首页> 美国卫生研究院文献>International Journal of Nanomedicine >The Effect of Chemical Structure of OEG Ligand Shells with Quaternary Ammonium Moiety on the Colloidal Stabilization Cellular Uptake and Photothermal Stability of Gold Nanorods
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The Effect of Chemical Structure of OEG Ligand Shells with Quaternary Ammonium Moiety on the Colloidal Stabilization Cellular Uptake and Photothermal Stability of Gold Nanorods

机译:季铵配体壳化学结构与季铵部分对金纳米杆胶体稳定蜂窝稳定蜂窝稳定蜂窝摄取和光热稳定性的影响

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摘要

Plasmonic photothermal cancer therapy by gold nanorods (GNRs) emerges as a promising tool for cancer treatment. The goal of this study was to design cationic oligoethylene glycol (OEG) compounds varying in hydrophobicity and molecular electrostatic potential as ligand shells of GNRs. Three series of ligands with different length of OEG chain (ethylene glycol units = 3, 4, 5) and variants of quaternary ammonium salts (QAS) as terminal functional group were synthesized and compared to a prototypical quaternary ammonium ligand with alkyl chain – (16-mercaptohexadecyl)trimethylammonium bromide (MTAB).
机译:黄金纳米棒(GNRS)的等离子体光热癌疗法出现为癌症治疗的有希望的工具。本研究的目标是设计孤立性和分子静电势的阳离子寡糖(OEG)化合物作为GNR的配体壳。合成与末端官能团的不同长度的欧宝链(乙二醇单位= 3,4,5)和季铵盐(QAS)的变体的三系列配体,并与烷基链的原型季铵配体进行比较 - (16 -mercaptohexadecyl)三甲基溴化铵(MTAB)。

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