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用于癌症标志物蛋白质诊断分析的功能配体与表面增强拉曼散射活性贵金属纳米结构的界面相互作用。

Interfacial interactions of SERS-active noble metal nanostructures with functional ligands for diagnostic analysis of protein cancer markers.

机构信息

Department of Materials Science and Engineering, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul, 02841, Republic of Korea.

出版信息

Mikrochim Acta. 2021 Apr 12;188(5):164. doi: 10.1007/s00604-021-04807-z.

Abstract

Noble metal nanostructures with designed hot spots have been widely investigated as surface-enhanced Raman spectroscopy (SERS)-active substrates, particularly for selective and sensitive detection of protein cancer markers. For specific target recognition and efficient signal amplification, SERS probe design requires a choice of SERS-active nanostructures as well as their controlled functionalization with Raman dyes and target recognition entities such as antibodies. However, the chemical conjugation of antibodies and Raman dyes to SERS substrates has rarely been discussed to date, despite their substantial roles in detection schemes. The interfacial interactions of metal nanostructures with functional ligands during conjugation are known to be strongly influenced by the various chemical and physical properties of the ligands, such as size, molecular weight, surface charge, 3-dimensional structures, and hydrophilicity/hydrophobicity. In this review, we discuss recent developments in the design of SERS probes over the last 4 years, focusing on their conjugation chemistry for functionalization. A strong preference for covalent bonding is observed with Raman dyes having simpler molecular structures, whereas more complicated ones are non-covalently adsorbed. Antibodies are both covalently and non-covalently bonded to nanostructures, depending on their activity in the SERS probes. Considering that ligand conjugation is highly important for chemical stability, biocompatibility, and functionality of SERS probes, this review is expected to expand the understanding of their interfacial design, leading to SERS as one of the most promising spectroscopic analytical tools for the early detection of protein cancer markers.

摘要

具有设计热点的贵金属纳米结构已被广泛研究作为表面增强拉曼光谱(SERS)-活性基底,特别是用于蛋白质癌症标志物的选择性和灵敏检测。为了进行特定的目标识别和有效的信号放大,SERS 探针设计需要选择 SERS 活性纳米结构,并对其进行拉曼染料和目标识别实体(如抗体)的控制功能化。然而,尽管它们在检测方案中具有重要作用,但迄今为止,化学偶联抗体和拉曼染料到 SERS 基底的方法很少被讨论。众所周知,在偶联过程中,金属纳米结构与功能配体的界面相互作用强烈受到配体的各种化学和物理性质的影响,例如大小、分子量、表面电荷、3 维结构和亲水性/疏水性。在这篇综述中,我们讨论了过去 4 年来 SERS 探针设计的最新进展,重点讨论了它们的功能化偶联化学。对于具有更简单分子结构的拉曼染料,观察到强烈的共价键偏好,而对于更复杂的染料,则是非共价吸附的。抗体根据其在 SERS 探针中的活性,与纳米结构共价和非共价结合。考虑到配体偶联对于 SERS 探针的化学稳定性、生物相容性和功能性非常重要,本综述有望扩展对其界面设计的理解,使 SERS 成为蛋白质癌症标志物早期检测的最有前途的光谱分析工具之一。

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