...
首页> 外文期刊>Nature reviews Cancer >Detecting Nonvolatile Life- and Nonlife-Derived Organics in a Carbonaceous Chondrite Analogue with a New Multiplex Immunoassay and Its Relevance for Planetary Exploration
【24h】

Detecting Nonvolatile Life- and Nonlife-Derived Organics in a Carbonaceous Chondrite Analogue with a New Multiplex Immunoassay and Its Relevance for Planetary Exploration

机译:用新的多重免疫测定和行星勘探中的碳质填充类似物中的非挥发性生命和非生命衍生的有机物及其与行星勘探的相关性

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Potential martian molecular targets include those supplied by meteoritic carbonaceous chondrites such as amino acids and polycyclic aromatic hydrocarbons and true biomarkers stemming from any hypothetical martian biota (organic architectures that can be directly related to once living organisms). Heat extraction and pyrolysis-based methods currently used in planetary exploration are highly aggressive and very often modify the target molecules making their identification a cumbersome task. We have developed and validated a mild, nondestructive, multiplex inhibitory microarray immunoassay and demonstrated its implementation in the SOLID (Signs of Life Detector) instrument for simultaneous detection of several nonvolatile life- and nonlife-derived organic molecules relevant in planetary exploration and environmental monitoring. By utilizing a set of highly specific antibodies that recognize D- or L- aromatic amino acids (Phe, Tyr, Trp), benzo[a]pyrene (B[a]P), pentachlorophenol, and sulfone-containing aromatic compounds, respectively, the assay was validated in the SOLID instrument for the analysis of carbon-rich samples used as analogues of the organic material in carbonaceous chondrites or even Mars samples. Most of the antibodies enabled sensitivities at the 1-10ppb level and some even at the ppt level. The multiplex immunoassay allowed the detection of B[a]P as well as aromatic sulfones in a water/methanol extract of an Early Cretaceous lignite sample (c.a., 140 Ma) representing type IV kerogen. No L- or D-aromatic amino acids were detected, reflecting the advanced diagenetic stage and the fossil nature of the sample. The results demonstrate the ability of the liquid extraction by ultrasonication and the versatility of the multiplex inhibitory immunoassays in the SOLID instrument to discriminate between organic matter derived from life and nonlife processes, an essential step toward life detection outside Earth.
机译:潜在的火星分子靶标包括由常规碳质软化物提供的那些,例如氨基酸和多环芳烃和真正的生物标志物,源于任何假设的火星生物群(可以直接与生物直接相关的有机架构)。目前在行星勘探中使用的热萃取和基于热解的方法是高度侵略性的,并且通常经常修改目标分子,使其识别繁琐的任务。我们已经开发并验证了一种温和,无损,多重抑制微阵列免疫阵列,并证明了其在固体(寿命迹象)仪器中的实施,以便同时检测行星勘探和环境监测中相关的几种非生命和非生命和非生命衍生的有机分子。通过利用识别D-或L-芳族氨基酸(PHE,TYR,TRP),苯并[A]芘(B [A] P),五氯苯酚和含砜的芳族化合物的一组高度特异性抗体。该测定在固体仪器中验证,用于分析用作有机物中的有机材料类似物的碳富含样品甚至火星样品。大多数抗体使1-10ppb水平的敏感性使得即使在PPT水平上也有一些。多重免疫测定允许检测B [A] P以及甲醇提取物中的早期白垩纪褐煤样品(C.a.,140mA)的水/甲醇提取物中的芳族砜。没有检测到L-或D-芳族氨基酸,反映了样品的高级成岩阶段和化石性质。结果证明了液体萃取通过超声萃取的能力和多重抑制性免疫测定在固体仪器中的多种能力,以区分从生命和非生命过程中衍生的有机物,朝向地球外部的生命检测的基本步骤。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号