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多通道毛细管电泳微器件及其仪器,用于有机分子和生物标志物的原位行星分析。

Multichannel capillary electrophoresis microdevice and instrumentation for in situ planetary analysis of organic molecules and biomarkers.

机构信息

Department of Chemistry, University of California at Berkeley, Berkeley, California 94720, USA.

出版信息

Anal Chem. 2010 Mar 15;82(6):2372-9. doi: 10.1021/ac9025994.

Abstract

The Multichannel Mars Organic Analyzer (McMOA), a portable instrument for the sensitive microchip capillary electrophoresis (CE) analysis of organic compounds such as amino acid biomarkers and polycyclic aromatic hydrocarbons (PAHs), is developed. The instrument uses a four-layer microchip, containing eight CE analysis systems integrated with a microfluidic network for autonomous fluidic processing. The McMOA has improved optical components that integrate 405 nm laser excitation with a linear-scanning optical system capable of multichannel real-time fluorescence spectroscopic analysis. The instrumental limit of detection is 6 pM (glycine). Microfluidic programs are executed to perform the automated sequential analysis of an amine-containing sample in each channel as well as eight consecutive analyses of alternating samples on the same channel, demonstrating less than 1% cross-contamination. The McMOA is used to identify the unique fluorescence spectra of nine components in a PAH standard and then applied to the analysis of a sediment sample from Lake Erie. The presence of benzo[a]pyrene and perylene in this sample is confirmed, and a peak coeluting with anthanthrene is disqualified based on spectral analysis. The McMOA exploits lab-on-a-chip technologies to fully integrate complex autonomous operations demonstrating the facile engineering of microchip-CE platforms for the analysis of a wide variety of organic compounds in planetary exploration.

摘要

多通道火星有机分析仪(McMOA)是一种用于分析氨基酸生物标志物和多环芳烃(PAH)等有机化合物的便携式仪器,具有灵敏的微芯片毛细管电泳(CE)分析能力。该仪器使用四层微芯片,其中包含八个集成有微流控网络的 CE 分析系统,用于自主流体处理。McMOA 改进了光学组件,将 405nm 激光激发与能够进行多通道实时荧光光谱分析的线性扫描光学系统集成在一起。仪器的检测限为 6pM(甘氨酸)。微流控程序用于执行每个通道中含胺样品的自动顺序分析,以及同一通道上八个连续交替样品的分析,证明交叉污染小于 1%。McMOA 用于识别 PAH 标准中九个成分的独特荧光光谱,然后应用于伊利湖沉积物样品的分析。该样品中确认存在苯并[a]芘和苝,并根据光谱分析排除了与荧蒽共洗脱的峰。McMOA 利用芯片实验室技术充分集成了复杂的自主操作,展示了微芯片 CE 平台在行星探索中分析各种有机化合物的简便工程设计。

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