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Vitamin D receptor-mediated skewed differentiation of macrophages initiates myelofibrosis and subsequent osteosclerosis

机译:维生素D受体介导的巨噬细胞的偏差分化引发骨髓纤维化和随后的骨静脉病

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摘要

Myelofibrosis in myeloproliferative neoplasms (MPNs) with mutations such as JAK2V617F is an unfavorable sign for uncontrollable disease progression in the clinic and is complicated with osteosclerosis whose pathogenesis is largely unknown. Because several studies have revealed that macrophages are an indispensable supporter for bone-forming osteoblasts, we speculated that macrophages might play a significant role in the proliferation of collagen-producing myofibroblasts in marrow fibrotic tissues. Here, we show that myelofibrosis critically depends on macrophages whose differentiation is skewed by vitamin D receptor (VDR) signaling. In our novel myelofibrosis model established by transplantation of VDR+/+ hematopoietic stem/progenitor cells into VDR-/- mice, donor-derived F4/80(+) macrophages proliferated together with recipient-derived alpha-smooth muscle actin-positive myofibroblasts, both of which comprised fibrotic tissues with an indistinguishable spindle-shaped morphology. Interfering VDR signals, such as low vitamin D diet and VDR deficiency in donor cells as well as macrophage depletion prevented myelofibrosis in this model. These interventions also ameliorated myelofibrosis in JAK2V617F-driven murine MPNs likely in a transforming growth factor-beta 1- or megakaryocyte-independent manner. These results suggest that VDR and macrophages may be novel therapeutic targets for MPNs with myelofibrosis.
机译:Myelofibribis在Myeloproiferative肿瘤中(MPNS),如JAK2V617F,诸如JAK2V617F的突变是临床中无法控制的疾病进展的不利迹象,并且与骨质蠕变性复杂,其发病机制主要是未知的。因为若干研究表明,巨噬细胞是骨形成成骨细胞的不可或缺的支持者,我们推测巨噬细胞可能在骨髓纤维化组织中产生胶原蛋白的肌纤维细胞的增殖中起重要作用。在这里,我们表明骨髓纤维化症批判性取决于巨噬细胞,其分化是由维生素D受体(VDR)信号传导偏离的。在我们的新型髓OELofibrys模型中,通过将VDR + / +造血干/祖细胞移植到VDR - / - 小鼠中,与受体衍生的α-平滑肌肌动蛋白阳性肌纤维细胞一起增殖的供体衍生的F4 / 80(+)巨噬细胞其中包含具有难以区分的主轴形形态的纤维化组织。干扰VDR信号,例如低维生素D饮食和供体细胞的VDR缺乏缺乏巨噬细胞耗尽,防止了该模型中的骨髓纤维化。这些干预措施在JAK2V617F-驱动的鼠MPN中也会改善肌纤维,可能是转化的生长因子-β1-或巨核细胞无关的方式。这些结果表明,VDR和巨噬细胞可能是具有髓纤维化的MPN的新型治疗靶标。

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    Kobe Univ Grad Sch Med Dept Med Hematol Chuo Ku Kusunoki Cho Kobe Hyogo 6500017 Japan;

    Kobe Univ Grad Sch Med Dept Med Hematol Chuo Ku Kusunoki Cho Kobe Hyogo 6500017 Japan;

    Kobe Univ Grad Sch Med Dept Med Hematol Chuo Ku Kusunoki Cho Kobe Hyogo 6500017 Japan;

    Kobe Univ Grad Sch Med Dept Med Hematol Chuo Ku Kusunoki Cho Kobe Hyogo 6500017 Japan;

    Kobe Univ Grad Sch Med Dept Med Hematol Chuo Ku Kusunoki Cho Kobe Hyogo 6500017 Japan;

    Kobe Univ Grad Sch Med Dept Med Hematol Chuo Ku Kusunoki Cho Kobe Hyogo 6500017 Japan;

    Kobe Univ Grad Sch Med Dept Med Hematol Chuo Ku Kusunoki Cho Kobe Hyogo 6500017 Japan;

    Kobe Univ Grad Sch Med Dept Med Hematol Chuo Ku Kusunoki Cho Kobe Hyogo 6500017 Japan;

    Kobe Univ Grad Sch Med Dept Med Hematol Chuo Ku Kusunoki Cho Kobe Hyogo 6500017 Japan;

    Iwaki Meisei Univ Ctr Reg Cooperat Iwaki Fukushima Japan;

    Univ Miyazaki Fac Med Dept Gastroenterol &

    Hematol Kiyotake Miyazaki Japan;

    Univ Miyazaki Fac Med Dept Gastroenterol &

    Hematol Kiyotake Miyazaki Japan;

    Nishiwaki Municipal Hosp Dept Hematol Shimotoda Nishiwaki Japan;

    Kobe Univ Grad Sch Med Dept Med Hematol Chuo Ku Kusunoki Cho Kobe Hyogo 6500017 Japan;

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  • 正文语种 eng
  • 中图分类 血液及淋巴系疾病;
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