Department of Chemistry, Capital Normal University , Beijing 100048, China.
Anal Chem. 2017 Nov 21;89(22):12299-12305. doi: 10.1021/acs.analchem.7b03270. Epub 2017 Nov 9.
Oxidative stress, as an essential cause to many diseases via irreversible biomolecule oxidation, can be induced by casual-contacted nanomaterials, which can generate hydroxyl radical (•OH) due to their active surface capacity. Herein, we report a novel upconversion nanoprobe for ratiometric •OH detection and monitoring titanium oxide nanomaterial-induced oxidative stress. Unlike previously developed nanoprobes, the •OH-responsive acceptor in these nanoprobes can be rapidly prepared and easily recycled. With a detection limit of ∼2 nM and a broad linear range of 4 nM-16 μM, the nanoprobe is suitable for both in vitro and in vivo applications. The facile preparation and recyclable strategy provide a new method for developing novel nanoprobes that can directly detect hazardous molecules in biological samples and systems.
氧化应激是许多疾病的一个重要原因,它会导致生物分子不可逆氧化,可以由偶然接触的纳米材料引起。由于其具有高的表面活性,这些纳米材料可以产生羟基自由基(•OH)。在这里,我们报告了一种新型的上转换纳米探针,用于比率检测•OH 和监测氧化钛纳米材料诱导的氧化应激。与以前开发的纳米探针不同,这些纳米探针中的•OH 响应受体可以快速制备并且易于回收。该纳米探针的检测限约为 2 nM,线性范围为 4 nM-16 μM,适用于体外和体内应用。这种简便的制备和可回收策略为开发能够直接检测生物样品和系统中有害分子的新型纳米探针提供了一种新方法。