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首页> 外文期刊>Lab on a chip >LoMA-B: a simple and versatile lab-on-a-chip system based on single-channel bisulfite conversion for DNA methylation analysis
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LoMA-B: a simple and versatile lab-on-a-chip system based on single-channel bisulfite conversion for DNA methylation analysis

机译:LoMA-B:基于单通道亚硫酸氢盐转化的简单通用的芯片实验室系统,用于DNA甲基化分析

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摘要

Miniaturized lab-on-a-chip (LOC) systems have been developed for genetic and epigenetic analyses in clinical applications because of advantages such as reduced sample size and reagent consumption, rapid processing speed, simplicity, and enhanced sensitivity. Despite tremendous efforts made towards developing LOC systems for use in the clinical setting, the development of LOC systems to analyze DNA methylation, which is an emerging epigenetic marker causing the abnormal silencing of genes including tumor suppressor genes, is still challenging because of the gold standard methods involving a bisulfite conversion step. Existing bisulfite conversion-based techniques are not suitable for clinical use due to their long processing time, labor intensiveness, and the purification steps involved. Here, we present a lab-on-a-chip system for DNA methylation analysis based on bisulfite conversion (LoMA-B), which couples a sample pre-processing module for on-chip bisulfite conversion and a label-free, real-time detection module for rapid analysis of DNA methylation status using an isothermal DNA amplification/detection technique. The methylation status of the RAR beta gene in human genomic DNA extracted from MCF-7 cells was analyzed by the LoMA-B system within 80 min (except 16 h for sensor preparation) compared to conventional MS-PCR within 24 h. Furthermore, the LoMA-B system is highly sensitive and can detect as little as 1% methylated DNA in a methylated/unmethylated cell mixture. Therefore, the LoMA-B system is an efficient diagnostic tool for the simple, versatile, and quantitative evaluation of DNA methylation patterns for clinical applications.
机译:小型化的单芯片实验室(LOC)系统已经开发用于临床应用中的遗传和表观遗传学分析,因为它具有诸如减少样品大小和试剂消耗,快速的处理速度,简便性以及增强的灵敏度等优点。尽管为开发用于临床环境的LOC系统付出了巨大的努力,但用于分析DNA甲基化的LOC系统的开发仍然是一项挑战,因为它是金标准,DNA甲基化是一种新兴的表观遗传标记,导致包括肿瘤抑制基因在内的基因异常沉默。涉及亚硫酸氢盐转化步骤的方法。现有的基于亚硫酸氢盐转化的技术因其处理时间长,劳动强度大以及涉及的纯化步骤而不适用于临床。在这里,我们介绍了一种基于亚硫酸氢盐转化(LoMA-B)的用于DNA甲基化分析的芯片实验室系统,该系统结合了用于芯片上亚硫酸氢盐转化的样品预处理模块和无标签,实时的检测模块,用于使用等温DNA扩增/检测技术快速分析DNA甲基化状态。与传统的MS-PCR相比,通过LoMA-B系统在80分钟内(传感器制备需要16小时除外)分析了从MCF-7细胞提取的人基因组DNA中RARβ基因的甲基化状态,而传统MS-PCR在24小时内进行了分析。此外,LoMA-B系统高度敏感,可以检测到甲基化/未甲基化细胞混合物中低至1%的甲基化DNA。因此,LoMA-B系统是用于临床应用的DNA甲基化模式的简单,通用和定量评估的有效诊断工具。

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