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Inherently electroactive graphene oxide nanoplatelets as labels for single nucleotide polymorphism detection

机译:固有的电活性氧化石墨烯纳米片作为单核苷酸多态性检测的标记

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摘要

Graphene materials are being widely used in electrochemistry due to their versatility and excellent properties as platforms for biosensing. However, no records show the use of inherent redox properties of graphene oxide as a label for detection. Here for the first time we used graphene oxide nanoplatelets (GONPs) as electroactive labels for DNA analysis. The working signal comes from the reduction of the oxygen-containing groups present on the surface of GONPs. The different ability of the graphene oxide nanoplatelets to conjugate to DNA hybrids obtained with complementary, noncomplementary, and one-mismatch sequences allows the discrimination of single-nucleotide polymorphism correlated with Alzheimer's disease. We believe that our findings are very important to open a new route in the use of graphene oxide in electrochemistry.
机译:石墨烯材料因其多功能性和作为生物传感平台的优异性能而被广泛用于电化学。但是,没有记录显示使用氧化石墨烯固有的氧化还原特性作为检测标记。在这里,我们第一次使用氧化石墨烯纳米片(GONP)作为DNA分析的电活性标记。工作信号来自GONP表面上存在的含氧基团的还原。氧化石墨烯纳米血小板与通过互补,非互补和一个错配序列获得的DNA杂合物的缀合能力不同,因此可以区分与阿尔茨海默氏病相关的单核苷酸多态性。我们相信我们的发现对于在电化学中使用氧化石墨烯开辟一条新途径非常重要。

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