自动化流动/数字微流控平台集成现场电穿孔过程,用于多种基因工程应用

K. Iwai, David Ando, Peter W. Kim, Phillip C. Gach, M. Raje, Todd A. Duncomb, Joshua V. Heinemann, T. Northen, H. Martín, N. Hillson, P. Adams, A. Singh
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引用次数: 5

摘要

我们提出了一种新型的自动化流动/数字微流控平台,集成了现场电穿孔功能。除了微滴的高通量排列和DNA部分与细胞的混合外,该平台还能够进行多路电穿孔处理和芯片上表达荧光的双光学检测。与传统的基于微量滴度板的反应不同,我们的平台将允许完全自动化和强大的基因工程步骤,使用更少的试剂,可用于基因编辑过程,如用于合成生物学应用的CRISPR/Cas9。
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Automated flow-based/digital microfluidic platform integrated with onsite electroporation process for multiplex genetic engineering applications
We present a novel automated flow-based/digital microfluidic platform integrated with onsite electroporation function. In addition to high-throughput arraying of microdroplets and mixing of DNA parts and cells, proposed platform is capable of multiplexed electroporation process and dual optical detection of expressed fluorescence on chip. Unlike conventional microtiter plate based reactions, our platform would allow completely automated and robust genetic engineering steps using drastically smaller amounts of reagents and can be useful for gene editing processes such as CRISPR/Cas9 for synthetic biology applications.
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