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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >A G-quadruplex/hemin DNAzyme-based microchip electrophoresis chemiluminescence assay for highly sensitive detection of biotin in flour
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A G-quadruplex/hemin DNAzyme-based microchip electrophoresis chemiluminescence assay for highly sensitive detection of biotin in flour

机译:基于G-Quadreplex / Hemin DNazyme的微芯片电泳化学发光测定,用于面粉中生物素的高敏感性检测

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摘要

Quantitative analysis of biotin in biological fluids, foods, and pharmaceutical is important for diagnosis and treatment of biotin-related diseases and health maintenance. In this work, a novel G-quadruplex/hemin DNAzyme-based microchip electrophoresis chemiluminescence (CL) assay method was established for rapid and highly sensitive detection of biotin. This method is based on the specific binding between biotin and streptavidin, the catalytic CL characteristics of G-quadruplex/hemin DNAzyme to the oxidation-reduction reaction of hydrogen peroxide with luminol, and the on-line separation function of microchip electrophoresis. Under the optimal experimental conditions, on-chip biotin analysis was achieved within 1 min. The CL intensity is linearly proportional to the concentration of biotin in the range of 13-630 nM with a detection limit of 6.4 nM. The proposed method has been applied for the detection of biotin in flour, biotin contents in three flour samples are found in the range of 199-223 ng/g with a mean value of 214 ng/g. The recoveries were in the range of 94-103%. With excellent sensitivity and good selectivity, the proposed method could be applied in a wide range of biological fluids, foods, and pharmaceutical analysis.
机译:生物素,食品和药物中生物素的定量分析对于诊断和治疗生物素相关疾病和健康维护是重要的。在这项工作中,建立了一种新的G-Quadreplex /血红素DNAzyme的微芯片电泳化学发光(CL)测定方法,用于快速敏感地检测生物素。该方法基于生物素和链霉抗生物素蛋白的特异性结合,G-Quadreplex / Hemin dnazyme的催化Cl特性与鲁米诺氢的过氧化氢的氧化还原反应,以及微芯片电泳的在线分离功能。在最佳实验条件下,在1分钟内实现片上生物素分析。 CL强度与13-630nm的生物素浓度线性成比例,检测限为6.4nm。已经应用了该方法用于检测面粉中的生物素,三种面粉样品中的生物素含量在199-223ng / g的范围内,平均值为214ng / g。回收率在94-103%的范围内。具有出色的敏感性和良好的选择性,所提出的方法可以应用于各种生物流体,食品和药物分析中。

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