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Phytosynthesis of Palladium Nanoclusters: An Efficient Nanozyme for Ultrasensitive and Selective Detection of Reactive Oxygen Species

机译:钯纳米能量植物的植物合成:一种高效的纳米酶用于超细含氧物质的超敏感和选择性检测

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摘要

Hydrogen peroxide is a low-reactivity reactive oxygen species (ROS); however, it can easily penetrate cell membranes and produce highly reactive hydroxyl radical species through Fenton’s reaction. Its presence in abnormal amounts can lead to serious diseases in humans. Although the development of a simple, ultrasensitive, and selective method for H O detection is crucial, this remains a strategic challenge. The peroxidase mimetic activity of palladium nanoclusters (PdNCs) has not previously been evaluated. In this study, we developed an ultrasensitive and selective colorimetric detection method for H O using PdNCs. An unprecedented eco-friendly, cost-effective, and facile biological method was developed for the synthesis of PdNCs. This is the first report of the biosynthesis of PdNCs. The synthesized nanoclusters had a significantly narrow size distribution profile and high stability. The nanoclusters were demonstrated to possess a peroxidase mimetic activity that could oxidize peroxidase substrate 3,3′,5,5′-tetramethylbenzidine (TMB). Various interfering substances in serum (100 μM phenylalanine, cysteine, tryptophan, arginine, glucose, urea, Na , Fe , PO , Mn , Ca , Mg , Zn , NH , and K ) were included to evaluate the selectivity of the assay, and oxidation of TMB occurred only in the presence of H O . Therefore, PdNCs show an efficient nanozyme for the peroxidase mimetic activity. The assay produced a sufficient signal at the ultralow concentration of 0.0625 µM H O . This colorimetric assay provides a real-time, rapid, and easy-to-use platform for the detection of H O for clinical purposes.
机译:过氧化氢是低反应性反应性氧(ROS);然而,它可以通过Fenton的反应容易地穿透细胞膜并产生高反应性的羟基自由基物质。它在异常量的存在可能导致人类的严重疾病。虽然开发简单,超敏和选择性的HO检测方法至关重要,但这仍然是一个战略挑战。先前未评估钯纳米能器(PDNC)的过氧化物酶模拟活性。在本研究中,我们使用PDNC开发了H o的超细和选择性比色检测方法。开发了前所未有的环保,成本效益和体内生物学方法,用于合成PDNC。这是PDNC生物合成的第一个报告。合成的纳米能器具有显着窄的尺寸分布曲线和高稳定性。证明纳米能器具有氧化酶模拟活性,可氧化过氧化物酶基质3,3',5,5'-四甲基苯胺(TMB)。包括各种干涉物质(100μM苯丙氨酸,半胱氨酸,色氨酸,精氨酸,葡萄糖,尿素,Na,Fe,PO,Mn,Ca,Mg,Zn,NH和K),以评估测定的选择性,和TMB的氧化仅在HO的存在下发生。因此,PDNCS显示出用于过氧化物酶模拟活性的高效纳佐。该测定在0.0625μmHO的超级浓度下产生足够的信号。该比色测定提供了用于检测H O的实时,快速,易于使用的平台,用于临床目的。

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