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基于碳纳米管的无需抗体的悬浮阵列用于测定典型的内分泌干扰化学物质。

Carbon nanotube-mediated antibody-free suspension array for determination of typical endocrine-disrupting chemicals.

机构信息

School of Public Health, Guangzhou Medical University, Guangzhou, 511436, People's Republic of China.

CAS Center for Excellence in Nanoscience, CAS Key Lab for Biological Effects of Nanomaterials and Nanosafety, National Center for Nanoscience and Technology, Beijing, 100190, People's Republic of China.

出版信息

Mikrochim Acta. 2020 Mar 6;187(4):202. doi: 10.1007/s00604-020-4181-3.

Abstract

A carbon nanotube (CNT)-mediated antibody-free suspension array (CASA) by integration of functionalized CNTs and aptamer (Apt) into xMAP® technology for simultaneous determination of typical endocrine-disrupting chemicals (EDCs) was developed . The interaction between CNTs and Apt acts as an effective and straightforward signal recognition, transformation, and amplification strategy. The amino-functionalized CNTs are covalently modified on the carboxyl-functionalized magnetic bead (MB) and further physically bridging with biotinylated Apt. CNTs on the surface of MBs not only increase the amount of Apt for target binding and signal amplification but also maintain the biological activity of Apt. After magnetic separation, the encoded MB address was distinguished and the concentration of the target in the liquid was negatively correlated with median fluorescence intensity. A series of environmental water samples were analysed by CASA, traditional immuno-SA, and competitive inhibition enzyme-linked immunosorbent assay for validation. The results obtained using CASA well matched for the multiplexed detection of various targets with dynamic concentration range from 6.40 × 10 to 4.00 μg L within 1 h. The method also confirmed good selectively, accuracy, and consistency with high-performance liquid chromatography. Graphical abstractSchematic representation of amino-functionalized carbon nanotube (CNT)-bridged antibody-free suspension array for detecting of three typical endocrine-disrupting chemicals. The amino-functionalized CNTs are covalently modified and further physically interacted with biotinylated aptamer featuring in the recognition and binding with the target of interest.

摘要

一种通过将功能化碳纳米管(CNT)和适体(Apt)整合到 xMAP®技术中,实现无抗体的碳纳米管介导悬浮阵列(CASA),用于同时测定典型的内分泌干扰化学物质(EDCs)。 CNT 和 Apt 之间的相互作用充当了一种有效且直接的信号识别、转化和放大策略。氨基功能化的 CNT 通过共价键修饰在羧基功能化的磁性珠(MB)上,并进一步通过生物素化的 Apt 物理桥接。MB 表面上的 CNT 不仅增加了用于目标结合和信号放大的 Apt 量,而且还保持了 Apt 的生物活性。在磁分离后,对编码的 MB 地址进行区分,并且液体中目标的浓度与中值荧光强度呈负相关。通过 CASA、传统免疫 SA 和竞争性抑制酶联免疫吸附测定对一系列环境水样进行分析,以进行验证。通过 CASA 获得的结果与具有动态浓度范围(6.40×10 至 4.00μg L)的各种目标的多重检测非常吻合,检测时间为 1 小时。该方法还证实了具有良好的选择性、准确性和与高效液相色谱的一致性。

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