首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Electrochemical detection of individual single nucleotide polymorphisms using monobase-modified apoferritin-encapsulated nanoparticles
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Electrochemical detection of individual single nucleotide polymorphisms using monobase-modified apoferritin-encapsulated nanoparticles

机译:使用单碱基修饰的载铁蛋白包封的纳米颗粒的电化学检测单个单核苷酸多态性

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摘要

An electrochemical approach for detection of individual single nucleotide polymorphisms (SNPs) based on nucleobase-conjugated apoferritin probe loaded with metal phosphate nanoparticles is reported. Coupling of the nucleotide-modified nanoparticle probe to the mutant sites of duplex DNA was induced by DNA polymerase I (Klenow fragment) to preserve Watson-Crick base-pairing rules. After sequential liquid hybridization of biotinylated DNA probes with mutant DNA and complementary DNA, the resulting duplex DNA helixes were captured to the surface of magnetic beads through a well known and specific biotin-streptavidin affinity binding. For signaling each of eight possible Single-nucleotide polymorphisms (SNPs), Pb, Cu, Cd and Zn phosphate-loaded apoferritin nanoparticle probes were linked to adenosine (A), cytidine (C), guanosine (G), and thymidine (T) mononucleotides, respectively. Monobase-conjugated apoferritin probes were coupled to the mutant sites of the formed duplex DNA in the presence of DNA polymerase. Electrochemical stripping analyses of the metals loaded in apoferritin nanoparticle probes provide a means for detection and quantification of mutant DNA. Each mutation captures different nucleotide-conjugated apoferritin probe and provide a distinct four-potential voltammogram, whose peak potentials reflect the identity of the mismatch. The method is sensitive enough to accurately determine AG mutation, as the most thermodynamically stable mismatch to detect, in the range of 50-600. pM. The proposed protocol provides a simple, fast, cost-effective, accurate and sensitive method for detection of SNPs.
机译:报道了一种基于载有金属磷酸盐纳米颗粒的核碱基缀合的脱铁铁蛋白探针的用于检测单个单核苷酸多态性(SNP)的电化学方法。 DNA聚合酶I(Klenow片段)诱导核苷酸修饰的纳米粒子探针与双链体DNA突变位点的偶联,以保留Watson-Crick碱基配对规则。在生物素化的DNA探针与突变DNA和互补DNA进行顺序液体杂交后,通过众所周知的特异性生物素-链霉亲和素亲和结合将所得的双链DNA螺旋捕获到磁珠表面。为了信号传递八种可能的单核苷酸多态性(SNP),将载有铅,铜,镉和磷酸锌的载铁铁蛋白纳米颗粒探针与腺苷(A),胞苷(C),鸟苷(G)和胸苷(T)连接单核苷酸。在DNA聚合酶存在下,将单碱基缀合的脱铁铁蛋白探针偶联至形成的双链DNA的突变位点。载铁铁蛋白纳米颗粒探针中金属的电化学剥离分析提供了一种检测和定量突变DNA的方法。每个突变捕获不同的核苷酸偶联的脱铁铁蛋白探针,并提供不同的四电位伏安图,其峰值电位反映了错配的身份。该方法足够灵敏,可以准确确定AG突变,这是要检测到的最热力学最稳定的错配,范围是50-600。下午。所提出的协议提供了一种简单,快速,具有成本效益,准确和灵敏的方法来检测SNP。

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