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Automated Sample Preparation in a Microfluidic Culture Device for Cellular Metabolomics

机译:用于细胞代谢组学的微流控培养装置中的自动样品制备

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摘要

Sample pretreatment in conventional cellular metabolomics entails rigorous lysis and extraction steps which increase the duration as well as limit the consistency of these experiments. We report a biomimetic cell culture microfluidic device (MFD) which is coupled with an automated system for rapid, reproducible cell lysis using a combination of electrical and chemical mechanisms. In-channel microelectrodes were created using facile fabrication methods, enabling the application of electric fields up to 1000 V/cm. Using this platform, average lysing times were 7.12 s and 3.03 s for chips with no electric fields and electric fields above 200 V/cm, respectively. Overall, the electroporation MFDs yielded a ∼10-fold improvement in lysing time over standard chemical approaches. Detection of multiple intracellular nucleotides and energy metabolites in MFD lysates was demonstrated using two different MS platforms. This work will allow for the integrated culture, automated lysis, and metabolic analysis of cells in an MFD which doubles as a biomimetic model of the vasculature.
机译:传统细胞代谢组学中的样品预处理需要严格的裂解和提取步骤,这会增加持续时间并限制了这些实验的一致性。我们报告了一种仿生细胞培养微流控设备(MFD),它结合了自动化的系统,可结合使用电和化学机制快速,可复制地裂解细胞。使用便捷的制造方法创建通道内微电极,从而能够施加高达1000 V / cm的电场。使用该平台,没有电场的电场和200 V / cm以上电场的平均裂解时间分别为7.12 s和3.03 s。总体而言,电穿孔MFD的裂解时间比标准化学方法缩短了约10倍。使用两个不同的MS平台证明了MFD裂解物中多种细胞内核苷酸和能量代谢产物的检测。这项工作将允许在MFD中对细胞进行整合培养,自动裂解和代谢分析,而MFD可以作为脉管系统的仿生模型。

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