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Mitochondrial Membrane Intracellular Communication in Healthy and Diseased Myocardium

机译:线粒体膜在健康和患病心肌中的细胞内连通

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Research efforts in the 21st century have been paramount to the discovery and development of novel pharmacological treatments in a variety of diseases resulting in improved life expectancy. Yet, cardiac disease remains a leading cause of morbidity and mortality worldwide. Over time, there has been an expansion in conditions such as atrial fibrillation (AF) and heart failure (HF). Although past research has elucidated specific pathways that participate in the development of distinct cardiac pathologies, the exact mechanisms of action remain to be fully characterized. Protein turnover and cellular bioenergetics are integral components of cardiac diseases, highlighting the importance of mitochondria and endoplasmic reticulum (ER) in driving cellular homeostasis. More specifically, the interactions between the mitochondria and ER are crucial to calcium signaling, apoptosis induction, autophagy, and lipid biosynthesis. Here, we summarize mitochondrial and ER functions and physical interactions in healthy physiological states. We then transition to perturbations that occur in response to pathophysiological challenges and how this alters mitochondrial-ER and other intracellular organelle interactions. Finally, we discuss lifestyle interventions and innovative therapeutic targets that may be used to restore beneficial mitochondrial and ER interactions, thereby improving cardiac function.
机译:21世纪的研究努力对于在各种疾病中发现和开发新的药理治疗至关重要,导致预期寿命改善。然而,心脏病仍然是全世界发病率和死亡率的主要原因。随着时间的推移,在心房颤动(AF)和心力衰竭(HF)之类的条件下存在扩展。虽然过去的研究阐明了参与不同心脏病病理的发展的具体途径,但确切的行动机制仍然是完全表征。蛋白质周转和细胞生物能学是心脏病的组分,突出了线粒体和内质网(ER)在驱动细胞稳态方面的重要性。更具体地,线粒体和ER之间的相互作用对钙信号,凋亡诱导,自噬和脂质生物合成至关重要。在这里,我们总结了健康生理状态的线粒体和ER功能和物理相互作用。然后,我们转变为响应病理生理学挑战的扰动以及这种改变线粒体-ER和其他细胞内细胞内细胞内的相互作用而发生的扰动。最后,我们讨论了可用于恢复有益线粒体和ER相互作用的生活方式干预和创新的治疗靶,从而改善心脏功能。

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