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Preliminary Study of CdTe Quantum Dots Applied in DNA Sensors

机译:CdTe量子点在DNA传感器中的应用初步研究

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With the development of molecular biology and genetic technology, target DNA detection and transition of genetic information are becoming increasingly significant, and electrochemical biosensor gains many concerns in direct detection of target DNA due to the advantages, i.e. simple mechanism, reliable result, low-cost process, sensitive and selective method for genetic detection. a novel biosensing system was presented and investigated based on electrochemical and DNA techniques, and the nano-scale semiconductor CdTe quantum dots (QDs) was firstly introduced to sensing system to investigated its electrochemical effect and properties, the sensing probe with structure of gold electrode (AuE)-CdTe quantum dots (CdTe QDs)-gold nanoparticles (AuNPs)-single strand sensing probe (ssDNA) was fabricated with layer-by-layer self-assembly method. The electrochemical properties and sensing ability of the probes were characterized and determined via cyclic voltammetry (CV) method. Obvious differential redox peaks current were revealed when the fabricated AuE/CdTe QDs, AuE/CdTe QDs/AuNPs, and AuE/CdTe QDs/AuNPs/ssDNA was examine by CV method, respectively. The sensing probe showed high sensitivity and specificity when the complementary target DNA and the target DNA with one-base-mismatch were determined, respectively. The current results indicated that the fabricated DNA biosensor has great potentials in detecting special DNA sequences via DNA technology.
机译:随着分子生物学和遗传技术的发展,靶标DNA的检测和遗传信息的转移变得越来越重要,电化学生物传感器由于其机制简单,结果可靠,成本低等优点而直接用于靶标DNA的检测受到了广泛关注。遗传检测的过程,灵敏和选择性的方法。提出了一种基于电化学和DNA技术的新型生物传感系统,并对其进行了研究,并将纳米级半导体CdTe量子点(QDs)首次引入传感系统中以研究其电化学作用和性能。采用逐层自组装方法制备了AuE)-CdTe量子点(CdTe QDs)-金纳米颗粒(AuNPs)-单链传感探针(ssDNA)。通过循环伏安法(CV)对探针的电化学性质和检测能力进行了表征和测定。用CV法分别检查了制备的AuE / CdTe QDs,AuE / CdTe QDs / AuNPs和AuE / CdTe QDs / AuNPs / ssDNA有明显的差分氧化还原峰值电流。当分别确定互补靶DNA和具有一碱基不匹配的靶DNA时,传感探针显示出高灵敏度和特异性。目前的结果表明,所制备的DNA生物传感器具有通过DNA技术检测特殊DNA序列的巨大潜力。

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