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Assessing the effect of surface chemistry on gold nanorod uptake, toxicity, and gene expression in mammalian cells

机译:评估表面化学对哺乳动物细胞中金纳米棒摄取,毒性和基因表达的影响

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摘要

Through the use of various layer-by-layer polyelectrolyte (PE) coating schemes, such as the common poly (diallyldimethylammonium chloride)poly (4-styrenesulfonic acid) (PDADMAC-PSS) system, the mammalian cellular uptake of gold nanorods can be tuned from very high to very low by manipulating the surface charge and functional groups of the PEs. The toxicity of these nanorods is also examined. Since the PE coatings are individually toxic, the toxicity of nanorods coated in these PEs is measured and cells are found to be greater than 90% viable in nearly all cases, even at very high concentrations. This viability assay may not be a complete indicator of toxicity, and thus gene-expression analysis is used to examine the molecular changes of cells exposed to PDADMAC-coated nanorods, which enter cells at the highest concentrations. Indicators Of cell stress, such as heat-shock proteins, are not significantly up- or down-regulated following nanorod uptake, which suggests that PDADMAC-coated gold nanorods have negligible impact on cell function. Furthermore, a very low number of genes experience any significant change in expression (0.35% of genes examined). These results indicate that gold nanorods are well suited for therapeutic applications, such as thermal cancer therapy, due to their tunable cell uptake and low toxicity.
机译:通过使用各种逐层聚电解质(PE)涂层方案,例如常见的聚二烯丙基二甲基氯化铵聚(4-苯乙烯磺酸)(PDADMAC-PSS)系统,可以调节哺乳动物细胞对金纳米棒的吸收。通过控制PE的表面电荷和官能团,可以从非常高到非常低。还检查了这些纳米棒的毒性。由于PE涂层具有个别毒性,因此可以测量涂覆在这些PE中的纳米棒的毒性,发现在几乎所有情况下,即使在非常高的浓度下,细胞的存活率都超过90%。此活力测定可能不是毒性的完整指标,因此基因表达分析用于检查暴露于PDADMAC涂层纳米棒的细胞的分子变化,该纳米棒以最高浓度进入细胞。纳米棒摄取后,细胞应激的指标(例如热休克蛋白)并未显着上调或下调,这表明PDADMAC涂层的金纳米棒对细胞功能的影响可忽略不计。此外,极少的基因表达发生任何显着变化(所检查基因的0.35%)。这些结果表明,金纳米棒由于其可调节的细胞摄取和低毒性而非常适合于治疗应用,例如热癌症治疗。

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