造血干细胞来源的脂肪细胞促进肿瘤生长和癌细胞迁移。

Y Xiong, D L Russell, L T McDonald, L A Cowart, A C LaRue
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引用次数: 19

摘要

脂肪细胞除了作为能量储存库的关键作用外,还有助于肿瘤微环境的组成。我们之前的研究基于单一造血干细胞(HSC)移植模型,揭示了通过单核细胞/巨噬细胞祖细胞从HSC中获得脂肪细胞的新来源。在此,我们扩展了这些研究,以检查hsc来源的脂肪细胞(HSC-Ad)在肿瘤进展中的作用。当在成脂条件下培养时,骨髓来源的单核祖细胞分化为脂肪细胞,脂肪细胞积累含有甘油三酯的油滴。脂肪因子阵列和elisa证实HSC-Ad分泌多种脂肪因子。当皮下注射到C57Bl/6小鼠体内时,这些脂肪细胞在体内进一步发育。当将HSC-Ad与黑色素瘤B16F1细胞或乳腺癌E0771细胞共注射到同基因C57Bl/6小鼠体内时,HSC-Ad不仅加速了黑色素瘤和乳腺肿瘤的生长,而且增强了两种肿瘤的血管化。HSC-Ad条件培养基支持B16F1和E0771细胞体外增殖和增强细胞迁移。在HSC-Ad分泌的脂肪因子中,胰岛素样生长因子1 (IGF-1)在E0771细胞增殖中起重要作用。肝细胞生长因子(HGF)对于B16F1细胞迁移是必不可少的,而HGF和血小板衍生生长因子BB (PDGF-BB)共同促进E0771细胞迁移。IGF-1、HGF和PDGF-BB受体的表达水平与其在B16F1和E0771细胞增殖和迁移中的不同作用相关。我们的数据表明,HSC-Ad通过不同的机制对肿瘤行为进行差异调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Hematopoietic Stem Cell-derived Adipocytes Promote Tumor Growth and Cancer Cell Migration.

Hematopoietic Stem Cell-derived Adipocytes Promote Tumor Growth and Cancer Cell Migration.

Hematopoietic Stem Cell-derived Adipocytes Promote Tumor Growth and Cancer Cell Migration.

Hematopoietic Stem Cell-derived Adipocytes Promote Tumor Growth and Cancer Cell Migration.

Adipocytes, apart from their critical role as the energy storage depots, contribute to the composition of the tumor microenvironment. Our previous studies based on a single hematopoietic stem cell (HSC) transplantation model, have revealed a novel source of adipocytes from HSCs via monocyte/macrophage progenitors. Herein, we extend these studies to examine the role of HSC-derived adipocytes (HSC-Ad) in tumor progression. When cultured under adipogenic conditions, bone marrow-derived monocytic progenitors differentiated into adipocytes that accumulated oil droplets containing triglyceride. The adipokine array and ELISAs confirmed secretion of multiple adipokines by HSC-Ad. These adipocytes underwent further development in vivo when injected subcutaneously into C57Bl/6 mice. When co-injected with melanoma B16F1 cells or breast cancer E0771 cells into syngeneic C57Bl/6 mice, HSC-Ad not only accelerated both melanoma and breast tumor growth, but also enhanced vascularization in both tumors. Conditioned media from HSC-Ad supported B16F1 and E0771 cell proliferation and enhanced cell migration in vitro. Among the HSC-Ad secreted adipokines, insulin-like growth factor 1 (IGF-1) played an important role in E0771 cell proliferation. Hepatocyte growth factor (HGF) was indispensable for B16F1 cell migration, whereas HGF and platelet-derived growth factor BB (PDGF-BB) collectively contributed to E0771 cell migration. Expression levels of receptors for IGF-1, HGF, and PDGF-BB correlated with their differential roles in B16F1 and E0771 cell proliferation and migration. Our data suggest that HSC-Ad differentially regulate tumor behavior through distinct mechanisms.

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