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Single-cell PCR of genomic DNA enabled by automated single-cell printing for cell isolation

机译:基因组DNA的单细胞PCR通过自动单细胞打印实现细胞分离

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Single-cell analysis has developed into a key topic in cell biology with future applications in personalized medicine, tumor identification as well as tumor discovery (Editorial, 2013). Here we employ inkjet-like printing to isolate individual living single human B cells (Raji cell line) and load them directly into standard PCR tubes. Single cells are optically detected in the nozzle of the microfluidic piezoelectric dispenser chip to ensure printing of droplets with single cells only. The printing process has been characterized by using microbeads (10 mu m diameter) resulting in a single bead delivery in 27 out of 28 cases and relative positional precision of +/- 350 mu m at a printing distance of 6 mm between nozzle and tube lid. Process-integrated optical imaging enabled to identify the printing failure as void droplet and to exclude it from downstream processing. PCR of truly single-cell DNA was performed without pre-amplification directly from single Raji cells with 33% success rate (N = 197) and C-q values of 36.3 +/- 2.5. Additionally single cell whole genome amplification (WGA) was employed to pre-amplify the single-cell DNA by a factor of > 1000. This facilitated subsequent PCR for the same gene yielding a success rate of 64% (N=33) which will allow more sophisticated downstream analysis like sequencing, electrophoresis or multiplexing. (C) 2015 Elsevier B.V. All rights reserved.
机译:单细胞分析已发展成为细胞生物学的一个关键主题,未来在个性化医学,肿瘤识别以及肿瘤发现中的应用(Editorial,2013)。在这里,我们采用类喷墨打印技术来分离单个活的单个人类B细胞(Raji细胞系)并将其直接加载到标准PCR管中。在微流体压电分配器芯片的喷嘴中以光学方式检测单细胞,以确保仅使用单细胞打印液滴。印刷过程的特点是使用微珠(直径为10微米)在28个案例中有27枚单珠交付,并且在喷嘴和管盖之间的6毫米印刷距离上的相对位置精度为+/- 350微米。与过程集成的光学成像功能可以将打印失败识别为空滴,并将其排除在下游处理之外。真正的单细胞DNA的PCR无需直接从单个Raji细胞中进行预扩增,成功率为33%(N = 197),C-q值为36.3 +/- 2.5。此外,还使用单细胞全基因组扩增(WGA)将单细胞DNA预先扩增> 1000,从而促进了随后对该相同基因的PCR产生64%的成功率(N = 33)。更复杂的下游分析,例如测序,电泳或多路复用。 (C)2015 Elsevier B.V.保留所有权利。

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