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Endo180 和 MT1-MMP 参与巨噬细胞对胶原蛋白支架的吞噬作用,并且受干扰素-γ调节。

Endo180 and MT1-MMP are involved in the phagocytosis of collagen scaffolds by macrophages and is regulated by interferon-gamma.

机构信息

Stem Cell & Tissue Engineering Research Group, Medical Biology, University Medical Centre Groningen, University of Groningen, Groningen, The Netherlands.

出版信息

Eur Cell Mater. 2010 Oct 7;20:197-209. doi: 10.22203/ecm.v020a16.

Abstract

Subcutaneously implanted disks of hexamethylenediisocyanate or glutaraldehyde cross-linked sheep collagen (referred to as HDSC and GDSC, respectively) in mice show large differences in degradation rate. Although comparable numbers of macrophages are seen in HDSC and GDSC, phagocytosis of collagen by macrophages occurred only in GDSC. The molecular mechanisms involved in the phagocytosis of collagen by macrophages are essentially unknown. Immunofluorescence and RT-PCR showed that Endo180 was expressed in GDSC only. TissueFaxs showed that Endo180 co-localized with MT1-MMP on F4÷80 positive cells, which is likely responsible for the phagocytosis in GDSC. RT-PCR further showed that Endo180 expression correlated with high levels of IFN-γ mRNA. In vitro, IFN-γ induced the expression Endo180 and MT1-MMP in murine macrophages cultured on collagen type I (although too high levels of IFN-γ dampened the expression of Endo180 and MT1-MMP). Moreover, the expression of Endo180 and MT1-MMP induced by IFN-γ can be inhibited through IL-10. The differences in microenvironment between GDSC and HDSC (high IFN-γ and low IL-10 levels in GDSC, low IFN-γ and high IL-10 levels in HDSC) provide an explanation why phagocytosis of collagen by macrophages is only seen in GDSC. In summary, we show for the first time that the IFN-γ dependent co-expression of Endo180 and MT1-MMP on macrophages coincides with collagen phagocytosis, thus providing evidence that the mechanism of collagen phagocytosis operating in the foreign body reaction by macrophages is comparable with the mechanism of intracellular collagen degradation by fibroblasts seen under physiological conditions.

摘要

皮下植入的六亚甲基二异氰酸酯或戊二醛交联绵羊胶原蛋白(分别称为 HDSC 和 GDSC)在小鼠体内的降解速度存在很大差异。尽管 HDSC 和 GDSC 中观察到的巨噬细胞数量相当,但巨噬细胞对胶原蛋白的吞噬作用仅发生在 GDSC 中。巨噬细胞吞噬胶原蛋白的分子机制尚不清楚。免疫荧光和 RT-PCR 显示,Endo180 仅在 GDSC 中表达。TissueFaxs 显示,Endo180 与 MT1-MMP 共同定位于 F4÷80 阳性细胞上,这可能是 GDSC 中吞噬作用的原因。RT-PCR 进一步表明,Endo180 的表达与高水平的 IFN-γ mRNA 相关。在体外,IFN-γ 诱导在胶原 I 上培养的小鼠巨噬细胞中表达 Endo180 和 MT1-MMP(尽管过高水平的 IFN-γ 抑制了 Endo180 和 MT1-MMP 的表达)。此外,IFN-γ 诱导的 Endo180 和 MT1-MMP 的表达可以通过 IL-10 抑制。GDSC 和 HDSC 之间微环境的差异(GDSC 中 IFN-γ 水平高,IL-10 水平低,HDSC 中 IFN-γ 水平低,IL-10 水平高)解释了为什么只有 GDSC 中巨噬细胞吞噬胶原蛋白。总之,我们首次表明 IFN-γ 依赖性 Endo180 和 MT1-MMP 在巨噬细胞上的共表达与胶原蛋白吞噬作用一致,从而为巨噬细胞在异物反应中吞噬胶原蛋白的机制与生理条件下成纤维细胞内胶原蛋白降解的机制相似提供了证据。

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