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The functional response of U937 macrophage-like cells is modulated by extracellular matrix proteins and mechanical strain.

机译:U937巨噬细胞样细胞的功能反应受到细胞外基质蛋白和机械应变的调节。

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Extracellular matrix proteins (ECMs) play a significant role in the transfer of mechanical strain to monocyte-derived macrophages (MDMs) affecting morphological changes in a foreign body reaction. This study investigated how the functional responses of U937 macrophage-like cells differed when subjected to 2 dynamic strain types (nonuniform biaxial or uniform uniaxial strain) while cultured on siloxane membranes coated with either collagen type I or RGD peptide repeats (ProNectin). Biaxial strain caused an increase in intracellular esterase and acid phosphatase (AP) activities, as well as monocyte-specific esterase (MSE) protein levels in cells that were seeded on either uncoated surfaces (shown previously) or collagen, but not ProNectin. Released AP activity, but not released esterase activity, was increased on all surfaces. Biaxial strain increased IL-6, but not IL-8 on all surfaces. When cells were subjected to uniaxial strain, intracellular esterase increased on coated surfaces only, whereas intracellular AP activity was unaffected. Both esterase and AP released activities increased on all surfaces. Uniaxial strain increased the release of IL-6 on all surfaces, but IL-8 on coated surfaces only. This study demonstrated for the first time that ECM proteins could specifically modulate cellular responses to different types of strain. Using this approach with an in vitro cell system may help to unravel the complex function of MDMs in the foreign-body reaction.
机译:细胞外基质蛋白(ECM)在机械应变向单核细胞衍生的巨噬细胞(MDM)的转移中起重要作用,从而影响异物反应中的形态变化。这项研究调查了U937巨噬细胞样细胞在两种动态应变类型(非均匀双轴或均匀单轴应变)下培养在涂有I型胶原或RGD胶原重复序列(ProNectin)的硅氧烷膜上时的功能响应如何不同。双轴应变导致细胞内酯酶和酸性磷酸酶(AP)活性增加,以及接种在未包被的表面(如前所示)或胶原而不是ProNectin上的细胞中的单核细胞特异性酯酶(MSE)蛋白水平增加。在所有表面上增加释放的AP活性,但没有释放的酯酶活性。双轴应变增加所有表面上的IL-6,但不增加IL-8。当细胞受到单轴应变时,细胞内酯酶仅在被包被的表面上增加,而细胞内AP活性则不受影响。酯酶和AP释放活性在所有表面上均增加。单轴应变增加了所有表面上IL-6的释放,但仅在涂层表面上释放了IL-8。这项研究首次证明ECM蛋白可以特异性调节细胞对不同类型菌株的反应。在体外细胞系统中使用此方法可能有助于阐明MDM在异物反应中的复杂功能。

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