首页> 外文期刊>Cell and Tissue Research >Macrophage colony-stimulating factor is indispensable for repopulation and differentiation of Kupffer cells but not for splenic red pulp macrophages in osteopetrotic (op/op) mice after macrophage depletion.
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Macrophage colony-stimulating factor is indispensable for repopulation and differentiation of Kupffer cells but not for splenic red pulp macrophages in osteopetrotic (op/op) mice after macrophage depletion.

机译:巨噬细胞耗尽后,巨噬细胞集落刺激因子对于库普弗细胞的重新分布和分化是必不可少的,但对于骨化(op / op)小鼠的脾脏红髓巨噬细胞却不是。

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摘要

We previously reported that macrophage colony-stimulating factor (M-CSF, CSF-1) played important roles in the process of the repopulation of Kupffer cells after their elimination by administration of liposome-entrapped dichloromethylene diphosphonate (lipo-MDP). In this study, we examined the repopulation of Kupffer cells and splenic red pulp macrophages in osteopetrotic (op/op) mice defective in the production of functional M-CSF and their littermate mice by using the lipo-MDP model. In untreated op/op mice, numbers of F4/80-positive Kupffer cells in the liver and F4/80-positive splenic red pulp macrophages were reduced. Repopulation of Kupffer cells and splenic macrophages was observed in littermate (op/+) mice liver by 14 days after depletion. However, in op/op mice, repopulation of Kupffer cells was not observed in Kupffer-cell-depleted op/op mice until 56 days after depletion, whereas splenic red pulp macrophages repopulated and recovered to the level of control op/op mice by 10 days after depletion. Single injection of M-CSF was effective for the induction of the repopulation of Kupffer cells, and daily administration of M-CSF induced remarkable repopulation and maturation of Kupffer cells and proliferation of macrophage precursor cells in the liver of Kupffer-cell-depleted op/op mice. These results suggest that Kupffer cells are completely M-CSF-dependent tissue macrophages, whereas splenic red pulp macrophages are composed of M-CSF-dependent macrophages and M-CSF-independent macrophages. This mouse model provides a useful tool for the study of effects of growth factor on Kupffer cell differentiation in vivo.
机译:我们以前曾报道过巨噬细胞集落刺激因子(M-CSF,CSF-1)在通过施用脂质体包裹的二氯亚甲基二膦酸酯(lipo-MDP)而消除了库普弗细胞后,在库普弗细胞的再繁殖过程中发挥了重要作用。在这项研究中,我们通过使用lipo-MDP模型检查了在功能性M-CSF的生产中有缺陷的骨化(op / op)小鼠和其同窝小鼠中Kupffer细胞和脾红髓巨噬细胞的再填充。在未经治疗的op / op小鼠中,肝脏中F4 / 80阳性库普弗细胞和脾脏F4 / 80阳性红浆巨噬细胞的数量减少。耗尽后第14天,在同窝(op / +)小鼠肝脏中观察到库普弗细胞和脾巨噬细胞的重新繁殖。然而,在op / op小鼠中,直到枯竭后的56天,在枯竭Kupffer细胞的op / op小鼠中才观察到Kupffer细胞的重新聚集,而脾脏的红髓巨噬细胞又重新聚集并恢复到对照op / op小鼠的水平,达到10耗尽后的几天。单次注射M-CSF可以有效诱导枯否细胞的再增殖,而每天服用M-CSF则可以使枯否的肝癌细胞中枯否细胞的再增殖和成熟以及巨噬细胞前体细胞的增殖增高。行动老鼠。这些结果表明,枯否细胞完全是M-CSF依赖性的组织巨噬细胞,而脾脏的红髓巨噬细胞则由M-CSF依赖性的巨噬细胞和M-CSF依赖性的巨噬细胞组成。该小鼠模型为研究生长因子对体内Kupffer细胞分化的影响提供了有用的工具。

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