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用于分析血管内皮生长因子 (VEGF) 的光学适体传感器。

Optical aptasensors for the analysis of the vascular endothelial growth factor (VEGF).

机构信息

Institute of Chemistry, The Center for Nanoscience and Nanotechnology, The Hebrew University of Jerusalem, Jerusalem, Israel.

出版信息

Anal Chem. 2012 Jul 17;84(14):6192-8. doi: 10.1021/ac3011473. Epub 2012 Jul 5.

Abstract

The vascular endothelial growth factor, VEGF, is an important biomarker for different diseases and clinical disorders. We present a series of optical aptasensor-based sensing platforms for VEGF that include the following: (i) A FRET-based sensor that involves the VEGF-induced separation of aptamer-functionalized quantum dots blocked by a quencher nucleic acid (detection limit 1 nM). (ii) A FRET-based sensor based on the VEGF-induced assembly of the aptamer subunits functionalized with QDs and a dye acceptor (Cy5), respectively (detection limit 12 nM). (iii) A chemiluminescence aptasensor based on VEGF-induced assembly of a hemin/G-quadruplex catalyst (detection limit 18 nM). (iv) A chemiluminescence aptasensor based on the VEGF-stimulated assembly of two aptamer subunits into the hemin/G-quadruplex catalyst (detection limit 2.6 nM). (v) A chemiluminescence resonance energy transfer (CRET) aptasensor based on the VEGF-induced assembly of a semiconductor QDs-hemin/G-quadruplex supramolecular structure (detection limit 875 pM). Furthermore, an amplified optical aptasensor system based on the Exonuclease III (Exo III) recycling of the VEGF analyte was developed. In this system, one aptamer subunit is modified at its 5' and 3' ends with QDs and a black hole quencher, respectively. The VEGF-induced self-assembly of the aptamer subunits result in the digestion of the quencher units and the autonomous recycling of the analyte, while triggering-on the luminescence of the QDs (detection limit 5 pM). The system was implemented to analyze VEGF in human sera samples.

摘要

血管内皮生长因子(VEGF)是多种疾病和临床疾病的重要生物标志物。我们提出了一系列基于光学适体的 VEGF 传感平台,包括以下内容:(i)基于荧光共振能量转移(FRET)的传感器,涉及 VEGF 诱导的被猝灭核酸封闭的适体功能化量子点的分离(检测限 1 nM)。(ii)基于 FRET 的传感器,基于 VEGF 诱导的分别带有量子点和染料受体(Cy5)的适体亚基的组装(检测限 12 nM)。(iii)基于 VEGF 诱导的血红素/G-四链体催化剂组装的化学发光适体传感器(检测限 18 nM)。(iv)基于 VEGF 刺激两个适体亚基组装成血红素/G-四链体催化剂的化学发光适体传感器(检测限 2.6 nM)。(v)基于 VEGF 诱导的半导体量子点-血红素/G-四链体超分子结构组装的化学发光共振能量转移(CRET)适体传感器(检测限 875 pM)。此外,还开发了基于 Exonuclease III(Exo III)循环的 VEGF 分析物的放大光学适体系统。在该系统中,一个适体亚基在其 5'和 3'末端分别用量子点和黑洞猝灭剂进行修饰。适体亚基的 VEGF 诱导自组装导致猝灭单元的消化和分析物的自主循环,同时触发量子点的发光(检测限 5 pM)。该系统用于分析人血清样品中的 VEGF。

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