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Emerging Concepts in Diabetes: Mitochondrial Dynamics and Glucose Homeostasis

机译:糖尿病的新兴概念:线粒体动力学和葡萄糖稳态

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Introduction-. Mitochondria form an interconnected and dynamic web that undergoes continuous cycles of fusion and fission events. This phenomenon, known as mitochondrial dynamics, represents a key quality control system to maintain a healthy mitochondrial population but also a mechanism to bioenergetically adapt to the cellular and tissue energetic demands. Consequently, mitochondria can be viewed not only as energy supply organelles but also as energy sensors. It is therefore not surprising that disrupted mitochondrial bioenergetics, concomitantly with alterations in mitochondrial architecture, has been associated with several diseases including metabolic disorders. Conclusion: Here, we review current evidences connecting mitochondrial dynamics and bioenergetic alterations with the development of obesity and diabetes-related phenotypes, and how current strategies to alleviate such phenotypes impact on mitochondrial network and function.
机译:介绍-。线粒体形成一个相互连接的动态网络,经历融合和裂变事件的连续循环。这种现象被称为线粒体动力学,代表了维持健康线粒体种群的关键质量控制系统,也代表了生物能量适应细胞和组织能量需求的机制。因此,线粒体不仅可以被视为能量供应细胞器,还可以被视为能量传感器。因此,线粒体生物能量学的破坏与线粒体结构的改变同时与包括代谢紊乱在内的多种疾病有关也就不足为奇了。结论:在这里,我们回顾了目前将线粒体动力学和生物能量改变与肥胖和糖尿病相关表型的发展联系起来的证据,以及目前缓解这些表型的策略如何影响线粒体网络和功能。

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