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Purification-Free MicroRNA Detection by Using Magnetically Immobilized Nanopores on Liposome Membrane

机译:通过在脂质体膜上使用磁体固定的纳米孔的无纯化的微小RNA检测

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摘要

MicroRNAs have critical roles in a number of serious diseases and, as a result, are of major interest as clinical diagnostic targets. Conventionally, microRNAs are collected from blood and urine samples and are measured by either quantitative reverse-transcription polymerase chain reaction or microarray. Recently, nanopore sensing techniques have been applied for measuring microRNAs at the single-molecule level. However, existing techniques are technically complex, needing several tools and requiring purification and/or labeling of microRNA samples prior to use. Here we report a method for microRNA detection in a simple procedure requiring neither purification nor labeling. This system utilizes magnetic beads anchored with DNA and nanopores on a liposome membrane. In the presence of the target microRNA, it forms a duplex with complementary DNA, which is then cleaved by a duplex-specific nuclease (DSN). The cleaved DNA, which harbors a liposome on its terminus, is subsequently released from the magnetic bead, fuses to the lipid bilayer on chip, and emits an electrical signal derived from the formation of a nanopore. Because of a property of the DSN, the signals derived from microRNAs are expected to be amplified in an isothermal reaction. Our system possesses the specificity to detect target microRNAs from mixtures containing 10(6) different microRNA sequences and readily uses blood or urine samples. Although the limit of detection is above 10 nM and needs to be improved for practical diagnosis, because purification and labeling are not required, the presented system proposes a possible schematic for the development of easy and on-site diagnosis.
机译:Micrornas在许多严重疾病中具有重要作用,因此,作为临床诊断目标的主要兴趣是主要的兴趣。常规地,从血液和尿液中收集MicroRNA,通过定量逆转录聚合酶链反应或微阵列测量。最近,纳米孔感测技术已经应用于单分子水平的测量微大罗氏。然而,现有技术在技术上是复杂的,需要几种工具并在使用前需要纯化和/或标记MicroRNA样品。在这里,我们在需要既不净化也不标记的简单过程中报告了一种MicroRNA检测方法。该系统利用磁性珠子在脂质体膜上锚定的DNA和纳米孔。在靶微小RORNA的存在下,它形成与互补DNA的双链体,然后通过双链特异性核酸酶(DSN)裂解。随后从磁珠上释放到其末端的脂质体的切割DNA,熔化到芯片上的脂质双层,并发出从形成纳米孔的形成的电信号。由于DSN的性质,预期从微小RANS衍生的信号在等温反应中被扩增。我们的系统具有检测含有& 10(6)个不同的MicroRNA序列的混合物的靶微型鼠标的特异性,并且容易使用血液或尿液样品。虽然检测限高于10nm,但需要改善实际诊断,因为不需要净化和标记,所提出的系统提出了可能的示意图,用于开发容易和现场诊断。

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  • 来源
    《Analytical chemistry》 |2018年第17期|共6页
  • 作者单位

    Kanagawa Inst Ind Sci &

    Technol Artificial Cell Membrane Syst Grp Takatsu Ku 3-2-1 Sakado Kawasaki Kanagawa 2130012 Japan;

    Kanagawa Inst Ind Sci &

    Technol Artificial Cell Membrane Syst Grp Takatsu Ku 3-2-1 Sakado Kawasaki Kanagawa 2130012 Japan;

    Kanagawa Inst Ind Sci &

    Technol Artificial Cell Membrane Syst Grp Takatsu Ku 3-2-1 Sakado Kawasaki Kanagawa 2130012 Japan;

    Kanagawa Inst Ind Sci &

    Technol Artificial Cell Membrane Syst Grp Takatsu Ku 3-2-1 Sakado Kawasaki Kanagawa 2130012 Japan;

    Kanagawa Inst Ind Sci &

    Technol Res &

    Dev Dept Takatsu Ku 3-2-1 Sakado Kawasaki Kanagawa 2130012 Japan;

    Kanagawa Inst Ind Sci &

    Technol Artificial Cell Membrane Syst Grp Takatsu Ku 3-2-1 Sakado Kawasaki Kanagawa 2130012 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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