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Liposome-Based Chemical Barcodes for Single Molecule DNA Detection Using Imaging Mass Spectrometry

机译:基于脂质体的化学条形码,用于使用成像质谱检测单分子DNA

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摘要

We report on a mass-spectrometry (time-of-flight secondary ion mass spectrometry, TOF-SIMS) based method For multiplexed DNA detection utilizing a random array, where the lipid composition of small unilamellar liposomes act as chemical barcodes to identify unique DNA target sequences down to the single molecule level. In a sandwich format, suspended target-DNA to be detected mediates the binding of capture-DNA modified liposomes to surface-immobilized probe-DNA. With the lipid composition of each liposome encoding a unique target-DNA sequence, TOF-SIMS analysis was used to determine the chemical fingerprint of the bound liposomes. Using high-resolution TOF-SIMS imaging, providing sub-200 nm spatial resolution, single DNA targets could be detected and identified via the chemical fingerprint of individual liposomes. The results also demonstrate the capability of TOF-SIMS to provide multiplexed detection of DNA targets on substrate areas in the micrometer range. Together with a high multiplexing capacity, this makes the concept an interesting alternative to existing barcode concepts based on fluorescence, Raman, or graphical codes for small-scale bioanalysis.
机译:我们报告了一种基于质谱(飞行时间二次离子质谱,TOF-SIMS)的方法,用于利用随机阵列对DNA进行多重检测,其中小的单层脂质体的脂质成分充当化学条形码以识别独特的DNA靶标序列下降到单分子水平。以三明治形式,要检测的悬浮靶DNA介导捕获DNA修饰的脂质体与表面固定的探针DNA的结合。由于每个脂质体的脂质组成均编码独特的靶DNA序列,因此使用TOF-SIMS分析来确定结合脂质体的化学指纹。使用高分辨率TOF-SIMS成像(提供低于200 nm的空间分辨率),可以通过单个脂质体的化学指纹来检测和识别单个DNA目标。结果还证明了TOF-SIMS能够对微米范围内底物区域上的DNA目标进行多重检测。加上高复用能力,这使该概念成为了基于荧光,拉曼或用于小规模生物分析的图形代码的现有条形码概念的有趣替代。

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