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Biosensing, Cytotoxicity, and Cellular Uptake Studies of Surface-Modified Gold Nanorods

机译:表面修饰金纳米棒的生物传感,细胞毒性和细胞吸收研究

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Herein we report biorecognition studies of protein IgG using biocomapatible gold nanorods as molecular probes. Surface modification of cetyltrimethylammonium bromide (CTAB)-stabilized gold nanorods was carried out by using poly(styrenesulfonate) (PSS) to reduce the toxicity of as-synthesized gold nanorods caused by free CTAB. ζ potential analysis confirmed charge reversal on the surface of gold nanorods caused by the PSS coating. Surface plasmon resonance exhibited by gold nanorods has been employed as a tool for analyzing the binding events for biomolecules. TEM results, showing the aggregation of gold nanorods, in addition to the shift in surface plasmon resonance peak in UV-vis absorption measurements, upon the interaction of biomolecules with gold nanorods, confirmed molecular binding. Morphological changes caused by the cellular uptake of gold nanorods before and after PSS modification have been observed. Cell viability studies using gold nanorods were performed to study the cytotoxic effects of these molecular probes.
机译:在这里,我们报告了使用生物相容性金纳米棒作为分子探针的蛋白质IgG的生物识别研究。十六烷基三甲基溴化铵(CTAB)稳定化的金纳米棒的表面改性是通过使用聚(苯乙烯磺酸盐)(PSS)进行的,以减少由游离CTAB引起的合成金纳米棒的毒性。 ζ电位分析证实了PSS涂层引起的金纳米棒表面的电荷反转。金纳米棒表现出的表面等离振子共振已被用作分析生物分子结合事件的工具。 TEM结果表明,金纳米棒的聚集,以及生物分子与金纳米棒相互作用后,在紫外可见吸收测量中表面等离振子共振峰的移动,证实了分子结合。已观察到PSS修饰前后,金纳米棒的细胞摄取引起的形态变化。进行了使用金纳米棒的细胞活力研究,以研究这些分子探针的细胞毒性作用。

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