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Mitochondria: Sovereign of inflammation?

机译:线粒体:主权的炎症吗?

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NLRP3 inflammasome-dependent inflammatory responses are triggered by a variety of signals of host danger, including infection, tissue damage and metabolic dysregulation. How these diverse activators cause inflammasome activation is poorly understood. Recent data suggest that the mitochondria integrate these distinct signals and relay this information to the NLRP3 inflammasome. Dysfunctional mitochondria generate ROS, which is required for inflammasome activation. On the contrary, the NLRP3 inflammasome is negatively regulated by autophagy, which is a catabolic process that removes damaged or otherwise dysfunctional organelles, including mitochondria. In addition to the processing and secretion of pro-inflammatory cytokines such as IL-1beta, NLRP3 inflammasome activation also influences cellular metabolic pathways such as glycolysis and lipogenesis. Mapping the connections between mitochondria, metabolism and inflammation is of great interest, as malfunctioning of this network is associated with many chronic inflammatory diseases.
机译:NLRP3 inflammasome-dependent炎症反应是由各种各样的信号主机的危险,包括感染、组织损伤和代谢失调。不同活化剂引起inflammasome激活了解甚少。线粒体集成这些不同的信号和NLRP3传递这一信息inflammasome。ROS, inflammasome所必需的激活。inflammasome负调控自噬是一个异化的过程,移除损坏或功能失调线粒体等细胞器。的加工和分泌促炎细胞因子如IL-1beta、NLRP3 inflammasome激活也会影响细胞代谢途径,如糖酵解和脂肪生成。线粒体代谢和炎症极大的兴趣,因为这个网络的故障与许多慢性炎症吗疾病。

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