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Ultrahigh-throughput droplet microfluidic device for single-cell miRNA detection with isothermal amplification

机译:用于单细胞miRNA检测的超高通量液滴微流体装置,等温扩增

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摘要

Analysis of microRNA (miRNA), a pivotal primary regulator of fundamental cellular processes, at the singlecell level is essential to elucidate regulated gene expression precisely. Most single-cell gene sequencing methods use the polymerase chain reaction (PCR) to increase the concentration of the target gene for detection, thus requiring a barcoding process for cell identification and creating a challenge for real-time, large-scale screening of sequences in cells to rapidly profile physiological samples. In this study, a rapid, PCR-free, single-cell miRNA assay is developed from a continuous-flow microfluidic process employing a DNA hybridization chain reaction to amplify the target miRNA signal. Individual cells are encapsulated with DNA amplifiers in water-in-oil droplets and then lysed. The released target miRNA interacts with the DNA amplifiers to trigger hybridization reactions, producing fluorescence signals. Afterward, the target sequences are recycled to trigger a cyclic cascade reaction and significantly amplify the fluorescence signals without using PCR thermal cycling. Multiple DNA amplifiers with distinct fluorescence signals can be encapsulated simultaneously in a droplet to measure multiple miRNAs from a single cell simultaneously. Moreover, this process converts the lab bench PCR assay to a real-time droplet assay with the postreaction fluorescence signal as a readout to allow flow cytometry-like continuous-flow measurement of sequences in a single cell with an ultrahigh throughput (300-500 cells per minute) for rapid biomedical identification.
机译:微小RORNA(miRNA),基本细胞过程的枢轴初级调节剂,在SINGLECELL水平上是必要的,以精确地阐明调节基因表达。大多数单细胞基因测序方法使用聚合酶链反应(PCR)来增加靶基因的浓度进行检测,因此需要用于细胞识别的条形码过程,并对实时,大规模筛选序列产生挑战细胞快速剖面生理样品。在该研究中,从采用DNA杂交链反应扩增靶miRNA信号的连续流动的微流体工艺产生快速的PCR,单细胞小细胞miRNA测定。单个细胞用水包油滴中的DNA放大器包封,然后裂解。释放的靶MiRNA与DNA放大器相互作用以引发杂交反应,产生荧光信号。之后,靶序列被再循环以触发循环级联反应,并显着扩增荧光信号而不使用PCR热循环。具有不同荧光信号的多个DNA放大器可以在液滴中同时封装,以同时从单个电池测量多个miRNA。此外,该方法将Lab Bench PCR测定转换为具有呼吸荧光信号作为读出的实时液滴测定,以允许具有超高通量(300-500个细胞的单个电池中序列的流式细胞谱图的连续流动测量每分钟)快速生物医学鉴定。

著录项

  • 来源
    《Lab on a chip》 |2018年第13期|共7页
  • 作者单位

    Natl Univ Singapore Dept Biomed Engn 21 Lower Kent Ridge Rd Singapore 119077 Singapore;

    Natl Univ Singapore Dept Biomed Engn 21 Lower Kent Ridge Rd Singapore 119077 Singapore;

    Natl Univ Singapore Dept Biomed Engn 21 Lower Kent Ridge Rd Singapore 119077 Singapore;

    Natl Univ Singapore Dept Biomed Engn 21 Lower Kent Ridge Rd Singapore 119077 Singapore;

    Natl Univ Singapore Dept Biomed Engn 21 Lower Kent Ridge Rd Singapore 119077 Singapore;

    Natl Univ Singapore Dept Biomed Engn 21 Lower Kent Ridge Rd Singapore 119077 Singapore;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学实验(实验化学);生物化学;生物科学;化学;
  • 关键词

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