Department of Chemistry, University of Kansas, Lawrence, KS, USA.
Lab Chip. 2018 Dec 4;18(24):3790-3801. doi: 10.1039/c8lc01071d.
Extracellular vesicles (EVs) present a promising liquid biopsy for cancer diagnosis. However, it remains a daunting challenge to quantitatively measure molecular contents of EVs including tumor-associated mRNAs. Herein, we report a configurable microwell-patterned microfluidic digital analysis platform combined with a dual-probe hybridization assay for PCR-free, single-molecule detection of specific mRNAs in EVs. The microwell array in our device is configurable between the flow-through assay mode for enhanced hybridization capture and tagging of mRNAs and the digital detection mode based on femtoliter-scale enzymatic signal amplification for single-molecule counting of surface-bound targets. Furthermore, a dual-probe hybridization assay has been developed to enhance the sensitivity of the digital single-molecule detection of EV mRNAs. Combining the merits of the chip design and the dual-probe digital mRNA hybridization assay, the integrated microfluidic system has been demonstrated to afford quantitative detection of synthetic GAPDH mRNA with a LOD as low as 20 aM. Using this technology, we quantified the level of GAPDH and EWS-FLI1 mRNAs in EVs derived from two cell lines of peripheral primitive neuroectodermal tumor (PNET), CHLA-9 and CHLA-258. Our measurements detected 64.6 and 43.5 copies of GAPDH mRNA and 6.5 and 0.277 copies of EWS-FLI1 fusion transcripts per 105 EVs derived from CHLA-9 and CHLA-258 cells, respectively. To our knowledge, this is the first demonstration of quantitative measurement of EWS-FLI1 mRNA copy numbers in Ewing Sarcoma (EWS)-derived EVs. These results highlight the ultralow frequency of tumor-specific mRNA markers in EVs and the necessity of developing highly sensitive methods for analysis of EV mRNAs. The microfluidic digital mRNA analysis platform presented here would provide a useful tool to facilitate quantitative analysis of tumor-associated EV mRNAs for liquid biopsy-based cancer diagnosis and monitoring.
细胞外囊泡 (EVs) 是一种很有前途的癌症诊断液体活检方法。然而,定量测量 EVs 中包括肿瘤相关 mRNAs 在内的分子含量仍然是一个艰巨的挑战。在此,我们报告了一种可配置的微井图案微流控数字分析平台,结合了双探针杂交测定法,用于无 PCR、单分子检测 EVs 中的特异性 mRNAs。我们的设备中的微井阵列可在增强杂交捕获和 mRNAs 标记的流动通过测定模式与基于皮升级规模酶信号放大的数字检测模式之间进行可配置,用于表面结合靶标单分子计数。此外,还开发了双探针杂交测定法,以提高 EV mRNAs 的数字单分子检测的灵敏度。结合芯片设计和双探针数字 mRNA 杂交测定法的优点,该集成微流控系统已被证明可对合成 GAPDH mRNA 进行定量检测,其检测限低至 20 aM。使用该技术,我们定量检测了源自外周原始神经外胚层肿瘤 (PNET) 的两个细胞系 CHLA-9 和 CHLA-258 的 EVs 中的 GAPDH 和 EWS-FLI1 mRNAs 的水平。我们的测量结果分别检测到源自 CHLA-9 和 CHLA-258 细胞的 105 个 EV 中的 GAPDH mRNA 为 64.6 和 43.5 个拷贝,EWS-FLI1 融合转录物为 6.5 和 0.277 个拷贝。据我们所知,这是首次在源自尤文肉瘤 (EWS) 的 EVs 中定量测量 EWS-FLI1 mRNA 拷贝数的报道。这些结果突出了 EVs 中肿瘤特异性 mRNA 标志物的超低频率,以及开发用于 EV mRNAs 分析的高灵敏度方法的必要性。这里提出的微流控数字 mRNA 分析平台将为基于液体活检的癌症诊断和监测的肿瘤相关 EV mRNAs 的定量分析提供有用的工具。