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层状聚集的空间位阻效应:形态均一的半导体 MoS2 作为二维探针在可视化免疫分析中的应用。

Layered Aggregation with Steric Effect: Morphology-Homogeneous Semiconductor MoS as an Alternative 2D Probe for Visual Immunoassay.

机构信息

Key Laboratory of Eco-Environments in Three Gorges Reservoir (Ministry of Education), School of Chemistry and Chemical Engineering, Southwest University, Chongqing, 400715, P. R. China.

Department of Materials, Imperial College London, Prince Consort Road, London, SW7 2AZ, UK.

出版信息

Small. 2018 Feb;14(7). doi: 10.1002/smll.201703560. Epub 2018 Jan 22.

Abstract

Liquid-phase exfoliation routes unavoidably generate 2D nanostructures with inhomogeneous morphologies. Herein, thickness-dependent sorting of exfoliated nanostructures is achieved via a treatment of differential-zone centrifugation in the surfactant aqueous phase. With this approach, homogeneous MoS nanosheets are obtained, and due to the intrinsic semiconducting characteristics, those 2D nanosheets are endowed with desired optical properties, rivaling classic gold nanoparticles in sensing applications. Furthermore, MoS nanosheets with high uniformity and chemical inertness are coupled with proteins, exhibiting high performance in stability and anti-interferences for bioanalysis. As a consequence of aggregation-induced steric effect, distinguishing running shifts of antibody-anchored conjugates in gel electrophoresis are visually responsive to those specific antigens. This assay enables the easy and fast monitoring of tumor biomarkers just according to "naked-eye" identification of band location in electrophoresis results, which are presented by an alternative visual probe of 2D MoS -protein conjugates. The developed visual immunoassay with the synergistic effect of gel electrophoresis techniques and 2D semiconductors pushes significant progress in "home-made" tests for disease early diagnosis.

摘要

液相剥离方法不可避免地会产生具有不均匀形态的 2D 纳米结构。在此,通过在表面活性剂水相中进行差分区离心处理,实现了剥离纳米结构的厚度依赖性分级。采用这种方法,可以获得均匀的 MoS 纳米片,由于其本征半导体特性,这些二维纳米片具有所需的光学性质,在传感应用方面可与经典的金纳米颗粒相媲美。此外,具有高均匀性和化学惰性的 MoS 纳米片与蛋白质结合,在生物分析中表现出高稳定性和抗干扰性。由于聚集诱导的空间位阻效应,在凝胶电泳中,抗体锚定偶联物的运行位移的区分可以通过 2D MoS-蛋白质偶联物的替代视觉探针进行直观响应。该测定法可根据电泳结果中条带位置的“肉眼”识别,轻松快速地监测肿瘤生物标志物,这是凝胶电泳技术和二维半导体协同作用的可视化免疫测定法在疾病早期诊断的“自制”检测方面取得的重大进展。

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