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骨髓脂肪化的机制及其对骨骼健康的影响。

Mechanisms of marrow adiposity and its implications for skeletal health.

作者信息

Veldhuis-Vlug Annegreet G, Rosen Clifford J

机构信息

Department of Endocrinology and Metabolism, Academic Medical Center Amsterdam, The Netherlands.

Maine Medical Center Research Institute, Scarborough, ME, USA.

出版信息

Metabolism. 2017 Feb;67:106-114. doi: 10.1016/j.metabol.2016.11.013. Epub 2016 Nov 27.

Abstract

The bone marrow niche is composed of cells from hematopoietic and mesenchymal origin. Both require energy to power differentiation and these processes are intimately connected to systemic metabolic homeostasis. Glycolysis is the preferred substrate for mesenchymal stromal cells in the niche, although fatty acid oxidation and glutaminolysis are important during stage specific differentiation. Autophagy and lipophagy, in part triggered by adenosine monophosphate-activated protein kinase (AMPK), may also play an important but temporal specific role in osteoblast differentiation. Enhanced marrow adiposity is caused by clinical factors that are genetically, environmentally, and hormonally mediated. These determinants mediate a switch from the osteogenic to the adipogenic lineage. Preliminary evidence supports an important role for fuel utilization in those cell fate decisions. Although both the origin and function of the marrow adipocyte remain to be determined, and in some genetic mouse models high marrow adiposity may co-exist with greater bone mass, in humans changes in marrow adiposity are closely linked to adverse changes in skeletal metabolism. This supports an intimate relationship between bone and fat in the marrow. Future studies will likely shed more light on the relationship of cellular as well as whole body metabolism on the ultimate fate of bone marrow stromal cells.

摘要

骨髓微环境由造血起源和间充质起源的细胞组成。两者都需要能量来推动分化,并且这些过程与全身代谢稳态密切相关。糖酵解是微环境中间充质基质细胞的首选底物,尽管脂肪酸氧化和谷氨酰胺分解在特定阶段的分化过程中也很重要。自噬和脂噬部分由单磷酸腺苷激活的蛋白激酶(AMPK)触发,在成骨细胞分化中也可能发挥重要但具有时间特异性的作用。骨髓脂肪增多是由遗传、环境和激素介导的临床因素引起的。这些决定因素介导了从成骨谱系到成脂谱系的转变。初步证据支持燃料利用在这些细胞命运决定中起重要作用。尽管骨髓脂肪细胞的起源和功能仍有待确定,并且在一些基因小鼠模型中,高骨髓脂肪增多可能与更大的骨量共存,但在人类中,骨髓脂肪增多的变化与骨骼代谢的不良变化密切相关。这支持了骨髓中骨与脂肪之间的密切关系。未来的研究可能会更深入地揭示细胞以及全身代谢与骨髓基质细胞最终命运之间的关系。

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