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骨骼细胞衍生分子硬化蛋白可驱动骨髓脂肪生成。

The skeletal cell-derived molecule sclerostin drives bone marrow adipogenesis.

作者信息

Fairfield Heather, Falank Carolyne, Harris Elizabeth, Demambro Victoria, McDonald Michelle, Pettitt Jessica A, Mohanty Sindhu T, Croucher Peter, Kramer Ina, Kneissel Michaela, Rosen Clifford J, Reagan Michaela R

机构信息

Center for Clinical and Translational Research, Maine Medical Center Research Institute, Scarborough, Maine.

University of Maine Graduate School of Biomedical Science and Engineering, Orono, Maine.

出版信息

J Cell Physiol. 2018 Feb;233(2):1156-1167. doi: 10.1002/jcp.25976. Epub 2017 Jun 6.

Abstract

The bone marrow niche is a dynamic and complex microenvironment that can both regulate, and be regulated by the bone matrix. Within the bone marrow (BM), mesenchymal stromal cell (MSC) precursors reside in a multi-potent state and retain the capacity to differentiate down osteoblastic, adipogenic, or chondrogenic lineages in response to numerous biochemical cues. These signals can be altered in various pathological states including, but not limited to, osteoporotic-induced fracture, systemic adiposity, and the presence of bone-homing cancers. Herein we provide evidence that signals from the bone matrix (osteocytes) determine marrow adiposity by regulating adipogenesis in the bone marrow. Specifically, we found that physiologically relevant levels of Sclerostin (SOST), which is a Wnt-inhibitory molecule secreted from bone matrix-embedded osteocytes, can induce adipogenesis in 3T3-L1 cells, mouse ear- and BM-derived MSCs, and human BM-derived MSCs. We demonstrate that the mechanism of SOST induction of adipogenesis is through inhibition of Wnt signaling in pre-adipocytes. We also demonstrate that a decrease of sclerostin in vivo, via both genetic and pharmaceutical methods, significantly decreases bone marrow adipose tissue (BMAT) formation. Overall, this work demonstrates a direct role for SOST in regulating fate determination of BM-adipocyte progenitors. This provides a novel mechanism for which BMAT is governed by the local bone microenvironment, which may prove relevant in the pathogenesis of certain diseases involving marrow adipose. Importantly, with anti-sclerostin therapy at the forefront of osteoporosis treatment and a greater recognition of the role of BMAT in disease, these data are likely to have important clinical implications.

摘要

骨髓生态位是一个动态且复杂的微环境,它既能调节骨基质,又能被骨基质调节。在骨髓(BM)中,间充质基质细胞(MSC)前体处于多能状态,并保留了响应众多生化信号向下分化为成骨细胞、脂肪细胞或软骨细胞谱系的能力。这些信号在各种病理状态下会发生改变,包括但不限于骨质疏松性骨折、全身性肥胖以及骨归巢性癌症的存在。在此我们提供证据表明,来自骨基质(骨细胞)的信号通过调节骨髓中的脂肪生成来决定骨髓脂肪含量。具体而言,我们发现,骨基质包埋的骨细胞分泌的一种Wnt抑制分子硬化蛋白(SOST)的生理相关水平,可在3T3-L1细胞、小鼠耳和骨髓来源的MSC以及人骨髓来源的MSC中诱导脂肪生成。我们证明,SOST诱导脂肪生成的机制是通过抑制前脂肪细胞中的Wnt信号。我们还证明,通过基因和药物方法在体内降低硬化蛋白水平,可显著减少骨髓脂肪组织(BMAT)的形成。总体而言,这项工作证明了SOST在调节BM脂肪细胞祖细胞命运决定中的直接作用。这为BMAT受局部骨微环境控制提供了一种新机制,这可能在某些涉及骨髓脂肪的疾病发病机制中具有相关性。重要的是,随着抗硬化蛋白疗法处于骨质疏松症治疗的前沿,以及对BMAT在疾病中作用的更深入认识,这些数据可能具有重要的临床意义。

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