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用于标记和无标记 DNA 和蛋白质微阵列的干涉硅生物芯片。

Interferometric silicon biochips for label and label-free DNA and protein microarrays.

机构信息

Consiglio Nazionale delle Ricerche, Istituto di Chimica del Riconoscimento Molecolare, Milano, Italy.

出版信息

Proteomics. 2012 Oct;12(19-20):2963-77. doi: 10.1002/pmic.201200202. Epub 2012 Sep 24.

Abstract

Protein and DNA microarrays hold the promise to revolutionize the field of molecular diagnostics. Traditional microarray applications employ labeled detection strategies based on the use of fluorescent and chemiluminescent secondary antibodies. However, the development of high throughput, sensitive, label-free detection techniques is attracting attention as they do not require labeled reactants and provide quantitative information on binding kinetics. In this article, we will provide an overview of the recent author's work in label and label-free sensing platforms employing silicon/silicon oxide (Si/SiO(2)) substrates for interferometric and/or fluorescence detection of microarrays. The review will focus on applications of Si/SiO(2) with controlled oxide layers to (i) enhance the fluorescence intensity by optical interferences, (ii) quantify with sub-nanometer accuracy the axial locations of fluorophore-labeled probes tethered to the surface, and (iii) detect protein-protein interactions label free. Different methods of biofunctionalization of the sensing surface will be discussed. In particular, organosilanization reactions for monodimensional coatings and polymeric coatings will be extensively reviewed. Finally, the importance of calibration of protein microarrays through the dual use of labeled and label-free detection schemes on the same chip will be illustrated.

摘要

蛋白质和 DNA 微阵列有望彻底改变分子诊断领域。传统的微阵列应用采用基于荧光和化学发光二级抗体的标记检测策略。然而,高通量、高灵敏度、无标记检测技术的发展引起了人们的关注,因为它们不需要标记反应物,并提供结合动力学的定量信息。本文将综述作者最近在基于硅/二氧化硅(Si/SiO 2 )衬底的标记和无标记传感平台方面的工作,用于干涉测量和/或荧光检测微阵列。综述将集中于具有受控氧化层的 Si/SiO 2 的应用,以(i)通过光学干涉增强荧光强度,(ii)以亚纳米精度定量测量固定在表面上的荧光标记探针的轴向位置,以及(iii)无标记检测蛋白质-蛋白质相互作用。将讨论传感表面的不同生物功能化方法。特别是,将对单维涂层和聚合涂层的有机硅烷化反应进行广泛综述。最后,将通过在同一芯片上同时使用标记和无标记检测方案来校准蛋白质微阵列的重要性进行说明。

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