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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Biomimetic graphene oxide-cationic multi-shaped gold nanoparticle-hemin hybrid nanozyme: Tuning enhanced catalytic activity for the rapid colorimetric apta-biosensing of amphetamine-type stimulants
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Biomimetic graphene oxide-cationic multi-shaped gold nanoparticle-hemin hybrid nanozyme: Tuning enhanced catalytic activity for the rapid colorimetric apta-biosensing of amphetamine-type stimulants

机译:仿生石墨烯氧化物多形金纳米颗粒 - 血红制含纳佐:调整催化活性的增强催化活性,用于快速比色氨酸型兴奋剂 - 生物溶剂

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Amphetamine-type stimulants are a class of illicit drug that constitutes a worldwide problem to which intelligence agencies, first responders and law enforcement are tasked with identifying them in unknown samples. We report on the development of a graphene oxide (GO)-cationic multi-shaped gold nanoparticle (AuNP)-hemin hybrid nanozyme as a new biomimetic catalytic-induced aptamer-based colorimetric biosensor platform for amphetamine (AMP) and methamphetamine (MAMP). GO was electrostatically bonded to cationic multi-shaped cetyltrimethylammonium bromide (CTAB)-AuNPs to form a GO-CTAB-AuNP hybrid nanozyme exhibiting enhanced catalytic activity in the presence of hemin. The binding of an MNS 4.1 anticocaine DNA aptamer on the GO-CTAB-AuNP-hemin nanozyme assembly and the subsequent catalytic oxidation by 3,3,5,5-tetramethylbenzidine in the presence of H2O2 ensured that the colorimetric reaction was tuned to selectively detect AMP and MAMP with high sensitivity. Under optimum experimental conditions, AMP and MAMP were quantitatively detected within 1 min with a detection limit of 34.1 ng/mL and 28.6 ng/mL respectively. Selected substances and drugs, known to react positively to Marquis and Mandelin reagents (used in AMP and MAMP presumptive testing) and well-known adulterants, were tested for their affinity to react with the aptamer-based GO-CTAB-AuNP-hemin peroxidase mimic biosensor. The deep blue colorimetric reaction, specific to AMP and MAMP detection, was used as the basis to affirm the selectivity of the aptamer-based GO-CTAB-AuNP-hemin peroxidase mimic biosensor. We believe the colorimetric biosensor developed in this work demonstrates a promising new direction in presumptive testing for AMP and MAMP.
机译:Amphetamine型兴奋剂是一类非法药物,构成了一个智力机构,首先响应者和执法部门的全球问题,该问题是在未知样本中识别它们。我们报告了石墨烯(GO) - 固化多形金纳米粒子(AUNP) - 磷杂交纳米型作为新的仿生物催化诱导的基于Amphetam(AMP)和甲基苯丙胺(MAMP)的基于仿生催化诱导的基于Aptamer的比色活体平台。将静电键合到阳离子多形甲酰基三硫铵(CTAB)-aUnps,形成血红素存在下表现出增强的催化活性的Go-ctab-aUnp杂化纳米亚沸点。在H 2 O 2存在下通过3,3,5,5-四甲基苯胺在Go-ctab-auanp-inmin纳米酶组件和随后的催化氧化中的结合确保调整比色反应选择性地检测amp和mamp具有高灵敏度。在最佳实验条件下,在1分钟内定量检测到AMP和MAMP,检测限为34.1ng / ml和28.6ng / ml。已知对侯爵和曼德林试剂(用于AMP和MAMP试验检测)和众所周知的掺杂剂反应的选定物质和药物被测试以与基于适体的Go-ctab-aUnp-zhin过氧化物酶模仿反应的亲和力生物传感器。用于抑制AMP和MAMP检测的深蓝色比色反应作为确认基于Aptamer的Go-Ctab-AuNP-zhiN-血红素过氧化物酶模拟生物传感器的选择性的基础。我们认为,在这项工作中开发的比色生物传感器展示了对AMP和MAMP的推定测试中的有希望的新方向。

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