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用于增强多巴胺检测和抗肿瘤能力的两性离子巯基磺基甜菜碱稳定的铂纳米颗粒。

Zwitterionic Sulfhydryl Sulfobetaine Stabilized Platinum Nanoparticles for Enhanced Dopamine Detection and Antitumor Ability.

作者信息

Li Ruyu, Fan Liyuan, Chen Shengfu, Wang Longgang, Cui Yanshuai, Ma Guanglong, Zhang Xiaoyu, Liu Zhiwei

机构信息

State Key Laboratory of Metastable Materials Science and Technology, Hebei Key Laboratory of Nano-biotechnology, Hebei Key Laboratory of Applied Chemistry, Yanshan University, Qinhuangdao066004, China.

Key Laboratory of Biomass Chemical Engineering of Ministry of Education, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou, Zhejiang310027, China.

出版信息

ACS Appl Mater Interfaces. 2022 Dec 14;14(49):55201-55216. doi: 10.1021/acsami.2c15863. Epub 2022 Dec 2.

Abstract

Herein, three kinds of molecules were used to modify the surface of platinum nanoparticles (Pt NPs) to tune their surface charge. Zwitterionic thiol-functionalized sulfobetaine (SH-SB) stabilized Pt NPs (SH-SB/Pt NPs) had the highest oxidase activity and peroxidase activity in the prepared platinum nanozymes due to the generation of reactive oxygen species. In addition, a colorimetric dopamine detection method was established based on the peroxidase activity of SH-SB/Pt NPs. This method had a wide range (0-120 μM), a low detection limit (0.244 μM), and high specificity. More importantly, SH-SB/Pt NPs displayed little hemolysis and good stability in the presence of proteins. SH-SB/Pt NPs demonstrated high cytotoxicity and good antitumor ability , which was attributed to the photothermal conversion ability of SH-SB/Pt NPs and the generation of reactive oxygen species in the acidic environment. The surface modification of nanozymes using zwitterionic molecules opens a new method to improve the catalytic activity and antitumor ability of nanozymes.

摘要

在此,使用了三种分子对铂纳米颗粒(Pt NPs)表面进行修饰,以调节其表面电荷。两性离子硫醇功能化磺基甜菜碱(SH-SB)稳定的Pt NPs(SH-SB/Pt NPs)在制备的铂纳米酶中具有最高的氧化酶活性和过氧化物酶活性,这归因于活性氧的产生。此外,基于SH-SB/Pt NPs的过氧化物酶活性建立了一种比色法检测多巴胺的方法。该方法具有较宽的检测范围(0 - 120 μM)、较低的检测限(0.244 μM)和高特异性。更重要的是,SH-SB/Pt NPs在蛋白质存在下几乎不发生溶血且具有良好的稳定性。SH-SB/Pt NPs表现出高细胞毒性和良好的抗肿瘤能力,这归因于SH-SB/Pt NPs的光热转换能力以及在酸性环境中活性氧的产生。使用两性离子分子对纳米酶进行表面修饰为提高纳米酶的催化活性和抗肿瘤能力开辟了一种新方法。

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