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首页> 外文期刊>Archives of pharmacal research >Investigation of biomimetic shear stress on cellular uptake and mechanism of polystyrene nanoparticles in various cancer cell lines
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Investigation of biomimetic shear stress on cellular uptake and mechanism of polystyrene nanoparticles in various cancer cell lines

机译:仿生剪切应力对多种癌细胞系细胞摄取及聚苯乙烯纳米颗粒作用机理的研究

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Cancer cells in the tumor microenvironment are affected by fluid shear stress generated by blood flow in the vascular microenvironment and interstitial flows in the tumor microenvironment. Thus, we investigated how fluidic shear stress affects cellular uptake as well as the endocytosis mechanism of nanoparticles using a biomimetic microfluidic system that mimics the human dynamic environment. Positively charged amino-modified polystyrene nanoparticles (PSNs) at 100 mu g/mL were delivered to cancer cells under static and biomimetic dynamic conditions (0.5 dyne/cm(2)). Additionally, the experiment was done in the presence of endocytosis inhibitors specific for one of the endocytosis pathways. To evaluate cellular uptake of cationic PSNs, the fluorescence intensity of cationic PSNs in cancer cells was measured by flow cytometer and fluorescence images were taken using confocal laser scanning microscopy. Cancer cells in dynamic conditions exhibited higher cellular uptake of PSNs and showed different cellular uptake mechanisms compared with those in static conditions. From these results, it suggested that biomimetic dynamic conditions stimulated specific endocytosis and prompted cellular uptake. It was also important to consider fluidic shear stress as one of the critical factors because cellular uptake and drug delivery could play a key role in cancer cells and metastasis.
机译:肿瘤微环境中的癌细胞受血管微环境中的血流和肿瘤微环境中的间质流产生的流体剪切应力的影响。因此,我们使用模仿人类动态环境的仿生微流控系统,研究了流体剪切应力如何影响细胞摄取以及纳米颗粒的内吞作用机理。在静态和仿生动态条件(0.5达因/厘米(2))下,将100μg / mL带正电荷的氨基改性聚苯乙烯纳米颗粒(PSNs)递送至癌细胞。另外,该实验是在存在对一种内吞途径特异的内吞抑制剂的条件下进行的。为了评估阳离子PSN的细胞摄取,通过流式细胞仪测量癌细胞中阳离子PSN的荧光强度,并使用共聚焦激光扫描显微镜拍摄荧光图像。与静态条件下的癌细胞相比,动态条件下的癌细胞表现出更高的PSNs细胞摄取,并表现出不同的细胞摄取机制。从这些结果表明,仿生动态条件刺激了特定的内吞作用并促使细胞摄取。将流体剪切应力视为关键因素也很重要,因为细胞摄取和药物传递可能在癌细胞和转移中起关键作用。

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