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Biosensing, cytotoxicity, and cellular uptake studies of surface-modified gold nanorods
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Biosensing, cytotoxicity, and cellular uptake studies of surface-modified gold nanorods

Harshala J. Parab, Hao Ming Chen, Tsung-Ching Lai, Jing Hong Huang, Po Hsun Chen, Ru-Shi Liu, Michael Hsiao, Chung-Hsuan Chen, Din-Ping TsaiYeu-Kuang Hwu
Journal of Physical Chemistry C, 卷.113(18), 頁碼.7574-7578
05/2009

摘要

Electronic Optical and Magnetic Materials Energy (all) Surfaces Coatings and Films Physical and Theoretical Chemistry
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.ζpotential 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. © 2009 American Chemical Society.

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