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The Autophagy in Osteoimmonology: Self-Eating Maintenance and Beyond

机译:骨免疫学中的自噬:自我进食维持和超越自我

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摘要

It has been long realized that the immune and skeletal systems are closely linked. This crosstalk, also known as osteoimmunology, is a primary process required for bone health. For example, the immune system acts as a key regulator in osteoclasts-osteoblasts coupling to maintain the balanced bone remodeling. Osteoimmunology is achieved through many cellular and molecular processes, among which autophagy has recently been found to play an indispensable role. Autophagy is a highly conserved process in eukaryotic cells, by which the cytoplasm components such as dysfunctional organelles are degraded through lysosomes and then returned to the cytosol for reuse. Autophagy is present in all cells at basal levels to maintain homeostasis and to promote cell survival in response to cellular stress conditions such as nutrition deprivation and hypoxia. Autophagy is a required process in immune cell activation/polarization and osteoclast differentiation, which protecting cells from oxidative stress. The essential of autophagy in osteogenesis is its involvement in osteoblast differentiation and mineralization, especially the role of autophagosome in extracellular calcium transportation. The modulatory feature of autophagy in both immune and skeleton systems suggests its crucial roles in osteoimmunology. Furthermore, autophagy also participates in the maintenance of bone marrow hematopoietic stem cell niche. The focus of this review is to highlight the role of autophagy in the immune-skeleton interactions and the effects on bone physiology, as well as the future application in translational research.
机译:早就意识到免疫系统和骨骼系统是紧密相连的。这种串扰,也称为骨免疫学,是骨骼健康所需的主要过程。例如,免疫系统在破骨细胞-成骨细胞的偶联中起关键调节剂的作用,以维持平衡的骨骼重塑。骨免疫学是通过许多细胞和分子过程来实现的,其中最近发现自噬起着必不可少的作用。自噬是真核细胞中高度保守的过程,通过该过程,细胞质成分(例如功能障碍的细胞器)会通过溶酶体降解,然后返回到细胞质中重复使用。自噬以基本水平存在于所有细胞中,以维持体内稳态并响应细胞应激条件(如营养缺乏和缺氧)促进细胞存活。自噬是免疫细胞激活/极化和破骨细胞分化的必需过程,可以保护细胞免受氧化应激。自噬在成骨中的本质是参与成骨细胞的分化和矿化,特别是自噬体在细胞外钙转运中的作用。自噬在免疫系统和骨骼系统中的调节功能表明其在骨免疫学中的关键作用。此外,自噬还参与了骨髓造血干细胞生态位的维持。这篇综述的重点是强调自噬在免疫-骨骼相互作用中的作用以及对骨骼生理的影响,以及在翻译研究中的未来应用。

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