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Bare Nanocapillary for DNA Separation and Genotyping Analysis in Gel-Free Solutions without Application of External Electric Field

机译:裸纳米毛细管,无需外部电场即可在无凝胶溶液中进行DNA分离和基因分型分析

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In this work, we demonstrate DNA separation and genotyping analysis in gel-free solutions using a nanocapillary under pressure-driven conditions without application of an external electric field. The nanocapillary is a approx50-cm-long and 500-nm-radius bare fused-silica capillary. After a DNA sample is injected, the analytes are eluted out in a chromatographic separation format. The elution order of DNA molecules follows strictly with their sizes, with the longer DNA being eluted out faster than the shorter ones. High resolutions are obtained for both short (a few bases) and long (tens of thousands of base pairs) DNA fragments. Effects of key experimental parameters, such as eluent composition and elution pressure, on separation efficiency and resolution are investigated. We also apply this technique for DNA separations of real-world genotyping samples to demonstrate its feasibility in biological applications. PCR products (without any purification) amplified from Arabidopsis plant genomic DNA crude preparations are directly injected into the nanocapillary, and PCR-amplified DNA fragments are well resolved, allowing for unambiguous identification of samples from heterozygous and homozygous individuals. Since the capillaries used to conduct the separations are uncoated, column lifetime is virtually unlimited. The only material that is consumed in these assays is the eluent, and hence, the operation cost is low.
机译:在这项工作中,我们证明了在无驱动力的条件下,使用纳米毛细管,无需施加外部电场,即可在无凝胶溶液中进行DNA分离和基因分型分析。纳米毛细管是大约50厘米长和500纳米半径的裸露熔融石英毛细管。注入DNA样品后,分析物以色谱分离格式洗脱。 DNA分子的洗脱顺序严格遵循其大小,较长的DNA的洗脱速度比较短的DNA快。短(几个碱基)和长(成千上万个碱基对)DNA片段均获得了高分辨率。研究了关键实验参数(如洗脱液组成和洗脱压力)对分离效率和分离度的影响。我们还将这种技术用于现实世界中基因分型样品的DNA分离,以证明其在生物学应用中的可行性。从拟南芥植物基因组DNA粗制品中扩增的PCR产物(无需任何纯化)直接注入纳米毛细管中,并且PCR扩增的DNA片段得到良好分离,从而可以明确鉴定杂合子和纯合子的样品。由于用于进行分离的毛细管没有涂层,因此色谱柱的寿命实际上是无限的。在这些测定中消耗的唯一物质是洗脱液,因此操作成本很低。

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