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首页> 外文期刊>Analytica chimica acta >A label-free fluorescence biosensor for highly sensitive detection of lectin based on carboxymethyl chitosan-quantum dots and gold nanoparticles
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A label-free fluorescence biosensor for highly sensitive detection of lectin based on carboxymethyl chitosan-quantum dots and gold nanoparticles

机译:基于羧甲基壳聚糖量子点和金纳米粒子的高灵敏度检测凝集素的无标记荧光生物传感器

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In this work, we report a novel label-free fluorescence "turn off-on" biosensor for lectin detection. The highly sensitive and selective sensing system is based on the integration of carboxymethyl chitosan (CM-CHIT), CuInS2 quantum dots (QDs) and Au nanoparticles (NPs). Firstly, CuInS2 QDs featuring carboxyl groups were directly synthesized via a hydrothermal synthesis method. Then, the carboxyl groups on the CuInS2 QDs surface were interacted with the amino groups (-NH2), carboxyl groups (-COOH) and hydroxyl groups (-OH) within CM-CHIT polymeric chains via electrostatic interactions and hydrogen bonding to form CM-CHIT-QDs assemblies. Introduction of Au NPs could quench the fluorescence of CM-CHIT- QDs through electron and energy transfer. In the presence of lectin, lectin could bind exclusively with CM-CHIT-QDs by means of specific multivalent carbohydrate-protein interaction. Thus, the electron and energy transfer process between CM-CHIT-QDs and Au NPs was inhibited, and as a result, the fluorescence of CM-CHIT-QDs was effectively "turned on". Under the optimum conditions, there was a good linear relationship between the fluorescence intensity ratio I/I-0 (I and I-0 were the fluorescence intensity of CM-CHIT-QDs-Au NPs in the presence and absence of lectin, respectively) and lectin concentration in the range of 0.2-192.5 nmol L-1, And the detection limit could be down to 0.08 nmol L-1. Furthermore, the proposed biosensor was employed for the determination of lectin in fetal bovine serum samples with satisfactory results. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们报告了用于凝集素检测的新型无标记荧光“关闭”生物传感器。高灵敏度和选择性的传感系统基于羧甲基壳聚糖(CM-CHIT),CuInS2量子点(QDs)和金纳米颗粒(NPs)的集成。首先,通过水热合成法直接合成了具有羧基的CuInS2 QD。然后,CuInS2 QDs表面的羧基通过静电相互作用和氢键与CM-CHIT聚合物链中的氨基(-NH2),羧基(-COOH)和羟基(-OH)相互作用形成CM- CHIT-QDs程序集。 Au NPs的引入可以通过电子和能量转移猝灭CM-CHIT-QDs的荧光。在存在凝集素的情况下,凝集素可以通过特定的多价碳水化合物-蛋白质相互作用与CM-CHIT-QD专门结合。因此,抑制了CM-CHIT-QD和Au NPs之间的电子和能量转移过程,结果,CM-CHIT-QDs的荧光被有效地“开启”。在最佳条件下,荧光强度比I / I-0之间具有良好的线性关系(I和I-0分别是存在和不存在凝集素的情况下CM-CHIT-QDs-Au NP的荧光强度)凝集素的浓度范围为0.2-192.5 nmol L-1,检出限可降至0.08 nmol L-1。此外,所提出的生物传感器用于胎牛血清样品中凝集素的测定,结果令人满意。 (C)2016 Elsevier B.V.保留所有权利。

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