首页> 外文期刊>Journal of biomedical materials research, Part A >Determining the cross-talk between smooth muscle cells and macrophages on a cobalt-chromium stent material surface using an in vitro postimplantation coculture model
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Determining the cross-talk between smooth muscle cells and macrophages on a cobalt-chromium stent material surface using an in vitro postimplantation coculture model

机译:使用体外后消除培养模型确定平滑肌细胞与巨噬细胞巨噬细胞之间的串扰

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摘要

Smooth muscle cells (SMCs) and macrophages are important cellular components involved in the development of complications following the implantation of cardiovascular devices. This leads to various disorders such as restenosis, chronic inflammation, and may ultimately result in device failure. In this study, we developed a postimplant stent coculture model using different ratios of SMCs and macrophages seeded on to cobalt-chromium alloy. The macrophages had an increased affinity to the coculture surfaces, which resulted in decreased SMC attachment to the alloy surfaces at the initial time point. Once adhered, the macrophages spread freely and displayed advanced stages of inflammation at 48 h when cocultured with SMCs. This resulted in an increased secretion of proinflammatory cytokines (tumor necrosis factor alpha, monocyte chemotactic protein 1, interleukin [IL]-6, and IL-8) by 48 h in the coculture samples with the greatest increase observed with the high number of macrophages. Therefore, the increased levels of proinflammatory cytokines promoted the growth of SMCs in coculture to a greater extent than when the SMCs were culture alone. Thus, this study demonstrated the constant cross-talk between SMCs and macrophages occurring on the postimplant stent surface. Similar coculture models can be used to test the biocompatibility of drugs and biomaterials at possible postimplantation scenarios. (c) 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 106A: 673-685, 2018.
机译:平滑肌细胞(SMC)和巨噬细胞是在植入心血管装置后开发并发症的重要细胞组分。这导致各种疾病,如再狭窄,慢性炎症,并且最终可能导致器件发生故障。在这项研究中,我们使用不同的SMC和巨噬细胞接种到钴 - 铬合金的后期支架共培养模型。巨噬细胞对共培养表面的亲和力增加,这导致在初始时间点对合金表面的SMC附接下降。一旦粘附,巨噬细胞随着SMC与SMC共同化时,巨噬细胞在48小时内展开并显示出炎症的高级阶段。这导致促炎细胞因子的分泌增加(肿瘤坏死因子α,单核细胞趋化蛋白1,白细胞介素蛋白1,IL-8)在共培养样品中,观察到具有大量巨噬细胞的增加。因此,促炎细胞因子的增加程度促进了比培养物中的SMC的生长,而不是单独培养SMC。因此,该研究证明了在后植物支架表面上发生的SMC和巨噬细胞之间的常量串扰。类似的共培养模型可用于在可能的后后期情景下测试药物和生物材料的生物相容性。 (c)2017 Wiley期刊,Inc.J生物保解率A:106A:673-685,2018。

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