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Metal-organic frameworks-based biosensor for sequence-specific recognition of double-stranded DNA

机译:基于金属有机框架的生物传感器,用于序列特异性识别双链DNA

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A simple, cost-efficient, sensitive and selective fluorescence sensor is developed for sequence-specific recognition of duplex DNA (ds-DNA) in vitro using metal-organic framework (MOF) as the sensing platform. N,N-Bis(2-hydroxy-ethyl)dithiooxamidatocopper(ii) (H_2dtoaCu) was chosen as the example MOF, because it strongly chemisorbs the dye-labeled probe TFO (triplex-forming oligonucleotide), and quenches fluorescence from the dye. In the presence of target ds-DNA (the PPT of HIV RNA, a 16-bp ds-DNA sequence), the TFO could interact with the major groove in ds-DNA (via Hoogsteen hydrogen bonding) to form a rigid triplex structure, resulting in fluorescence recovery. The enhanced fluorescence signal has a relationship with the ds-DNA concentration, the detection limit is as low as 1.3 nmol L~(-1) (S/N = 3) with good selectivity, which is lower than that based on a graphene oxide platform and electrochemical-DNA sensor.
机译:开发了一种简单,经济高效,灵敏且选择性的荧光传感器,用于在体外使用金属有机框架(MOF)作为传感平台对双链DNA(ds-DNA)进行序列特异性识别。选择N,N-双(2-羟基-乙基)二硫代肟基铜(ii)(H_2dtoaCu)作为示例MOF,因为它强烈地化学吸附染料标记的探针TFO(形成三链体的寡核苷酸),并猝灭染料的荧光。在存在目标ds-DNA(HIV RNA的PPT,一个16 bp ds-DNA序列)的情况下,TFO可以与ds-DNA的主要凹槽相互作用(通过Hoogsteen氢键),形成刚性的三链体结构导致荧光恢复。增强的荧光信号与ds-DNA浓度有关,检出限低至1.3 nmol L〜(-1)(S / N = 3),选择性好,低于基于氧化石墨烯的检测限。平台和电化学DNA传感器。

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