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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >TMB-assembly as nanosubstrate construction colorimetric kit for highly sensitive and selective detection of H2O2 and monoamine oxidase-A based on Fenton reaction
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TMB-assembly as nanosubstrate construction colorimetric kit for highly sensitive and selective detection of H2O2 and monoamine oxidase-A based on Fenton reaction

机译:基于FENTON反应,TMB组件作为高敏感和选择性检测H2O2和单胺氧化酶-A的高敏感和选择性检测

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摘要

Detection of H2O2 is significant for the applications in environmental protection, pharmaceutical industries, food production, and clinical control. Current colorimetric kit of H2O2 based on enzyme or nanomaterials always needs TMB or other peroxidases substrate as coloration species. Herein, we report a simple hydrothermal method to synthesize of TMB dot as the nanosubstrate construction colorimetric kit for highly selective and sensitive detection of H2O2 based on Fenton reaction. Compared with TMB as the substrate, the synthesized TMB dots (TMBDs) show higher reaction activity in the presence of the same low-level Fe2+ and H2O2, resulting in highly sensitive sensing H2O2 down to 0.8 nM. Additionally, the obtained TMBDs can well disperse in solution, while generally TMB as substrate needs to be dissolved in organic solvents such as DMF and DMSO. Furthermore, the developed colorimetric kit is applied in detection of Mao-A, due to the reaction between epinephrine and Mao-A producing H2O2. More importantly, the proposed method has been successfully applied to the analysis of Mao-A in spiked human serum Hence, the TMBDs as the nanosubstrate provide an efficient, fast and sensitive approach for colorimetric kit of H2O2 and Mao-A, promoting more extensive application in early diagnosis of disease and drug discovery.
机译:H2O2的检测对于环境保护,制药行业,食品生产和临床控制中的应用是显着的。基于酶或纳米材料的H2O2的电流比色剂量总是需要TMB或其他过氧化物酶基质作为着色物种。在此,我们报告了一种简单的水热方法,以合成TMB点作为纳米族结构比色剂量,基于Fenton反应的高选择性和敏感检测H2O2。与TMB为基板相比,合成的TMB点(TMBDs)在相同的低水平Fe 2 +和H 2 O 2存在下显示出较高的反应活性,得到高敏感的感测H2O2至0.8nm。另外,所获得的TMBD可以在溶液中进行良好分散,而通常TMB作为底物需要溶解在诸如DMF和DMSO的有机溶剂中。此外,由于肾上腺素和MAO-A的反应,所施加的比色剂量用于检测MAO-A,其产生H 2 O 2。更重要的是,该方法已经成功地应用于掺入人血清中的MAO-A的分析,因此TMBDS作为纳米纳米的TMBDS提供了H2O2和MAO-A的比色剂量的有效,快速灵敏的方法,促进了更广泛的应用早期诊断疾病和药物发现。

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