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一种用于研究三价砷与 ArsA ATP 酶结合的三维局域表面等离子体共振生物传感器。

A 3D localized surface plasmon resonance biosensor for the study of trivalent arsenic binding to the ArsA ATPase.

机构信息

Nanobioengineering/Nanobioelectronics Laboratory, Department of Biomedical Engineering, Florida International University, 10555 W Flagler Street, Miami, FL 33174, USA.

出版信息

Biosens Bioelectron. 2012 Oct-Dec;38(1):19-26. doi: 10.1016/j.bios.2012.04.026. Epub 2012 Apr 26.

Abstract

A self-assembled 3D hydrogel-nanoparticle composite integrated surface plasmon resonance (SPR) sensor is reported here. The novel assembled substrate was developed by means of a surface mediated radical co-polymerization process to obtain a highly sensitive hydrogel-based thin film that possesses specific binding sites for target analytes. Initially, amino group modified gold nanoparticles (AuNPs) were covalently linked to acrylic acid monomer. Following this, N-isopropylacrylamide (NIPAAm) and AuNPs linked acrylic acid (AAc) monomers were randomly co-polymerized by the "grafting from" method in the presence of initiator and crosslinker onto the sensing surface. Surface characterization techniques were utilized to evaluate the thickness and composition of the hydrogel-nanoparticle film. The sensing platform was employed to study the binding kinetics and conformational changes of the ArsA ATPase as a consequence of binding trivalent arsenicals under a variety of conditions. ArsA, the catalytic subunit of the ArsAB arsenite (As(III)) translocating ATPase, is one of the five proteins encoded by the arsenical resistance (ars) operon of plasmid R773 in cells of Escherichia coli, that confers resistance to trivalent and pentavalent salts of the metalloid arsenic. SPR measurements indicate that the 3D hydrogel-nanoparticle coated sensors exhibited a higher sensitivity than that of the 2D AuNPs decorated sensors. Binding of As(III) to ArsA is greatly facilitated by the presence of magnesium ion and ATP.

摘要

本文报道了一种自组装的 3D 水凝胶-纳米粒子复合表面等离子体共振(SPR)传感器。通过表面介导的自由基共聚过程制备了新型组装基底,以获得具有针对靶分析物的特异性结合位点的高灵敏度水凝胶基薄膜。最初,氨基修饰的金纳米粒子(AuNPs)通过共价键连接到丙烯酰胺单体上。随后,N-异丙基丙烯酰胺(NIPAAm)和 AuNPs 连接的丙烯酰胺(AAc)单体通过“从”方法在引发剂和交联剂存在下随机共聚到传感表面上。利用表面特性技术来评估水凝胶-纳米粒子薄膜的厚度和组成。该传感平台用于研究 ArsA ATPase 的结合动力学和构象变化,作为在各种条件下结合三价砷化物的结果。ArsA 是质粒 R773 中大肠杆菌细胞砷抗性(ars)操纵子编码的五种蛋白质之一,是砷(As)的三价和五价盐的转运 ATP 酶的催化亚基,赋予对三价和五价砷盐的抗性。SPR 测量表明,3D 水凝胶-纳米粒子涂覆的传感器比 2D AuNPs 修饰的传感器具有更高的灵敏度。镁离子和 ATP 的存在极大地促进了 As(III)与 ArsA 的结合。

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本文引用的文献

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