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首页> 外文期刊>Toxicology and Applied Pharmacology >Melatonin improves cardiac and mitochondrial function during doxorubicin-induced cardiotoxicity: A possible role for peroxisome proliferator-activated receptor gamma coactivator 1-alpha and sirtuin activity?
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Melatonin improves cardiac and mitochondrial function during doxorubicin-induced cardiotoxicity: A possible role for peroxisome proliferator-activated receptor gamma coactivator 1-alpha and sirtuin activity?

机译:褪黑激素在多柔比蛋白诱导的心脏毒性期间改善心肌和线粒体功能:过氧化物组织增殖物激活受体γ1-α和SIRTUIN活性的可能作用?

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Mitochondrial dysfunction is a central element in the development of doxorubicin (DXR)-induced cardiotoxicity. In this context, melatonin is known to influence mitochondrial homeostasis and function. This study aimed to investigate the effects of melatonin on cardiac function, tumor growth, mitochondrial fission and fusion, PGC1-alpha and sirtuin activity in an acute model of DXR-induced cardiotoxicity. During the in vitro study, H9c2 rat cardiomyoblasts were pre-treated with melatonin (10 mu M, 24 h) followed by DXR exposure (3 mu M, 24 h). Following treatment, cellular ATP levels and mitochondrial morphology were assessed. In the in vivo study, female Sprague Dawley rats (16 weeks old), were inoculated with a LA7 rat mammary tumor cell line and tumors were measure daily. Animals were injected with DXR (3 x 4 mg/kg) and/or received melatonin (6 mg/kg) for 14 days in their drinking water. Rat hearts were used to conduct isolated heart perfusions to assess cardiac function and thereafter, heart tissue was used for immunoblot analysis. DXR treatment increased cell death and mitochondrial fission which were reduced with melatonin treatment. Cardiac output increased in rats treated with DXR + melatonin compared to DXR-treated rats. Tumor volumes was significantly reduced in DXR + melatonin-treated rats on Day 8 in comparison to DXR-treated rats. Furthermore, DXR + melatonin treatment increased cellular ATP levels, PGC1-alpha and SIRT1 expression which was attenuated by DXR treatment. These results indicate that melatonin treatment confers a dual cardio-protective and oncostatic effect by improving mitochondrial function and cardiac function whilst simultaneously retarding tumor growth during DXR-induced cardiotoxicity.
机译:线粒体功能障碍是多柔比星(DXR)诱导的心脏毒性发展中的核心元素。在这种情况下,已知褪黑激素影响线粒体稳态和功能。该研究旨在探讨褪黑素对DXR诱导心脏毒性急性模型中褪黑素对心功能,肿瘤生长,线粒体裂变和融合,PGC1-α和SIRTUIN活性的影响。在体外研究期间,用褪黑激素(10μm,24h)预处理H9C2大鼠心肌细胞,然后用DXR暴露(3μm,24小时)。治疗后,评估细胞ATP水平和线粒体形态。在体内研究中,女性Sprague Dawley大鼠(16周龄)被引入La7大鼠乳腺肿瘤细胞系,每天测量肿瘤。将动物用DXR(3×4mg / kg)和/或在其饮用水中接受褪黑激素(6mg / kg)14天。大鼠心用于进行分离的心脏灌注以评估心脏功能,然后,心脏组织用于免疫斑分析。 DXR治疗增加了细胞死亡和线粒体裂变,其用褪黑素处理减少。与DXR +褪黑激素处理的大鼠与DXR处理的大鼠相比,用心输出增加。与DXR处理的大鼠相比,DXR +褪黑激素处理的大鼠DXR +褪黑激素处理的大鼠显着降低了肿瘤体积。此外,DXR +褪黑素处理增加了通过DXR处理衰减的细胞ATP水平,PGC1-α和SIRT1表达。这些结果表明,褪黑激素治疗通过改善线粒体功能和心脏功能,同时在DXR诱导的心脏毒性期间同时延迟肿瘤生长来赋予双心脏保护和野原效果。

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