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基于 Au-X 相互作用的卤化物离子诱导的金纳米酶活性开关

Halide Ion-Induced Switching of Gold Nanozyme Activity Based on Au-X Interactions.

机构信息

College of Chemistry and Chemical Engineering, Yangzhou University , Yangzhou 225002, P. R. China.

出版信息

Langmuir. 2017 Jun 27;33(25):6372-6381. doi: 10.1021/acs.langmuir.7b00798. Epub 2017 Jun 16.

Abstract

The influence of halide ion on the peroxidase activity of protein-modified gold nanoparticles (AuNPs) has been explored, based on the Au-X interaction directed binding of halide ion to AuNPs. Due to different Au-X interactions, halide has been demonstrated to display different switching behaviors to the catalytic activity of protein-modified AuNPs. Presented is the finding that iodide can rapidly inhibit the enzyme activity of CM-AuNP nanozyme effectively. Iodide-mediated irreversible inhibition is due not to I-induced aggregation of AuNP but to the Au-I bond-induced blocking of active sites of AuNP nanozyme. I switching efficiency was found to be strongly dependent on the surface density of modifiers and the intrinsic property of the modifier. Similar to iodide, bromide can also inhibit the enzyme activity effectively, but its inhibition behavior is reversible. Due to the weak Au-Cl interaction, chloride has no influence on the enzyme activity of CM-AuNP at low ion concentration and exhibits weak activity inhibition at high ion concentration. Fluoride shows no influence on the activity of gold nanozyme due to the absence of Au-F interaction. Our results have improved a profound understanding of anion-mediated AuNP nanozyme activity because of their interfacial interaction and provided guidance in the further utilization of nanozyme in numerous areas.

摘要

基于卤化物离子与 AuNPs 的 Au-X 相互作用导向结合,研究了卤化物离子对蛋白质修饰金纳米粒子(AuNPs)过氧化物酶活性的影响。由于不同的 Au-X 相互作用,卤化物对蛋白质修饰 AuNPs 催化活性表现出不同的开关行为。本文发现碘化物可以快速有效地抑制 CM-AuNP 纳米酶的酶活性。碘化物介导的不可逆抑制不是由于 I 诱导的 AuNP 聚集,而是由于 Au-I 键诱导的 AuNP 纳米酶活性位点被封锁。发现 I 开关效率强烈依赖于修饰剂的表面密度和修饰剂的固有特性。与碘化物类似,溴化物也可以有效地抑制酶活性,但它的抑制行为是可逆的。由于 Au-Cl 相互作用较弱,氯离子在低离子浓度下对 CM-AuNP 的酶活性没有影响,在高离子浓度下表现出较弱的活性抑制。由于不存在 Au-F 相互作用,氟化物对金纳米酶的活性没有影响。我们的研究结果提高了对阴离子介导的 AuNP 纳米酶活性的深入理解,因为它们的界面相互作用为纳米酶在众多领域的进一步利用提供了指导。

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