Transient expansion and myofibroblast conversion of adipogenic lineage precursors mediate bone marrow repair after radiation

骨髓 脂肪生成 肌成纤维细胞 造血 癌症研究 细胞生物学 生物 血管生成 干细胞 病理 间充质干细胞 免疫学 医学 纤维化
作者
Leilei Zhong,Lutian Yao,Nicholas Holdreith,Wei Yu,Tao Gui,Zhen Miao,Yehuda Elkaim,Mingyao Li,Yanqing Gong,Maurizio Pacifici,Amit Maity,Theresa M. Busch,Kyu Sang Joeng,Keith A. Cengel,Patrick Seale,Wei Tong,Ling Qin
出处
期刊:JCI insight [American Society for Clinical Investigation]
卷期号:7 (7) 被引量:12
标识
DOI:10.1172/jci.insight.150323
摘要

Radiation causes a collapse of bone marrow cells and elimination of microvasculature. To understand how bone marrow recovers after radiation, we focused on mesenchymal lineage cells that provide a supportive microenvironment for hematopoiesis and angiogenesis in bone. We recently discovered a nonproliferative subpopulation of marrow adipogenic lineage precursors (MALPs) that express adipogenic markers with no lipid accumulation. Single-cell transcriptomic analysis revealed that MALPs acquire proliferation and myofibroblast features shortly after radiation. Using an adipocyte-specific Adipoq-Cre, we validated that MALPs rapidly and transiently expanded at day 3 after radiation, coinciding with marrow vessel dilation and diminished marrow cellularity. Concurrently, MALPs lost most of their cell processes, became more elongated, and highly expressed myofibroblast-related genes. Radiation activated mTOR signaling in MALPs that is essential for their myofibroblast conversion and subsequent bone marrow recovery at day 14. Ablation of MALPs blocked the recovery of bone marrow vasculature and cellularity, including hematopoietic stem and progenitors. Moreover, VEGFa deficiency in MALPs delayed bone marrow recovery after radiation. Taken together, our research demonstrates a critical role of MALPs in mediating bone marrow repair after radiation injury and sheds light on a cellular target for treating marrow suppression after radiotherapy.
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