一种具有分析物激活鲶鱼效应的类芬顿反应体系,用于增强比色和光热多巴胺生物测定。
A Fenton-like reaction system with analyte-activated catfish effect as an enhanced colorimetric and photothermal dopamine bioassay.
作者信息
Niu Zhengrong, Rao Honghong, Xue Xin, Luo Mingyue, Liu Xiuhui, Xue Zhonghua, Lu Xiaoquan
机构信息
Key Laboratory of Bioelectrochemistry & Environmental Analysis of Gansu Province, College of Chemistry & Chemical Engineering, Northwest Normal University, Lanzhou, 730070, China.
出版信息
Analyst. 2021 Mar 7;146(5):1689-1697. doi: 10.1039/d0an01830a. Epub 2021 Jan 14.
Fenton-like reaction systems have been proven to be efficient as powerful promoters in advanced oxidation processes (AOPs) due to their generated reactive oxygen species (ROS), such as ˙OH and ˙O, which can further oxidize a specific chromogenic substrate like 3,3',5,5'-tetramethylbenzidine (TMB) to generate sensitive color readout and thereby demonstrate more potential in the colorimetric analysis field. However, the inherent drawback of the low rate-limiting step of Fe/Fe conversion in the Fenton-like reaction and its resultant inefficiency for HO decomposition hinder its practical applications. We herein communicate an analyte-activated catfish effect based catalysis strategy to promote the Fenton-like reaction, in which dopamine, like a catfish, was added to activate the Fenton-like reaction. By definition, the conversion rate of Fe to Fe in the proposed Fenton-like reaction can be significantly accelerated through a specific DA-mediated electron transfer process which further promotes the reaction activity in the Fenton-like reaction to generate more ˙OH and ˙O radicals. As a result, the produced ˙OH and ˙O radicals in such a reaction system can significantly oxidize TMB indicator into its oxidation product (TMBox) and therefore indicate the corresponding target-dependent color and photothermal signal readout, enabling the successful fabrication of a more sensitive and stable colorimetric and photothermometric DA sensor. More significantly, this strategy can greatly advance the practical application of Fenton-like reactions in the fields of colorimetric and photothermometric bioassays.
类芬顿反应体系已被证明是高级氧化过程(AOPs)中高效的强力促进剂,这是由于其产生的活性氧物种(ROS),如˙OH和˙O,这些活性氧物种可以进一步氧化特定的显色底物,如3,3',5,5'-四甲基联苯胺(TMB)以产生灵敏的颜色读数,从而在比色分析领域展现出更大的潜力。然而,类芬顿反应中Fe/Fe转化的限速步骤速率较低这一固有缺点及其导致的HO分解效率低下阻碍了其实际应用。我们在此传达一种基于鲶鱼效应的分析物激活催化策略来促进类芬顿反应,其中加入多巴胺,就像鲶鱼一样,来激活类芬顿反应。根据定义,在提出的类芬顿反应中,Fe到Fe的转化率可以通过特定的多巴胺介导的电子转移过程显著加速,这进一步促进了类芬顿反应中的反应活性,以产生更多的˙OH和˙O自由基。结果,在这样的反应体系中产生的˙OH和˙O自由基可以将TMB指示剂显著氧化成其氧化产物(TMBox),因此指示出相应的目标依赖颜色和光热信号读数,从而成功制造出一种更灵敏、稳定的比色和光热多巴胺传感器。更重要的是,该策略可以极大地推动类芬顿反应在比色和光热生物分析领域的实际应用。