Xuefei Yu, Xinyi Zhao, Qing Cai, Dan Zhang, Ziyun Liu, Hejuan Zheng, Xindong Xue, Jianhua Fu
Department of Pediatrics, Shengjing Hospital of China Medical University, Shenyang City, China.
Front Cell Dev Biol. 2021 Apr 30;9:642717. doi: 10.3389/fcell.2021.642717. eCollection 2021.
Mitochondria are involved in energy metabolism and redox reactions in the cell. Emerging data indicate that mitochondria play an essential role in physiological and pathological processes of neonatal lung development. Mitochondrial damage due to exposure to high concentrations of oxygen is an indeed important factor for simplification of lung structure and development of bronchopulmonary dysplasia (BPD), as reported in humans and rodent models. Here, we comprehensively review research that have determined the effects of oxygen environment on alveolar development and morphology, summarize changes in mitochondria under high oxygen concentrations, and discuss several mitochondrial mechanisms that may affect cell plasticity and their effects on BPD. Thus, the pathophysiological effects of mitochondria may provide insights into targeted mitochondrial and BPD therapy.
线粒体参与细胞内的能量代谢和氧化还原反应。新出现的数据表明,线粒体在新生儿肺发育的生理和病理过程中起着至关重要的作用。如在人类和啮齿动物模型中所报道的,暴露于高浓度氧气导致的线粒体损伤确实是肺结构简化和支气管肺发育不良(BPD)发生发展的一个重要因素。在此,我们全面综述了已确定氧环境对肺泡发育和形态影响的研究,总结了高氧浓度下线粒体的变化,并讨论了几种可能影响细胞可塑性及其对BPD影响的线粒体机制。因此,线粒体的病理生理效应可能为BPD的靶向线粒体治疗提供思路。