首页> 外文期刊>Science and technology of advanced materials >Accumulation of amplified target DNAs using thiol/biotin labeling, S1 nuclease, and ferrocene–streptavidin–magnetic system and a direct detection of specific DNA signals with screen printed gold electrode
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Accumulation of amplified target DNAs using thiol/biotin labeling, S1 nuclease, and ferrocene–streptavidin–magnetic system and a direct detection of specific DNA signals with screen printed gold electrode

机译:使用硫醇/生物素标记,S1核酸酶和二茂铁–链霉亲和素–磁性系统积累扩增的靶DNA,并通过丝网印刷金电极直接检测特定DNA信号

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Combinations of PCR-based amplification platform using 5' thiolated and biotinylated specific primers, S1 nuclease–PCR products treatment, ferrocene–streptavidin (Fc–Stv)–magnetic binding for DNA accumulation, and screen printed gold electrode for the DNA allocation, were applied to Hoechst 33258-induced DNA aggregation and signals induction system for direct signals detection and DNA quantification in food samples. Thiolated and biotinylated at each 5' terminus enabled DNA purification through S1 nuclease treatment for primers and non-specific DNA elimination and enabled DNA trapping with a ferrocene–streptavidin–magnetic system. This facilitated the accumulation of target DNAs at higher concentration, resulting in enhanced signals. After allocation of DNA on the surface of gold electrode via thiol binding, intensity of DNA signals through these treatments could be measured directly after being induced by Hoechst 33258. Wider amplitude changes in anodic current peaks between negative and positive samples (increasing from 3.70 to 10.10?μA) compared with those applied with no treatment combinations (decreasing from 3.92 to 1.23?μA) were observed. This enhancement of the signals allowed a greater efficiency of DNA quantification. When this combination was used for GMOs content estimation in reference samples, results revealed an improved accuracy from 66% to 96%. The combined biosensor system, although more costly than the standard Hoechst 33258/carbon electrode system, provided an alternative choice for DNA quantification, offering labor-free immobilization of probe onto electrode surface, easy test administration, and efficient semi-quantitative test without expensive instruments.
机译:应用了基于PCR的扩增平台的组合,该平台使用了5'硫醇化和生物素化的特异性引物,S1核酸酶-PCR产物处理,二茂铁-链霉亲和素(Fc-Stv)-磁性结合物进行DNA积累,并采用丝网印刷金电极进行DNA分配。基于Hoechst 33258诱导的DNA聚集和信号诱导系统,可直接检测食品样品中的信号并进行DNA定量。在每个5'末端进行巯基化和生物素化处理,可通过S1核酸酶处理引物和非特异性DNA消除进行DNA纯化,并利用二茂铁-链霉亲和素-磁性系统捕获DNA。这促进了靶DNA在更高浓度下的积累,导致信号增强。通过硫醇结合将DNA分配到金电极表面后,可以通过Hoechst 33258诱导后直接测量通过这些处理产生的DNA信号强度。负极和正极样品之间阳极电流峰的幅度变化更大(从3.70增至10.10。观察到与未使用任何治疗组合的情况相比(?μA)(从3.92μA降至1.23μA)。信号的这种增强允许更高的DNA定量效率。当此组合用于参考样品中的GMO含量估算时,结果显示准确性从66%提高到96%。组合的生物传感器系统虽然比标准的Hoechst 33258 /碳电极系统贵,但为DNA定量提供了另一种选择,可将探针免于劳损地固定在电极表面,易于管理,无需昂贵的仪器即可进行有效的半定量测试。

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