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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Adhesion behavior of monocytes, macrophages and foreign body giant cells on poly (N-isopropylacrylamide) temperature-responsive surfaces
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Adhesion behavior of monocytes, macrophages and foreign body giant cells on poly (N-isopropylacrylamide) temperature-responsive surfaces

机译:单核细胞,巨噬细胞和异物巨细胞在聚(N-异丙基丙烯酰胺)温度响应表面上的粘附行为

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Monocyte and macrophage adhesion and foreign body giant cell (FBGC) formation has been observed on surfaces with a wide range of properties. In this study we have utilized novel, temperature-responsive surfaces (TRS) with dynamic surface properties to investigate inflammatory cell adhesion behavior. With temperature changes, grafted chains of poly-N-isopropylacrylamide pass through their lower critical solution temperature (LCST) and can either extend (hydrate), creating a hydrophilic surface at 20 deg C, or contract (dehydrate), creating a hydrophobic surface at 37 deg C. Isolated human monocytes and monocyte-derived macrophages were able to adhere, spread, and form FBGC on the hydrophobic surface. Decreasing the temperature below the lower critical solution temperature induced a change in the surface wettability, creating a hydrophilic surface, that induced a differential detachment of adherent cells that decreased with time, ranging from 98 percent after 2 h of culture to 30 percent at day 10. These detached cells remained viable, and were recultured onto TCPS for 3, 7, and 10 days. These novel surfaces allow investigation of the adhesive behavior of adherent inflammatory cells in a temporal manner, and the effects of surface conformation and wettability changes on cell adhesion and detachment.
机译:在具有广泛特性的表面上已经观察到单核细胞和巨噬细胞的粘附以及异物巨细胞(FBGC)的形成。在这项研究中,我们利用具有动态表面特性的新型温度响应表面(TRS)来研究炎症细胞的粘附行为。随着温度的变化,聚N-异丙基丙烯酰胺的接枝链会通过其较低的临界溶液温度(LCST),并且可以延伸(水合),在20摄氏度时形成亲水性表面,或者收缩(脱水),在以下温度形成疏水性表面。 37℃。分离的人单核细胞和衍生自单核细胞的巨噬细胞能够在疏水表面上粘附,扩散并形成FBGC。将温度降低至较低的临界溶液温度以下会引起表面润湿性的变化,从而形成亲水性表面,从而导致粘附细胞的差异性脱落随时间的推移而降低,范围从培养2小时后的98%到第10天的30%这些分离的细胞保持活力,并在TCPS上再培养3、7和10天。这些新颖的表面允许以时间方式研究粘附的炎性细胞的粘附行为,以及表面构象和润湿性变化对细胞粘附和脱离的影响。

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