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用于循环核酸单分子水平检测与纯化的纳米多孔生物相容性膜内的超高密度3D DNA阵列。

Ultra-high-density 3D DNA arrays within nanoporous biocompatible membranes for single-molecule-level detection and purification of circulating nucleic acids.

作者信息

Aramesh M, Shimoni O, Fox K, Karle T J, Lohrmann A, Ostrikov K, Prawer S, Cervenka J

机构信息

School of Physics, The University of Melbourne, Melbourne, Victoria 3010, Australia.

出版信息

Nanoscale. 2015 Apr 14;7(14):5998-6006. doi: 10.1039/c4nr07351g.

Abstract

Extracellular nucleic acids freely circulating in blood and other physiologic fluids are important biomarkers for non-invasive diagnostics and early detection of cancer and other diseases, yet difficult to detect because they exist in very low concentrations and large volumes. Here we demonstrate a new broad-range sensor platform for ultrasensitive and selective detection of circulating DNA down to the single-molecule level. The biosensor is based on a chemically functionalized nanoporous diamond-like carbon (DLC) coated alumina membrane. The few nanometer-thick, yet perfect and continuous DLC-coating confers the chemical stability and biocompatibility of the sensor, allowing its direct application in biological conditions. The selective detection is based on complementary hybridization of a fluorescently-tagged circulating cancer oncomarker (a 21-mer nucleic acid) with covalently immobilized DNA on the surface of the membrane. The captured DNAs are detected in the nanoporous structure of the sensor using confocal scanning laser microscopy. The flow-through membrane sensor demonstrates broad-range sensitivity, spanning from 10(15) molecules per cm(2) down to single molecules, which is several orders of magnitude improvement compared to the flat DNA microarrays. Our study suggests that these flow-through type nanoporous sensors represent a new powerful platform for large volume sampling and ultrasensitive detection of different chemical biomarkers.

摘要

在血液和其他生理流体中自由循环的细胞外核酸是用于癌症和其他疾病的非侵入性诊断及早期检测的重要生物标志物,但由于它们以极低的浓度存在于大量的流体中,因此难以检测。在此,我们展示了一种新型的宽范围传感器平台,用于超灵敏且选择性地检测循环DNA,检测下限可达单分子水平。该生物传感器基于化学功能化的纳米多孔类金刚石碳(DLC)涂层氧化铝膜。仅几纳米厚但完美且连续的DLC涂层赋予了传感器化学稳定性和生物相容性,使其能够直接应用于生物环境中。选择性检测基于荧光标记的循环癌肿瘤标志物(一种21聚体核酸)与膜表面共价固定的DNA的互补杂交。利用共聚焦扫描激光显微镜在传感器的纳米多孔结构中检测捕获的DNA。这种流通式膜传感器展示了宽范围的灵敏度,从每平方厘米10¹⁵个分子到单分子,与平面DNA微阵列相比有几个数量级的提升。我们的研究表明,这些流通式纳米多孔传感器代表了一种用于大量采样和超灵敏检测不同化学生物标志物的强大新平台。

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