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Detection of single-molecule DNA hybridization by using dual-color total internal reflection fluorescence microscopy

机译:双色全内反射荧光显微镜检测单分子DNA杂交

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We examined the use of prism-type simultaneous dual-color total internal reflection fluorescence microscopy (TIRFM) to probe DNA molecules at the single-molecule level. The system allowed the direct detection of the complementary interactions between single-stranded probe DNA molecules (16-mer) and various lengths of single-stranded target DNA molecules (16-mer and 55-mer) that had been labeled with different fluorescent dyes (Cy3, Cy5, and fluorescein). The polymer-modified glass substrate and the extent of DNA probe immobilization were easily characterized either with standard TIRFM or with atomic force microscopy. However, only dual-color TIRFM could provide unambiguous images of individual single-stranded target DNA molecules hybridized with the correct sequence in the range of fM–aM. Succinic anhydride showed low RMS roughness and was found to be an optimal blocking reagent against non-specific adsorption, with an efficiency of 92%. This study provides a benchmark for directly monitoring the interactions and the detection of co-localization of two different DNA molecules and can be applied to the development of a nanoarray biochip at the single-molecule level.
机译:我们检查了使用棱镜型同时双色全内反射荧光显微镜(TIRFM)来探测单分子水平的DNA分子。该系统可以直接检测单链探针DNA分子(16-mer)与已用不同荧光染料标记的各种长度的单链靶DNA分子(16-mer和55-mer)之间的互补相互作用。 Cy3,Cy5和荧光素)。用标准的TIRFM或原子力显微镜很容易地表征聚合物改性的玻璃基板和DNA探针固定的程度。但是,只有双色TIRFM才能提供与fM–aM范围内的正确序列杂交的单个单链靶DNA分子的清晰图像。琥珀酸酐显示出较低的RMS粗糙度,被发现是对抗非特异性吸附的最佳封闭剂,效率为92%。这项研究为直接监测两种不同DNA分子的相互作用和共定位提供了基准,并可用于单分子水平的纳米阵列生物芯片的开发。

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