Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA, USA.
Electrophoresis. 2013 Jan;34(2):309-16. doi: 10.1002/elps.201200379. Epub 2012 Dec 18.
The detection of thiols on extraterrestrial bodies could provide evidence for life, as well as a host of potential prebiological or abiological processes. Here, we report a novel protocol to analyze organic thiols by microchip CE with LIF detection. Thiols were labeled with Pacific Blue C5 maleimide and analyzed by MEKC. The separation buffer consisted of 15 mM tetraborate pH 9.2 and 25 mM SDS. The optimized method provided LODs ranging from 1.4 to 15 nM. The method was validated using samples collected from geothermal pools at Hot Creek Gorge, California, which were found to contain 2-propanethiol and 1-butanethiol in the nanomolar concentration range. These samples serve as chemical analogues to material potentially present in the reducing environment of primitive Earth and also at sulfurous regions of Mars. Hence, the protocol developed here enables highly sensitive thiol analysis in samples with complexity comparable to that expected in astrobiologically relevant extraterrestrial settings. This new protocol could be readily added to the existing suite of microfluidic chemical analyses developed for in situ planetary exploration; all that is required is the incorporation of two new reagents to the payload of an existing instrument concept.
在外层天体上检测硫醇可以为生命提供证据,以及一系列潜在的前生物或非生物过程的证据。在这里,我们报告了一种通过微芯片 CE 与 LIF 检测分析有机硫醇的新方法。硫醇用太平洋蓝 C5 马来酰亚胺标记,并通过 MEKC 进行分析。分离缓冲液由 15 mM 四硼酸盐 pH9.2 和 25 mM SDS 组成。优化后的方法提供了 1.4 到 15 nM 的检测限。该方法使用加利福尼亚州 Hot Creek Gorge 的地热池采集的样本进行了验证,这些样本中发现了 2-丙硫醇和 1-丁硫醇,浓度范围在纳摩尔。这些样本是原始地球上还原性环境中潜在物质以及火星含硫区域的化学类似物。因此,这里开发的方案可以在与天体生物学相关的外星环境中进行复杂程度相当的样本中进行高灵敏度的硫醇分析。这个新的方案可以很容易地添加到现有的用于原位行星探测的微流控化学分析套件中;只需要在现有的仪器概念的有效载荷中加入两种新的试剂。