Se-SAHA inhibited HDAC1 and HDAC6 overexpression in ISO-treated mice. Se-SAHA treatment significantly increased the activity of SOD2 and improved the ability to eliminate free radicals. Se-SAHA hindered the excessive levels of the microtubule-associated protein 1 light chain 3 (LC3)-II and Beclin-1 in heart failure mice. Collectively, our results indicate that Se-SAHA exerts cardio-protection against ISO-induced heart failure via antioxidative stress and autophagy inhibition.

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新型组蛋白去乙酰化酶抑制剂Se-SAHA可通过抗氧化和抑制自噬减轻异丙肾上腺素诱发的心力衰竭。
心力衰竭与组蛋白去乙酰化酶(HDAC)调控基因表达有关,抑制HDAC被认为有利于心力衰竭的治疗。在此,我们探讨了一种新型含硒 HDAC 抑制剂 Se-SAHA 对异丙肾上腺素(ISO)诱导的心衰的心脏保护作用及其内在机制。我们发现,用Se-SAHA预处理可减轻ISO诱导的新生大鼠心室肌细胞(NRVMs)心肌肥厚和纤维化。在体外,Se-SAHA能明显减少ISO诱导的活性氧(ROS)的生成,并恢复超氧化物歧化酶2(SOD2)和血红素加氧酶1(HO-1)的表达水平。此外,Se-SAHA 预处理还能防止自噬体的积累。Se-SAHA 逆转了 ISO 培养诱导的 HDAC1 和 HDAC6 的高表达。然而,在加入 HDAC 激动剂后,Se-SAHA 阻断自噬的作用受到了抑制。利用 ISO 诱导的小鼠模型,Se-SAHA 可减少心室收缩功能障碍、肥厚和纤维化。此外,Se-SAHA 还能抑制 ISO 处理小鼠体内 HDAC1 和 HDAC6 的过表达。Se-SAHA能明显提高SOD2的活性,增强其清除自由基的能力。Se-SAHA能抑制心衰小鼠体内微管相关蛋白1轻链3(LC3)-II和Beclin-1的过高水平。总之,我们的研究结果表明,Se-SAHA通过抗氧化应激和抑制自噬对ISO诱导的心力衰竭具有心脏保护作用。
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来源期刊
CiteScore
6.80
自引率
2.60%
发文量
309
审稿时长
32 days
期刊介绍: Toxicology and Applied Pharmacology publishes original scientific research of relevance to animals or humans pertaining to the action of chemicals, drugs, or chemically-defined natural products. Regular articles address mechanistic approaches to physiological, pharmacologic, biochemical, cellular, or molecular understanding of toxicologic/pathologic lesions and to methods used to describe these responses. Safety Science articles address outstanding state-of-the-art preclinical and human translational characterization of drug and chemical safety employing cutting-edge science. Highly significant Regulatory Safety Science articles will also be considered in this category. Papers concerned with alternatives to the use of experimental animals are encouraged. Short articles report on high impact studies of broad interest to readers of TAAP that would benefit from rapid publication. These articles should contain no more than a combined total of four figures and tables. Authors should include in their cover letter the justification for consideration of their manuscript as a short article.
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