首页> 外文会议>2014 IEEE Conference on Biomedical Engineering and Sciences >Rapid and sensitive strategy for Human Papillomavirus (HPV) detection using a gene-based DNA nanobiosensor
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Rapid and sensitive strategy for Human Papillomavirus (HPV) detection using a gene-based DNA nanobiosensor

机译:使用基于基因的DNA纳米生物传感器检测人乳头瘤病毒(HPV)的快速灵敏策略

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Human Papillomavirus (HPV) is the most common sexually transmitted virus that infected to human. The most common high-risk HPV are 16 and 18. Most 70% of cervical cancers (CC) are due to infection by these genotypes. A rapid and sensitive strategy for the detection of Human Papillomavirus (HPV) was proposed by integrating simple DNA extraction with gene-based DNA nanobiosensor. DNA nanochip is a powerful tool allowing detection HPV target molecules present in a sample. The efficiency of DNA nanochip depends mainly on the sequence of the capture probes and the way they are attached to the support. The coupling procedure must be quick, covalent, and reproducible. The fabrication, immobilization and hybridization processes were characterized with current voltage (I-V) characterization (KEITHLEY, 6487). This strategy presented a simple, rapid and sensitive platform for HPV detection and would become a powerful tool for pathogenic microorganisms screening in clinical diagnosis.
机译:人乳头瘤病毒(HPV)是感染人类的​​最常见的性传播病毒。最常见的高危HPV是16和18。大多数70%的宫颈癌(CC)归因于这些基因型的感染。通过将简单的DNA提取与基于基因的DNA纳米生物传感器相结合,提出了一种快速灵敏的人类乳头瘤病毒(HPV)检测策略。 DNA纳米芯片是一种强大的工具,可以检测样品中存在的HPV目标分子。 DNA纳米芯片的效率主要取决于捕获探针的序列及其与支持物的连接方式。偶联过程必须快速,共价且可重现。制备,固定和杂交过程用电流电压(IV)表征(KEITHLEY,6487)。该策略为HPV检测提供了一个简单,快速和灵敏的平台,并将成为临床诊断中病原微生物筛选的强大工具。

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