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Fluorescent-Magnetic Hybrid Nanoparticles Induce a Dose-Dependent Increase in Proinflammatory Response in Lung Cells in vitro Correlated with Intracellular Localization

机译:荧光-磁性杂化纳米粒子诱导剂量依赖性的肺细胞体外促炎反应与细胞内定位相关的增加。

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摘要

Iron platinum nanoparticles embedded in a poly(methacrylic acid) (PMA) polymer shell and fluorescently labeled with the dye ATTO 590 (FePt-PMA-ATTO-2%) are investigated in terms of their intracellular localization in lung cells and potential to induce a proinflammatory response dependent on concentration and incubation time. A gold core coated with the same polymer shell (Au-PMA-ATTO-2%) is also included. Using laser scanning and electron microscopy techniques, it is shown that the FePt-PMA-ATTO-2% particles penetrate all three types of cell investigated but to a higher extent in macrophages and dendritic cells than epithelial cells. In both cell types of the defense system but not in epithelial cells, a particle-dose-dependent increase of the cytokine tumor necrosis factor alpha (TNF alpha) is found. By comparing the different nanoparticles and the mere polymer shell, it is shown that the cores combined with the shells are responsible for the induction of proinflammatory effects and not the shells alone. It is concluded that the uptake behavior and the proinflammatory response upon particle exposure are dependent on the time, cell type, and cell culture.
机译:研究了嵌入到聚(甲基丙烯酸)(PMA)聚合物外壳中并用染料ATTO 590(FePt-PMA-ATTO-2%)进行荧光标记的铁铂纳米粒子,它们在肺细胞内的细胞内定位以及诱导肺动脉高压的潜力炎症反应取决于浓度和孵育时间。还包括涂有相同聚合物外壳(Au-PMA-ATTO-2%)的金芯。使用激光扫描和电子显微镜技术,表明FePt-PMA-ATTO-2%颗粒可穿透所研究的所有三种类型的细胞,但在巨噬细胞和树突状细胞中的渗透率要高于上皮细胞。在防御系统的两种细胞类型中,但在上皮细胞中均没有,发现细胞因子肿瘤坏死因子α(TNF alpha)的剂量依赖于剂量增加。通过比较不同的纳米颗粒和仅聚合物壳,表明与壳结合的核负责促炎作用,而不是单独的壳。结论是,颗粒暴露后的摄取行为和促炎反应取决于时间,细胞类型和细胞培养。

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