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Direct Analysis of Gene Synthesis Reactions Using Solid-State Nanopores

机译:使用固态纳米孔直接分析基因合成反应

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摘要

Synthetic nucleic acids offer rich potential to understand and engineer new cellular functions, yet an unresolved limitation in their production and usage is deleterious products, which restrict design complexity and add cost. Herein, we employ a solid-state nanopore to differentiate molecules of a gene synthesis reaction into categories of correct and incorrect assemblies. This new method offers a solution that provides information on gene synthesis reactions in near-real time with higher complexity and lower costs. This advance can permit insights into gene synthesis reactions such as kinetics monitoring, real-time tuning, and optimization of factors that drive reaction-to-reaction variations as well as open venues between nanopore-sensing, synthetic biology, and DNA nanotechnology.
机译:合成核酸具有丰富的潜力来理解和工程化新的细胞功能,但其生产和使用中尚未解决的局限性是有害产品,这限制了设计的复杂性并增加了成本。在本文中,我们采用固态纳米孔将基因合成反应的分子区分为正确和错误组装的类别。这种新方法提供了一种解决方案,可以以更高的复杂性和更低的成本提供近乎实时的基因合成反应信息。这项进展可以使人们深入了解基因合成反应,例如动力学监测,实时调节和优化驱动反应差异的因素,以及纳米孔传感,合成生物学和DNA纳米技术之间的开放场所。

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