State Key Laboratory of Quality Research in Chinese Medicine, Institute of Chinese Medical Sciences , University of Macau , Taipa , Macao , China.
Center for Neuroscience, Faculty of Medicine and Health Science , University of Copenhagen , 2200 Copenhagen N , Denmark.
Anal Chem. 2018 Oct 16;90(20):12137-12144. doi: 10.1021/acs.analchem.8b03116. Epub 2018 Sep 25.
Five major reactive oxygen species (ROS) are generated in diseases including HO, OH, O, ROO, and O. Simultaneous detection of the five ROS with a single probe is crucial for a comprehensive understanding of the development and progression of many diseases, such as cancer and inflammatory diseases. However, currently reported detection systems are limited by targeting one ROS with one probe. This one-to-one detection mode may fail to sufficiently unveil the diseased state. In this study, we achieved simultaneous detection of all the five ROS with one probe (i.e., one-to-all detection), by designing a novel para-aminothiophenol (PATP) and hemin-decorated gold (Au/PATP/Hemin) nanoprobe. The design is principled by our discovery that PATP can react with OH, O, ROO, and O by a radical oxidative coupling mechanism to form 4,4'-dimercaptoazobenzene (DMAB). The DMAB then elicited strong characteristic surface-enhanced Raman scattering (SERS) peaks at 1142, 1386, and 1432 cm; which in turn enables direct detection of OH, O, ROO, and O and indirect detection of HO by hemin-catalyzed fenton reaction to convert HO into OH. In two representative ROS-elevated mice models of tumors and allergic dermatitis, the Au/PATP/Hemin nanoprobe demonstrated its robust performance of monitoring tumor development and inflammation progression in a highly sensitive and quantitative manner.
五种主要的活性氧(ROS)在包括 HO、OH、O、ROO 和 O 等疾病中产生。使用单一探针同时检测这五种 ROS 对于全面了解许多疾病(如癌症和炎症性疾病)的发展和进展至关重要。然而,目前报道的检测系统受到每个探针只能靶向一种 ROS 的限制。这种一对一的检测模式可能无法充分揭示疾病状态。在这项研究中,我们通过设计一种新型对氨基苯硫酚(PATP)和血红素修饰的金(Au/PATP/Hemin)纳米探针,实现了对所有五种 ROS 的同时检测(即一对一检测)。这种设计的原理是基于我们的发现,即 PATP 可以通过自由基氧化偶联机制与 OH、O、ROO 和 O 反应,形成 4,4'-二巯基偶氮苯(DMAB)。DMAB 随后在 1142、1386 和 1432 cm 处产生强烈的特征表面增强拉曼散射(SERS)峰;这反过来又可以通过血红素催化的芬顿反应直接检测 OH、O、ROO 和 O,并间接检测 HO 转化为 OH。在两种代表性的 ROS 升高的肿瘤和过敏性皮炎小鼠模型中,Au/PATP/Hemin 纳米探针表现出了高度灵敏和定量监测肿瘤发展和炎症进展的强大性能。