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Fluorescent carbon nanoparticle-based lateral flow biosensor for ultrasensitive detection of DNA

机译:基于荧光碳纳米粒子的侧向流动生物传感器,用于超声检测DNA

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摘要

We report a fluorescent carbon nanoparticle (FCN)-based lateral flow biosensor for ultrasensitive detection of DNA. Fluorescent carbon nanoparticle with a diameter of around 15 nm was used as a tag to label a detection DNA probe, which was complementary with the part of target DNA. A capture DNA probe was immobilized on the test zone of the lateral flow biosensor. Sandwich-type hybridization reactions among the FCN-labeled DNA probe, target DNA and capture DNA probe were performed on the lateral flow biosensor. In the presence of target DNA, FCNs were captured on the test zone of the biosensor and the fluorescent intensity of the captured FCNs was measured with a portable fluorescent reader. After systematic optimizations of experimental parameters (the components of running buffers, the concentration of detection DNA probe used in the preparation of FCN-DNA conjugates, the amount of FCN-DNA dispensed on the conjugate pad and the dispensing cycles of the capture DNA probes on the test-zone), the biosensor could detect a minimum concentration of 0.4 fM DNA. This study provides a rapid and low-cost approach for DNA detection with high sensitivity, showing great promise for clinical application and biomedical diagnosis.
机译:我们报告了荧光碳纳米粒子(FCN)的基于横向流动生物传感器,用于DNA的超细检测。用直径约为15nm的荧光碳纳米粒子用作标签以标记检测DNA探针,其与靶DNA的一部分互补。将捕获DNA探针固定在横向流体生物传感器的测试区上。在横向流动生物传感器上进行FCN标记的DNA探针,靶DNA和捕获DNA探针的夹层型杂交反应。在存在靶DNA的情况下,在生物传感器的测试区上捕获FCN,用便携式荧光读卡器测量捕获的FCN的荧光强度。经过系统优化实验参数(运行缓冲液的组分,用于制备FCN-DNA缀合物的检测DNA探针的浓度,分配在缀合物垫上的FCN-DNA的量和捕获DNA探针的分配循环测试区),生物传感器可以检测最小浓度为0.4 fm DNA。该研究提供了一种快速和低成本的方法,可用于高灵敏度的DNA检测,对临床应用和生物医学诊断表现出良好的希望。

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