Department of Biomolecular Engineering, Graduate School of Engineering, Nagoya University, Furo-cho, Chikusa, Nagoya, 464-8603, Japan.
Japan Science and Technology Agency (JST), Precursory Research for Embryonic Science and Technology (PRESTO), 4-1-8 Honcho, Kawaguchi, Saitama, 332-0012, Japan.
Anal Sci. 2021 Aug 10;37(8):1139-1145. doi: 10.2116/analsci.20P421. Epub 2021 Jan 22.
Since DNA analysis is the fundamental process for most applications in biomedical fields, capturing DNAs with high efficiency is important. Here, we used several oxide nanowire microfluidic devices to capture CpG-rich single-stranded DNAs (ssDNAs) in different pH solutions. All the oxide nanowires exhibited the highest capture efficiency around pH 7 with good capture efficiency shown by each metal oxide; ZnO/ZnO core/shell NWs (71.6%), ZnO/AlO core/shell NWs (86.3%) and ZnO/SiO core/shell NWs (86.7%). ZnO/AlO core/shell NWs showed the best performance for capturing ssDNAs under varying pH, which suggests its suitability for application in diverse biological fluids. The capturing efficiencies were attributed to the interactions from phosphate backbones and nucleobases of ssDNAs to each nanowire surface. This finding provides a useful platform for highly efficient capture of the target ssDNAs, and these results can be extended for future studies of cancer-related genes in complex biological fluids.
由于 DNA 分析是生物医学领域大多数应用的基础过程,因此高效地捕获 DNA 非常重要。在这里,我们使用了几种氧化物纳米线微流控装置,在不同 pH 值的溶液中捕获富含 CpG 的单链 DNA(ssDNA)。所有的氧化物纳米线在 pH 值为 7 左右时表现出最高的捕获效率,每种金属氧化物都表现出良好的捕获效率;ZnO/ZnO 核/壳 NWs(71.6%)、ZnO/AlO 核/壳 NWs(86.3%)和 ZnO/SiO 核/壳 NWs(86.7%)。ZnO/AlO 核/壳 NWs 在不同 pH 值下表现出最佳的 ssDNA 捕获性能,这表明它适用于不同生物流体中的应用。捕获效率归因于 ssDNA 的磷酸骨架和碱基与每个纳米线表面的相互作用。这一发现为高效捕获目标 ssDNA 提供了一个有用的平台,这些结果可以扩展到未来在复杂生物流体中研究癌症相关基因的研究。