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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Ultrasensitive sensing of Androctonus australis hector scorpion venom toxins in biological fluids using an electrochemical graphene quantum dots/nanobody-based platform
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Ultrasensitive sensing of Androctonus australis hector scorpion venom toxins in biological fluids using an electrochemical graphene quantum dots/nanobody-based platform

机译:使用电化学石墨烯量子点/纳米育植物平台在生物流体中的androctonus Zontor蝎毒液毒素的超声感测

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摘要

Rapid and sensitive detection of low levels of scorpion venom toxins in biological fluids is of tremendous importance for decision-taking in cases of envenomation by scorpions stings. In Tunisia, at least 1200 severe envenomation cases by Androctonus australis hector (Aah) scorpion stings were reported annually. In this work, we report on a novel electrochemical immuno-sandwich to detect the Aah50 toxic fraction within the Aah scorpion venom using the bispecific nanobody format specially designed to highly recognize and neutralize the two most toxic molecules in the AahG50 venom fraction (i.e. AahI and AahII toxins), graphene quantum dots (GQDs) constructed on the surface carbon screen-printed electrodes. Hydroquinone/H2O2/peroxidase system was used to amplify the current in order to achieve the detection of low levels of AahG50. Electrochemical studies revealed a high sensitivity toward the AahG50 with a sensitivity of 18.2 nA mL pg(-1]) and a picomolar limit of detection as low as 0.55 pg mL(-1). The platform exhibits very good metrological performances such as repeatability, reproducibility, selectivity and long storage stability. Matrix effect was found to be insignificant as demonstrated by assays performed in human blood serum and urine.
机译:在生物流体中的低水平蝎子毒素的快速和敏感的检测对于通过蝎子围栏的encenomation进行决策,这是巨大的重要性。在突尼斯,每年报告至少1200例澳大利亚州赫克托(AAH)蝎子王围栏的严重血鼓患者。在这项工作中,我们报告了一种新型电化学免疫三明治,以使用专门设计为高度识别和中和AAHG50毒液部分中的两个最有毒分子(即Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi和Aahi)中和Aahii毒素),在表面碳丝网印刷电极上构造的石墨烯量子点(GQD)。使用氢醌/ H 2 O 2 /过氧化物酶系统来扩增电流,以达到低水平AAHG50的检测。电化学研究揭示了朝向AAHG50的高灵敏度,其灵敏度为18.2纳mL pg(-1])和低至0.55pg ml(-1)的皮摩尔检测极限。该平台表现出非常良好的计量性能,例如可重复性,再现性,选择性和长储存稳定性。发现基质效应是微不足道的,如人体血清和尿液中的测定所证明。

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