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微芯片毛细管电泳仪器原位分析寻找外星生命。

Microchip capillary electrophoresis instrumentation for in situ analysis in the search for extraterrestrial life.

机构信息

Jet Propulsion Laboratory, California Institute of Technology, Pasadena, California, USA.

出版信息

Electrophoresis. 2012 Sep;33(17):2624-38. doi: 10.1002/elps.201200102.

Abstract

The search for signs of life on extraterrestrial planetary bodies is among NASA's top priorities in Solar System exploration. The associated pursuit of organics and biomolecules as evidence of past or present life demands in situ investigations of planetary bodies for which sample return missions are neither practical nor affordable. These in situ studies require instrumentation capable of sensitive chemical analyses of complex mixtures including a broad range of organic molecules. Instrumentation must also be capable of autonomous operation aboard a robotically controlled vehicle that collects data and transmits it back to Earth. Microchip capillary electrophoresis (μCE) coupled to laser-induced fluorescence (LIF) detection provides this required sensitivity and targets a wide range of relevant organics while offering low mass, volume, and power requirements. Thus, this technology would be ideally suited for in situ studies of astrobiology targets, such as Mars, Europa, Enceladus, and Titan. In this review, we introduce the characteristics of these planetary bodies that make them compelling destinations for extraterrestrial astrobiological studies, and the principal groups of organics of interest associated with each. And although the technology we describe here was first developed specifically for proposed studies of Mars, by summarizing its evolution over the past decade, we demonstrate how μCE-LIF instrumentation has become an ideal candidate for missions of exploration to all of these nearby worlds in our Solar System.

摘要

在外行星体上寻找生命迹象是 NASA 太阳系探索的首要任务之一。相关的有机物和生物分子的研究,作为过去或现在生命的证据,需要对样本返回任务既不实际也不可负担的行星体进行原位调查。这些原位研究需要能够对复杂混合物(包括广泛的有机分子)进行敏感化学分析的仪器。仪器还必须能够在机器人控制的车辆上自主运行,该车辆收集数据并将其传回地球。微芯片毛细管电泳 (μCE) 与激光诱导荧光 (LIF) 检测相结合,提供了这种必需的灵敏度,并针对广泛的相关有机物,同时提供低质量、小体积和低功耗的要求。因此,这项技术非常适合火星、木卫二、土卫二和土卫六等天体生物学目标的原位研究。在这篇综述中,我们介绍了这些行星体的特征,这些特征使它们成为外星天体生物学研究的理想目的地,以及与每个行星体相关的主要有机物。虽然我们在这里描述的技术最初是专门为火星的拟议研究开发的,但通过总结过去十年的发展,我们展示了 μCE-LIF 仪器如何成为探索太阳系中所有这些邻近世界的任务的理想候选者。

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