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首页> 外文期刊>Analytical chemistry >Maximizing Ion-Tagged Oligonucleotide Loading on Magnetic Ionic Liquid Supports for the Sequence-Specific Extraction of Nucleic Acids
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Maximizing Ion-Tagged Oligonucleotide Loading on Magnetic Ionic Liquid Supports for the Sequence-Specific Extraction of Nucleic Acids

机译:在磁离子液体上最大化离子标记的寡核苷酸负载,用于核酸的序列特异性提取

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Targeted nucleic acid analysis requires the highly selective extraction of desired DNA fragments in order to minimize interferences from samples with abundant heterogeneous sequences. We previously reported a method based on functionalized oligonucleotide probes known as ion-tagged oligonucleotides (ITOs) that hybridize with complementary DNA targets for subsequent capture using a hydrophobic magnetic ionic liquid (MIL) support. Although the ITO-MIL approach enriched specific DNA sequences in quantities comparable to a commercial magnetic bead-based method, the modest affinity of the ITO for the hydrophobic MIL limited the yield of DNA targets, particularly when stringent wash conditions were applied to remove untargeted DNA. Here, we report the synthesis and characterization of a series of ITOs in which functional groups were installed within the cation and anion components of the tag moiety in order to facilitate loading of the ITO to the MIL support phase. In addition to hydrophobic interactions, we demonstrate that pi-pi stacking and fluorophilic interactions can be exploited for loading oligonucleotide probes onto MILs. Using a disubstituted ion-tagged oligonucleotide (DTO) possessing two linear C-8 groups, nearly quantitative loading of the probe onto the MIL support was achieved. The enhanced stability of the DTO within the MIL solvent permitted successive wash steps without the loss of the DNA target compared to a monosubstituted ITO with a single C-8 group that was susceptible to increased loss of analyte. Furthermore, the successful capture of a 120 bp KRAS fragment from human plasma samples followed by real-time quantitative polymerase chain reaction (qPCR) amplification is demonstrated.
机译:靶向核酸分析需要对所需的DNA片段的高度选择性提取,以最小化来自具有丰富的异质序列的样品的干扰。我们之前报道了一种基于官能化寡核苷酸探针的方法,称为离子标记的寡核苷酸(ITOS),其用互补DNA靶杂交用于使用疏水性磁离子液体(MIL)载体捕获。虽然ITO-MIL方法以与商业磁珠基法量相当的量富集的特异性DNA序列,但ITO对疏水性MIL的适度亲和力限制了DNA靶标的产率,特别是当施用严格的洗涤条件时去除未确定的DNA时。在此,我们报告了一系列ITO的合成和表征,其中官能团安装在标签部分的阳离子和阴离子组分内,以便于将ITO加载到MIL支撑阶段。除了疏水相互作用之外,我们还证明了可以利用PI-PI堆叠和荧光相互作用来将寡核苷酸探针加载到密耳上。使用具有两个线性C-8基团的二取代的离子标记的寡核苷酸(DTO),实现了几乎定量负载探针在MIL载体上。与单溶质的ITO相比,在没有易受分析物丧失的单次C-8基团的单溶质的ITO比较的情况下,在MIL溶剂中的增强的洗涤步骤允许连续的洗涤步骤允许连续的洗涤步骤。此外,证明了从人血浆样品中成功捕获来自人血浆样品的120bp KRA片段,然后进行实时定量聚合酶链反应(QPCR)扩增。

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