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In situ mRNA isolation from a microfluidic single-cell array using an external AFM nanoprobe

机译:原位mRNA使用外部AFM Nanoprobe从微流体单电池阵列中分离

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摘要

We present an in situ mRNA extraction platform to quantify marker-genes' expression levels of single target cells within high-density microfluidic trapping arrays. This platform enables single-cell transcriptomic analysis to reveal in-depth information of cellular mechanisms and population heterogeneity. Although microfluidic technology enables the automation of single-cell sorting, trapping and identification, most developed microfluidic devices are closed off and prevent single-cell access by external analytical equipment. Besides, cell lysing is usually required for mRNA extraction. In our platform, cells are trapped individually in a microwell array sealed by a 1 mu m-thick polydimethylsiloxane (PDMS) membrane, and a modified atomic force microscopy (AFM) probe-a dielectrophoretic nanotweezer (DENT)-penetrates through the membrane and extracts mRNA molecules from a single cell by dielectrophoresis. The single-cellular expression levels of 3 housekeeping genes from HeLa cells were analyzed quantitatively based on the quantification of the extracted mRNAs, and the probed cells remained viable when the applied alternating-current (AC) voltage was lower than 1.5 V-pp during mRNA probing. We also performed in situ mRNA isolation from a mixture of SK-BR-3 and U937 cells, mimicking a blood sample that underwent primary enrichment of circulating tumor cells (CTCs), and evaluated various marker-genes' expressions. This integrated platform combines the non-destructive and precise-control of a single-cell mRNA probe with sealed microfluidic systems' capability of upstream sample processing and downstream multifunctional analysis to enable a versatile and powerful tool for biomedical research.
机译:我们呈现出原位mRNA提取平台,以量化高密度微流体捕集阵列内的单靶细胞的标记基因的表达水平。该平台使单细胞转录组分析能够揭示细胞机制和群体异质性的深入信息。虽然微流体技术使单细胞分类的自动化,捕获和识别,但大多数发育的微流体装置都被关闭并防止外部分析设备的单电池访问。此外,通常需要细胞裂解用于mRNA提取。在我们的平台中,细胞在由1μm厚的聚二甲基硅氧烷(PDMS)膜(PDMS)膜密封的微孔阵列中捕获,以及改性原子力显微镜(AFM)探针 - 通过膜和提取物进行介电泳纳米仪(凹痕)通过介电电泳来自单个细胞的mRNA分子。根据提取的MRNA的定量定量分析来自HELA细胞的3个内脏基因的单细胞表达水平,并且当施加的交流电流(AC)电压在mRNA期间低于1.5V-PP时,探测细胞保持可行探讨。我们还从SK-BR-3和U937细胞的混合物中以原位mRNA分离进行,模拟血液样品,该样品进行循环肿瘤细胞(CTC)的初步富集,并评估各种标记基因的表达。该集成平台将单细胞mRNA探针的非破坏性和精确控制与密封的微流体系统的上游样品处理和下游多功能分析的能力相结合,使得下游多功能分析能够实现多功能和强大的生物医学研究工具。

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