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SIRT1/SIRT3 Modulates Redox Homeostasis during Ischemia/Reperfusion in the Aging Heart

机译:SIRT1 / SIRT3在老化心脏的缺血/再灌注过程中调节雷诺克稳态

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摘要

Ischemia/reperfusion (I/R) injury is the central cause of global death in cardiovascular diseases, which is characterized by disorders such as angina, stroke, and peripheral vascular disease, finally causing severe debilitating diseases and death. The increased rates of morbidity and mortality caused by I/R are parallel with aging. Aging-associated cardiac physiological structural and functional deterioration were found to contribute to abnormal reactive oxygen species (ROS) production during I/R stress. Disturbed redox homeostasis could further trigger the related signaling pathways that lead to cardiac irreversible damages with mitochondria dysfunction and cell death. It is notable that sirtuin proteins are impaired in aged hearts and are critical to maintaining redox homeostasis via regulating substrate metabolism and inflammation and thus preserving cardiac function under stress. This review discussed the cellular and functional alterations upon I/R especially in aging hearts. We propose that mitochondria are the primary source of reactive oxygen species (ROS) that contribute to I/R injury in aged hearts. Then, we highlight the cardiomyocyte protection of the age-related proteins Sirtuin1 (SIRT1) and Sirtuin1 (SIRT3) in response to I/R injury, and we discuss their modulation of cardiac metabolism and the inflammatory reaction that is involved in ROS formation.
机译:缺血/再灌注(I / R)损伤是心血管疾病全球死亡的中央原因,其特征在于心绞痛,中风和外周血血管疾病,最终导致严重的衰弱性疾病和死亡。由I / R引起的发病率和死亡率提高与老化平行。发现衰老相关的心脏生理结构和功能性劣化在I / R应激期间有助于异常的活性氧(ROS)产生。令人不安的氧化还原稳态可以进一步触发相关的信号通路,导致心脏功能障碍和细胞死亡的心脏不可逆转损伤。值得注意的是,Sirtuin蛋白在老年人心中受到损害,并且对于通过调节底物代谢和炎症来维持氧化还原稳态并因此在压力下保持心脏功能至关重要。本综述讨论了I / R的细胞和功能改变,特别是在老化的心中。我们提出线粒体是有助于老年人心的I / R损伤的反应性氧物种(ROS)的主要来源。然后,我们突出了与I / R损伤的年龄相关蛋白Sirtuin1(Sirt1)和Sirtuin1(Sirt3)的心肌细胞保护,并且我们讨论了对ros形成参与的心脏代谢和炎症反应的调节。

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