Zhao Pengfei, Ni Ran, Wang Kexin, Hong Xia, Ding Yadan, Cong Tie, Liu Junping, Zhao Huiying
Key Laboratory of UV-Emitting Materials and Technology, Northeast Normal University, Ministry of Education, Changchun, Jilin, 130024, China.
Department of Basic Medicine, Gerontology Department of First Bethune Hospital, University of Jilin, Changchun, Jilin, 130021, China.
Anal Bioanal Chem. 2017 Jul;409(17):4207-4213. doi: 10.1007/s00216-017-0369-8. Epub 2017 Apr 28.
Silica nanorods were synthesized through a simple one-pot emulsion-droplet-based growth method, in which tetraethylorthosilicate (TEOS) was used as the silica source, ammonia as the catalyst, and polyvinylpyrrolidone (PVP) as the structure-directing agent and stabilizer. By controlling hydrolysis and condensation in the reaction process, we regulated the aspect ratios and the infrared (IR) absorption fingerprint signals (the transverse optical and the longitudinal optical phonon modes) of the silica nanorods. Based on this, a dual-mode immunoassay was performed for detecting model target analyte, human IgG. The shape code of the silica nanorods was used for simple, rapid qualitative, and sensitive semi-quantitative immunoassay by using a conventional optical microscope. The characteristic IR absorption fingerprint signals of the silica nanorods allowed for reliable quantitative immunoassay with good selectivity and high specificity. The detection limit and the linear range were found out to be 0.5 pM and 1 pM-10 nM, respectively. We expect that such dual-mode immunoassay could be applied for the detection of other analytes, such as protein, nucleic acids, bacteria, viruses, explosives, toxins, and so on. Graphical abstract A simple dual-mode immunoassay was performed using the shape code and infrared absorption fingerprint signals of silica nanorods as detection signals.
通过一种基于单锅乳液滴的简单生长方法合成了二氧化硅纳米棒,其中正硅酸四乙酯(TEOS)用作硅源,氨用作催化剂,聚乙烯吡咯烷酮(PVP)用作结构导向剂和稳定剂。通过控制反应过程中的水解和缩合,我们调节了二氧化硅纳米棒的长径比和红外(IR)吸收指纹信号(横向光学和纵向光学声子模式)。基于此,进行了双模式免疫测定以检测模型目标分析物人IgG。二氧化硅纳米棒的形状编码通过使用传统光学显微镜用于简单、快速的定性和灵敏的半定量免疫测定。二氧化硅纳米棒的特征红外吸收指纹信号允许进行具有良好选择性和高特异性的可靠定量免疫测定。检测限和线性范围分别为0.5 pM和1 pM - 10 nM。我们期望这种双模式免疫测定可应用于检测其他分析物,如蛋白质、核酸、细菌、病毒、爆炸物、毒素等。图形摘要 使用二氧化硅纳米棒的形状编码和红外吸收指纹信号作为检测信号进行了简单的双模式免疫测定。