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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Applying strand displacement amplification to quantum dots-based fluorescent lateral flow assay strips for HIV-DNA detection
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Applying strand displacement amplification to quantum dots-based fluorescent lateral flow assay strips for HIV-DNA detection

机译:将链位移扩增对量子点的荧光横向流动测定条用于HIV-DNA检测

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Up to now, the colloidal gold labeling immunochromatographic test strip is a mature and applicable technology. However, different from the conventional gold nanoparticle, quantum dot (QD) possesses larger specific surface area and better biocompatibility. So, as a novel nanomaterial, QD is capable of assembling more biomolecule which could enhance the sensitivity and accuracy of strips by rationality. Besides, strand displacement amplification was drawn into our test strips in this paper, this assumption made HIV-DNA recycling many times and converting it to plentiful QD-dsDNA (double-stranded deoxyribonucleic acid), where after these nano-structures would be captured by test zone. Meanwhile, the suggested scheme eliminated the hook effect owing to the target drop out of the incorporation on test zone, and any nucleotide sequence or substance which has aptamers can work as the target, such as carcinoembryonic antigen or mycotoxin. This assay realized the detection limit of as low as 0.76 pM (S/N = 3) and the detection range of 1 pM to 10 nM. In the end, we made use of this fluorescent lateral flow assay strips with great reproducibility for detecting HIV-DNA in human serum, that attested this method could be applied to practical application prospectively.
机译:到目前为止,胶体金标记免疫层析试验条是成熟和适用的技术。然而,与传统的金纳米颗粒不同,量子点(QD)具有较大的比表面积和更好的生物相容性。因此,作为一种新型纳米材料,QD能够组装更多的生物分子,其可以通过合理性增强条带的灵敏度和准确性。此外,在本文中,将链位移扩增拉伸到我们的测试条中,本假设使HIV-DNA多次再循环并将其转化为丰富的QD-DSDNA(双链脱氧核酸),其中在这些纳米结构将被捕获之后测试区。同时,建议方案消除了由于掺入测试区的目标缺失的钩效,并且具有适体的任何核苷酸序列或物质可以作为靶标,例如甲基丙烯醛或霉菌毒素。该测定实现了低至0.76μm(s / n = 3)的检出限,检测范围为1pm至10nm。最后,我们利用这种荧光横向流动测定条带具有较大的再现性,用于检测人血清中的HIV-DNA,证明了该方法可前瞻性地应用于实际应用。

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