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Introduction of nanogold-DAB as a HRP substrate for simplifying detection in visual DNA microarrays

机译:引入纳米金-DAB作为HRP底物,以简化视觉DNA微阵列中的检测

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Tyramine signal amplification, coupled with a gold-label silver stain (TSA-GLSS), has been demonstrated to be a sensitive visual assay for DNA microarrays. However, the procedure is laborious and time-consuming as nanogold particles do not accumulate directly in the vicinity of horseradish peroxidase (HRP). Instead, nanogold particles must accumulate through two procedures, including biotin-tyramine deposition via HRP catalysis and specific binding of biotin and streptavidin, followed by the introduction of streptavidin-nanogold. These conditions restrict this method's utility in DNA microarray detection. In the present study, nanogold was covalently linked to 3,3'-diaminobenzidine (DAB) to form a conjugate for the detection of Salmonella typhi. DAB can be oxidized by H2O2 and thus accumulate nanogold-DAB via HRP catalysis, leading to direct nanogold deposition. The results indicated that the detection limit of nanogold-DAB assay reached 10~3 CFU mL~(-1), which was comparable with that of TSA-GLSS. As one incubation step was omitted and the silver-staining time greatly shortened, this nanogold-DAB assay was more convenient than TSA-GLSS and offers great potential in detecting low concentrations of target DNA.
机译:酪胺信号放大与金标银染(TSA-GLSS)结合已被证明是对DNA微阵列的灵敏视觉检测。但是,由于纳米金颗粒不会直接在辣根过氧化物酶(HRP)附近堆积,因此该过程既费力又费时。取而代之的是,纳米金颗粒必须通过两种程序来积累,包括通过HRP催化沉积生物素-酪胺以及生物素与链霉亲和素的特异性结合,然后引入链霉亲和素-纳米金。这些条件限制了该方法在DNA微阵列检测中的效用。在本研究中,纳米金与3,3'-二氨基联苯胺(DAB)共价连接以形成用于检测伤寒沙门氏菌的结合物。 DAB可以被H2O2氧化,从而通过HRP催化积累纳米金DAB,从而导致直接的纳米金沉积。结果表明,纳米金-DAB法的检出限达到10〜3 CFU mL〜(-1),与TSA-GLSS相当。由于省去了一个孵育步骤,并且大大缩短了银染时间,因此这种纳米金-DAB分析比TSA-GLSS更方便,在检测低浓度目标DNA方面具有巨大潜力。

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