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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Electrochemical determination of Salmonella typhimurium by using aptamer-loaded gold nanoparticles and a composite prepared from a metal-organic framework (type UiO-67) and graphene
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Electrochemical determination of Salmonella typhimurium by using aptamer-loaded gold nanoparticles and a composite prepared from a metal-organic framework (type UiO-67) and graphene

机译:使用适体负载的金纳米颗粒和由金属 - 有机骨架(型UIO-67)和石墨烯制备的复合材料来电化学法测定沙门氏菌毒蕈尿

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摘要

An aptamer based assay is described for the determination of Salmonella typhimurium (S.typhimurium). A metal-organic framework-graphene composite of type UiO-67/GR is used as the substrate, and an aptamer-gold nanoparticles-horseradish peroxidase (Apt-AuNP-HRP) conjugate the signal amplification probe. A phosphate-terminal and partially complementary DNA (cDNA) of the aptamer is covalently bound to UiO-67/GR via the chemical complexation between phosphate and Zr-OH groups of UiO-67, and then S. typhimurium and cDNA will compete for the binding sites. The binding of Apt-AuNP-HRP to S.typhimurium leads to the formation of strong conjugates. The unbound signal probes then attach to the surface of a glassy carbon electrode via hybridization with cDNA. This generates a large current response (best measured at a potential as low as -0.02 V vs. saturated calomel electrode) under the catalytic action of HRP on the H2O2-hydroquinone system. Under the optimal conditions, the differential pulse voltammetric signal decreases linearly in the 2 x 10(1) - 2 x 10(8) cfu center dot mL(-1) S.typhimurium concentration range, with a lower detection limit of 5 cfu center dot mL(-1) (based on S/N = 3). The method was successfully applied to the detection of S. typhimurium in spiked milk samples.
机译:基于适体的基于Aptamer的测定用于测定沙门氏菌(S.typhimurium)。 UIO-67 / GR型的金属 - 有机骨架 - 石墨烯复合物用作基材,Aptamer-Gold纳米颗粒 - 辣根过氧化物酶(APT-AUNP-HRP)共轭信号放大探针。 Aptamer的磷酸末端和部分互补的DNA(cDNA)通过UIO-67的磷酸盐和ZR-OH基团之间的化学络合共价结合到UIO-67 / GR中,然后S.血吸虫和cDNA将竞争绑定站点。 APT-AUNP-HRP与S.Typhimurium的结合导致强缀合物的形成。然后,未绑定信号探针通过用cDNA杂交附着到玻璃状碳电极的表面上。这在HRP对H2O2-氢醌系统的HRP的催化作用下产生大电流响应(在低至-0.02V与饱和卡米尔电极的电位下测量)。在最佳条件下,差分脉冲伏安信号在2×10(1) - 2×10(8)CFU中心点M1(-1)S.Typhimurium浓度范围内线性降低,检测限为5 CFU中心点m1(-1)(基于s / n = 3)。该方法已成功应用于尖刺牛奶样品中的伤寒伤寒蕈类的检测。

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