首页> 外文期刊>Analytica chimica acta >A homogeneous hemin/G-quadruplex DNAzyme based turn-on chemiluminescence aptasensor for interferon-gamma detection via in-situ assembly of luminol functionalized gold nanoparticles, deoxyribonucleic acid, interferon-gamma and hemin
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A homogeneous hemin/G-quadruplex DNAzyme based turn-on chemiluminescence aptasensor for interferon-gamma detection via in-situ assembly of luminol functionalized gold nanoparticles, deoxyribonucleic acid, interferon-gamma and hemin

机译:基于均一的以血红素/ G-四链体DNA酶为基础的开启化学发光适体传感器,用于通过鲁米诺功能化的金纳米粒子,脱氧核糖核酸,干扰素-γ和血红素的原位组装来检测干扰素-γ

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摘要

A homogeneous hemin/G-quadruplex DNAzyme (HGDNAzyme) based turn-on chemiluminescence aptasensor for interferon-gamma (IFN-γ) detection is developed, via dynamic in-situ assembly of luminol functionalized gold nanoparticles (lum-AuNPs), DNA, IFN-γ and hemin. The G-quadruplex oligomer of the HGDNAzyme was split into two halves, which was connected with the complementary sequence of PI (IFN-γ-binding aptamer) to form the oligonucleotide P2. P2 hybridized with IFN-γ-binding aptamer and meanwhile assembled onto lum-AuNPs through biotin-streptavidin specific interaction. When IFN-γ was recognized by aptamer, P2 was released into the solution. The two lateral portions of P2 combined with hemin to yield the catalytic hemin/G-quadruplex DNAzyme, which amplified the luminol oxidation for a turn-on chemiluminescence signaling. Based on this strategy, the homogeneous aptasensor enables the facile detection of IFN-γ in a range of 0.5-100 nM. Moreover, the aptasensor showed high sensitivity (0.4 nM) and satisfactory specificity, pointing to great potential applications in clinical analysis.
机译:通过氨基甲酸酯功能化的金纳米粒子(lum-AuNPs),DNA,IFN的动态原位组装,开发了基于均质的Hemin / G四联DNAzyme(HGDNAzyme)的开启化学发光适体传感器,用于干扰素-γ(IFN-γ)检测。 -γ和血红素。将HGDNAzyme的G-四链体寡聚物分成两半,其与PI(IFN-γ-结合适体)的互补序列连接以形成寡核苷酸P2。 P2与IFN-γ结合适体杂交,同时通过生物素-链霉亲和素特异性相互作用组装在lum-AuNPs上。当IFN-γ被适体识别时,P2释放到溶液中。 P2的两个侧面部分与血红素结合产生催化性的血红素/ G-四链体DNA酶,该酶放大了鲁米诺的氧化作用,从而开启化学发光信号。基于此策略,均质适体传感器可在0.5-100 nM的范围内轻松检测IFN-γ。此外,适体传感器显示出高灵敏度(0.4 nM)和令人满意的特异性,指出在临床分析中有巨大的潜在应用。

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