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Metabolic regulation of skeletal cell fate and function in physiology and disease

机译:骨骼细胞命运和功能在生理和疾病中的代谢调控

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摘要

Van Gastel and Carmeliet provide an overview of emerging findings on how cellular metabolism shapes skeletal stem cell fate and function, and discuss how metabolic dysregulation might contribute to skeletal ageing and degenerative diseases. The skeleton is diverse in its functions, which include mechanical support, movement, blood cell production, mineral storage and endocrine regulation. This multifaceted role is achieved through an interplay of osteoblasts, chondrocytes, bone marrow adipocytes and stromal cells, all generated from skeletal stem cells. Emerging evidence shows the importance of cellular metabolism in the molecular control of the skeletal system. The different skeletal cell types not only have distinct metabolic demands relating to their particular functions but also are affected by microenvironmental constraints. Specific metabolites control skeletal stem cell maintenance, direct lineage allocation and mediate cellular communication. Here, we discuss recent findings on the roles of cellular metabolism in determining skeletal stem cell fate, coordinating osteoblast and chondrocyte function, and organizing stromal support of haematopoiesis. We also consider metabolic dysregulation in skeletal ageing and degenerative diseases, and provide an outlook on how the field may evolve in the coming years.
机译:Van Gastel和Carmeliet概述了细胞代谢如何塑造骨骼干细胞命运和功能的新发现,并讨论了代谢失调如何导致骨骼衰老和退行性疾病。骨骼的功能多种多样,包括机械支持、运动、血细胞生成、矿物质储存和内分泌调节。这种多方面的作用是通过成骨细胞、软骨细胞、骨髓脂肪细胞和基质细胞的相互作用来实现的,这些细胞都由骨骼干细胞产生。新出现的证据表明细胞代谢在骨骼系统的分子控制中的重要性。不同的骨骼细胞类型不仅具有不同的代谢需求,而且受到微环境限制的影响。特异性代谢物控制骨骼干细胞的维持、直接谱系分配和介导细胞通讯。在这里,我们讨论了细胞代谢在决定骨骼干细胞命运、协调成骨细胞和软骨细胞功能以及组织造血基质支持中的作用的最新发现。我们还考虑了骨骼衰老和退行性疾病中的代谢失调,并展望了该领域在未来几年的发展。

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