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首页> 外文期刊>Analytical and bioanalytical chemistry >A label-free method for the detection of specific DNA sequences using gold nanoparticles bifunctionalized with a chemiluminescent reagent and a catalyst as signal reporters
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A label-free method for the detection of specific DNA sequences using gold nanoparticles bifunctionalized with a chemiluminescent reagent and a catalyst as signal reporters

机译:使用化学发光试剂和催化剂双官能化的金纳米颗粒作为信号报告基因的无标记方法,用于检测特定的DNA序列

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摘要

Sensitive, specific, simple, fast, and low-cost DNA detection methods are extremely important in clinical diagnostics, gene therapy, and a variety of biomedical studies. In this work, we developed a general method for the detection of specific DNA sequences from Mycobacterium tuberculosis (TB), hepatitis B virus (HBV), and myelocytomatosis viral oncogene (v-myc) using gold nanoparticles bifunctionalized with both a chemiluminescent (CL) reagent and a catalytic metal complex as signal reporters and a DNA strand complementary to the target as the capture probe. In this CL method, a biotinylated single-strand DNA capture probe was immobilized in a streptavidin-coated microwell. Upon the addition of the target single-strand DNA, the capture probe hybridized with the target DNA. After adding the bifunctionalized gold nanoparticles and H2O2, a well-defined CL signal was obtained, and the CL intensity was observed to change as the target DNA concentration was increased. It was possible to determine the concentration of the target TB single-strand DNA in the range 1.0 x 10(-13)-1.0 x 10(-8) M with a detection limit of 4.8 x 10(-14) M. HBV single-strand DNA and v-myc single-strand DNA could also be determined in the range 1.0 x 10(-11)-1.0 x 10(-8) M with detection limits of 5.9 x 10(-12) M and 8.0 x 10(-12) M, respectively, using this CL technique. The method reported in this paper is the first label-free CL method for the determination of specific DNA sequences to utilize gold nanoparticles bifunctionalized with both a CL reagent and a catalytic metal complex. The sensitivity of this CL method is superior to those of most previously reported label-free methods. Compared with methods that use polymerase chain reaction amplification, this label-free CL method is much simpler, faster, and more economic. This work has thus demonstrated a simple and fast scanning strategy for the detection of specific DNA sequences related to diseases.
机译:灵敏,特异性,简单,快速和低成本的DNA检测方法在临床诊断,基因治疗和各种生物医学研究中极为重要。在这项工作中,我们开发了一种通用的方法,该方法使用同时被化学发光(CL)双重功能化的金纳米颗粒,检测结核分枝杆菌(TB),乙型肝炎病毒(HBV)和骨髓瘤病病毒致癌基因(v-myc)中的特定DNA序列。试剂和催化金属络合物作为信号报告剂,与靶标互补的DNA链作为捕获探针。在这种CL方法中,将生物素化的单链DNA捕获探针固定在链霉亲和素包被的微孔中。加入靶单链DNA后,捕获探针与靶DNA杂交。加入双功能金纳米颗粒和H2O2后,获得了清晰的CL信号,并且观察到CL强度随目标DNA浓度的增加而变化。可以在1.0 x 10(-13)-1.0 x 10(-8)M的范围内确定目标TB单链DNA的浓度,检测限为4.8 x 10(-14)M。还可以在1.0 x 10(-11)-1.0 x 10(-8)M的范围内确定单链DNA和v-myc单链DNA,检测限为5.9 x 10(-12)M和8.0 x 10 (-12)M,分别使用此CL技术。本文报道的方法是第一种无标记的CL方法,用于确定特定的DNA序列,以利用同时被CL试剂和催化金属络合物双功能化的金纳米颗粒。这种CL方法的灵敏度优于以前报道的大多数无标记方法。与使用聚合酶链反应扩增的方法相比,这种无标记的CL方法更加简单,快速且经济。因此,这项工作证明了一种简单,快速的扫描策略,可用于检测与疾病相关的特定DNA序列。

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