Department of Chemistry, Wayne State University, USA.
Department of Chemistry, Wayne State University, USA.
Anal Chim Acta. 2023 Sep 22;1275:341605. doi: 10.1016/j.aca.2023.341605. Epub 2023 Jul 11.
MicroRNAs (miRNAs) are short non-coding RNAs that control gene expression and correlate to the prognosis of numerous diseases. To support research efforts elucidating the roles of miRNAs in pathogenesis, rapid and inexpensive analytical methods are required to quantify miRNAs from biological samples. The challenge of developing new analyses with these time and cost constraints is compounded by the short sequence lengths and high degrees of homology between miRNAs that hinder detection selectivity. This report describes the development of a high-temperature thermal gel electrophoresis (TGE) method to rapidly quantify miRNAs with single-nucleotide resolution using low-cost microfluidic devices. Fluorescent probes were designed for three miRNAs that differed in sequence by one or two nucleotides. A microfluidic analysis was optimized to enrich miRNA-probe hybrids into a high-concentration band and then automatically initiate a separation to resolve each species. Analyses conducted at 30 °C exhibited significant off-target hybridization, as the different-yet-structurally-similar miRNAs bound to each probe, which biased measurements. To overcome this problem, the stability of thermal gels at elevated temperatures was exploited to conduct analyses. At 50 °C, off-target hybrids melted to prevent their detection without impeding the enrichment or separation of on-target hybrids. Selectivity studies validated that high-temperature TGE prevented off-target hybrids from interfering with the quantitative responses of the target miRNAs. This work demonstrates that TGE affords rapid, highly selective analyses of structurally similar miRNAs in low-complexity microfluidic devices, which is expected to facilitate diverse biomedical research.
微小 RNA(miRNA)是短的非编码 RNA,可控制基因表达,并与许多疾病的预后相关。为了支持阐明 miRNA 在发病机制中的作用的研究工作,需要快速且廉价的分析方法来从生物样本中定量 miRNA。在时间和成本限制下开发新分析方法的挑战因 miRNA 之间的短序列长度和高度同源性而加剧,这阻碍了检测选择性。本报告描述了使用低成本微流控设备,通过高温热凝胶电泳(TGE)方法以单核苷酸分辨率快速定量 miRNA 的方法的开发。针对一个或两个核苷酸序列不同的三个 miRNA 设计了荧光探针。优化了微流控分析,以将 miRNA-探针杂交体富集到高浓度带中,然后自动启动分离以分辨每种 miRNA。在 30°C 下进行的分析显示出明显的非靶杂交,因为不同但结构相似的 miRNA 与每个探针结合,从而产生了有偏差的测量结果。为了克服这个问题,利用了热凝胶在高温下的稳定性来进行分析。在 50°C 下,非靶杂交体熔化,以防止它们被检测到,而不会阻碍靶杂交体的富集或分离。选择性研究验证了高温 TGE 可防止非靶杂交体干扰靶 miRNA 的定量响应。这项工作表明,TGE 可在低复杂度的微流控设备中快速、高度选择性地分析结构相似的 miRNA,这有望促进各种生物医学研究。