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In vitro interactions between splenocytes and dansylamide dye-embedded nanoparticles detected by flow cytometry

机译:流式细胞仪检测脾细胞与丹磺​​酰胺染料包埋的纳米颗粒之间的体外相互作用

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摘要

Engineered nanoparticles (NPs) possess a range of biological activity. In vitro methods for assessing toxicity and efficacy would be enhanced by simultaneous quantitative information on the behavior of NPs in culture systems and signals of cell response. We have developed a method for visualizing NPs within cells using standard flow cytometric techniques and uniquely designed spherical siloxane NPs with an embedded (covalently bound) dansylamide dye. This method allowed NP visualization without obscuring detection of relevant biomarkers of cell subtype, activation state, and other events relevant to assessing bioactivity. We determined that NPs penetrated cells and induced a range of biological signals consistent with activation and costimulation. These results indicate that NPs may affect cell function at concentrations below those inducing cytotoxicity or apoptosis and demonstrate a novel method to image both localization of NPs and cell-level effects.
机译:工程纳米粒子(NPs)具有一系列生物活性。通过同时定量培养系统中NPs行为和细胞反应信号的定量信息,可以增强用于评估毒性和功效的体外方法。我们已经开发出一种使用标准流式细胞仪技术可视化细胞内NP的方法,并设计了具有嵌入式(共价结合)丹磺酰胺染料的独特设计的球形硅氧烷NP。这种方法可以进行NP可视化,而不会模糊检测细胞亚型,激活状态以及与评估生物活性有关的其他事件的相关生物标志物。我们确定NPs穿透细胞并诱导一系列与激活和共刺激一致的生物学信号。这些结果表明,在低于诱导细胞毒性或凋亡的浓度下,NPs可能会影响细胞功能,并显示出一种新颖的方法来对NPs的定位和细胞水平的影响进行成像。

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