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Mitochondrial Dysfunction in Lung Pathogenesis

机译:肺病发病机制的线粒体功能障碍

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Remarkable new roles for mitochondria in calcium handling, apoptosis, heme turnover, inflammation, and oxygen and nutrient sensing have been discovered for organelles that were once thought to be simple energy converters. Although deficits in mitochondrial function are often associated with energy failure and apoptosis, working cells maintain a mitochondrial reserve that affords the organelles distinct homeostatic sensing and regulatory abilities in lung cells. As primary intracellular sources of oxidants, mitochondria serve as critical monitors and modulators of vital oxidation-reduction processes, including mitochondrial biogenesis, mitophagy, inflammasome activation, cell proliferation, and prevention of fibrosis. These processes participate in disease pathogenesis in all lung regions mainly when interference with mitochondrial quality control mechanisms impedes their roles in maintenance of lung health. Sharper identification of mitochondrial-driven signaling mechanisms in specific lung cell types will better refine our understanding of respiratory disease pathogenesis and lead to new diagnostic and therapeutic measures to support mitochondrial quality.
机译:对于曾经被认为是简单的能量转换器的细胞器,发现了含钙处理,细胞凋亡,血红素周转,炎症和氧气以及养猪和养分感应的显着新的作用。虽然线粒体功能的缺陷通常与能量衰竭和细胞凋亡有关,但工作细胞保持线粒体储备,为细胞器具有不同的稳态感测和肺细胞的调节能力。作为初级细胞内氧化剂来源,线粒体用作重要的氧化还原过程的关键监测器和调节剂,包括线粒体生物发生,水道,炎症组活化,细胞增殖和预防纤维化。这些过程主要在所有肺部区域参与疾病发病机制,主要是在对线粒体质量控制机制的干扰阻碍维持肺部健康的作用时。明文鉴定特异性肺细胞类型的线粒体驱动的信令机制将更好地改善我们对呼吸道疾病发病机制的理解,并导致新的诊断和治疗措施,以支持线粒体质量。

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