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Culture and functional studies of mouse macrophages on native-like fibrillar type I collagen

机译:天然巨噬细胞I型胶原蛋白对小鼠巨噬细胞的培养和功能研究

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摘要

Freshly isolated, starch-elicited mouse peritoneal macrophages (Mempty set) attached very efficiently to type I collagen in vitro, if collagen molecules were arranged in ordered supra-molecular assemblies corresponding to the precursor native fibrils. After 6-20h of incubation, the collagen-bound cells were observed to secrete fibronectin, which presumably enhanced cell-collagen interaction associated with cellular differentiation. Mempty set attachment to collagen could be temporarily inhibited by addition of the linear tri-peptide Arg-Gly-Asp (RGD) to the culture media. This inhibition was much more pronounced when using the cyclic RGD-containing peptide cGRGDSPA. Similarly, cells could be easily detached from the fibrillar collagen layers within 20 min at 37 degrees C by RGDS, GRGDS or cGRGDSPA but not by the glutamate-containing RGES peptide. Using antibodies to known collagen receptors, attachment of Mempty set to type I collagen fibers was best inhibited by antibodies directed against the alpha 2 and beta 1 integrin subunits. The presence of these integrins on Mempty set was confirmed by immunofluorescence. Binding of the alpha 2 beta 1 integrin on collagen was divalent cation-dependent and was supported by magnesium but not by calcium. Cells recovered by RGD-mediated detachment from collagen were highly phagocytic and synthesized DNA when exposed to growth factors. These cells could be activated for cytotoxicity by treatment with interferon-gamma and lipopolysaccharide. Comparative in vitro assays performed on macrophages cultured on plastic and on collagen allowed the detection of NO production by activated macrophages followed by spontaneous deactivation for cells cultivated on collagen. These findings suggest that Mempty set can recognize native collagen of type I through functional interactions with their specific triple helix-binding integrin receptors indicating that integrins other than those directed to fibronectin may also occupy active focal points on the cell at the initial phase of attachment. (C) 2008 Elsevier GmbH. All rights reserved.
机译:如果胶原蛋白分子排列在与前体天然原纤维相对应的有序超分子组装物中,则新鲜分离的淀粉诱导的小鼠腹膜巨噬细胞(Mempty set)在体外非常有效地附着于I型胶原蛋白。温育6-20h后,观察到胶原结合的细胞分泌纤连蛋白,推测其增强了与细胞分化有关的细胞-胶原相互作用。通过将线性三肽Arg-Gly-Asp(RGD)添加到培养基中,可以暂时抑制与胶原蛋白的空位结合。当使用含环状RGD的肽cGRGDSPA时,这种抑制作用更为明显。同样,在37°C下20分钟之内,RGDS,GRGDS或cGRGDSPA可以很容易地从纤维状胶原层中分离出细胞,而含谷氨酸的RGES肽则不能。使用针对已知胶原受体的抗体,针对针对α2和β1整联蛋白亚基的抗体可以最好地抑制Mempty固定在I型胶原纤维上。通过免疫荧光证实了这些整联蛋白在Mempty组上的存在。 α2β1整联蛋白在胶原蛋白上的结合是二价阳离子依赖性的,并由镁而不是钙支持。当暴露于生长因子时,通过RGD介导的从胶原蛋白脱离的过程中回收的细胞具有高度吞噬能力,​​并且是合成的DNA。通过用γ-干扰素和脂多糖处理可以激活这些细胞的细胞毒性。对在塑料和胶原蛋白上培养的巨噬细胞进行的比较性体外测定可以检测活化的巨噬细胞是否产生NO,然后对培养在胶原蛋白上的细胞进行自发灭活。这些发现表明,Mempty集可以通过与其特异性三螺旋结合整联蛋白受体的功能相互作用来识别I型天然胶原蛋白,这表明除针对纤连蛋白的整联蛋白外,整联蛋白在附着初期也可能占据细胞的活性焦点。 (C)2008 Elsevier GmbH。版权所有。

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