Department of Chemistry, National Taiwan Normal University, Taipei 116, Taiwan.
Nanotechnology. 2011 Apr 15;22(15):155102. doi: 10.1088/0957-4484/22/15/155102. Epub 2011 Mar 10.
We have developed a new technique using fluorescent silica nanotubes for simple and sensitive DNA detection. The quantum-dot-embedded silica nanotubes (QD-SNTs) were fabricated by a sol-gel reaction using anodic aluminum silica oxide (AAO) as a template. The fluorescent QD-SNTs of different colors were then immobilized with single-stranded DNA and used as nanoprobes for DNA detection. The optical and structural properties of QD-SNT nanoprobes were examined using photoluminescence spectroscopy, confocal microscopy and transmission electron microscopy (TEM). The QD-SNT nanoprobes were applied to detect dye-labeled target DNA in a solution phase. The obvious color change of the QD-SNT nanoprobes was observed visually under a simple microscope after the successful detection with target DNA. The quantitative analyses indicated that ∼ 100 attomole of target DNA in one nanoprobe can generate a distinguishable and observable color change. The detection results also demonstrated that our assay exhibited high specificity, high selectivity and very low nonspecific adsorption. Our simple DNA assay based on QD-SNT nanoprobes is expected to be quite useful for the needs of fast DNA screening and detection applications.
我们开发了一种使用荧光硅纳米管进行简单灵敏 DNA 检测的新技术。量子点嵌入硅纳米管(QD-SNTs)是通过使用阳极氧化铝氧化硅(AAO)作为模板的溶胶-凝胶反应制备的。然后将不同颜色的荧光 QD-SNTs 固定在单链 DNA 上,并用作 DNA 检测的纳米探针。使用荧光光谱法、共聚焦显微镜和透射电子显微镜(TEM)检查了 QD-SNT 纳米探针的光学和结构特性。QD-SNT 纳米探针被应用于检测溶液相中染料标记的靶 DNA。在用靶 DNA 成功检测后,在简单的显微镜下可以观察到 QD-SNT 纳米探针的明显颜色变化。定量分析表明,一个纳米探针中约 100 个皮摩尔的靶 DNA 可以产生可区分和可观察到的颜色变化。检测结果还表明,我们的测定法表现出高特异性、高选择性和非常低的非特异性吸附。我们基于 QD-SNT 纳米探针的简单 DNA 测定法有望非常适用于快速 DNA 筛选和检测应用的需求。