Division of Bone and Mineral Diseases, Department of Medicine, Washington University, Saint Louis, United States.
Department of Biomedical Engineering, Washington University, Saint Louis, United States.
Elife. 2021 Aug 11;10:e66275. doi: 10.7554/eLife.66275.
Bone marrow adipocytes accumulate with age and in diverse disease states. However, their origins and adaptations in these conditions remain unclear, impairing our understanding of their context-specific endocrine functions and relationship with surrounding tissues. In this study, by analyzing bone and adipose tissues in the lipodystrophic 'fat-free' mouse, we define a novel, secondary adipogenesis pathway that relies on the recruitment of adiponectin-negative stromal progenitors. This pathway is unique to the bone marrow and is activated with age and in states of metabolic stress in the fat-free mouse model, resulting in the expansion of bone marrow adipocytes specialized for lipid storage with compromised lipid mobilization and cytokine expression within regions traditionally devoted to hematopoiesis. This finding further distinguishes bone marrow from peripheral adipocytes and contributes to our understanding of bone marrow adipocyte origins, adaptations, and relationships with surrounding tissues with age and disease.
骨髓脂肪细胞随着年龄的增长和多种疾病状态而积累。然而,它们在这些情况下的起源和适应仍然不清楚,这阻碍了我们对其特定于上下文的内分泌功能和与周围组织关系的理解。在这项研究中,通过分析脂肪营养不良“无脂肪”小鼠的骨骼和脂肪组织,我们定义了一种新的、次要的脂肪生成途径,该途径依赖于脂联素阴性基质祖细胞的募集。这种途径是骨髓所特有的,在无脂肪小鼠模型中随着年龄的增长和代谢应激状态而被激活,导致专门用于脂质储存的骨髓脂肪细胞扩张,而脂质动员和细胞因子表达受损,在传统上专门用于造血的区域。这一发现进一步将骨髓与外周脂肪细胞区分开来,并有助于我们理解骨髓脂肪细胞的起源、适应以及随着年龄和疾病与周围组织的关系。