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首页> 外文期刊>Astrobiology >S0LID3: A Multiplex Antibody Microarray-Based Optical Sensor Instrument for In Situ Life Detection in Planetary Exploration
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S0LID3: A Multiplex Antibody Microarray-Based Optical Sensor Instrument for In Situ Life Detection in Planetary Exploration

机译:S0LID3:基于多重抗体微阵列的光学传感器仪器,用于行星探测中的原位生命检测

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摘要

The search for unequivocal signs of life on other planetary bodies is one of the major challenges for astrobiology. The failure to detect organic molecules on the surface of Mars by measuring volatile compounds after sample heating, together with the new knowledge of martian soil chemistry, has prompted the astrobiological community to develop new methods and technologies. Based on protein microarray technology, we have designed and built a series of instruments called SOLID (for "Signs Of Life Detector") for automatic in situ detection and identification of substances or analytes from liquid and solid samples (soil, sediments, or powder). Here, we present the SOLID3 instrument, which is able to perform both sandwich and competitive immunoassays and consists of two separate functional units: a Sample Preparation Unit (SPU) for 10 different extractions by ultrasonication and a Sample Analysis Unit (SAU) for fluorescent immunoassays. The SAU consists of five different flow cells, with an antibody microarray in each one (2000 spots). It is also equipped with an exclusive optical package and a charge-coupled device (CCD) for fluorescent detection. We demonstrated the performance of SOLID3 in the detection of a broad range of molecular-sized compounds, which range from peptides and proteins to whole cells and spores, with sensitivities at 1-2 ppb (ngmL^1) for biomolecules and 104 to 103 spores per milliliter. We report its application in the detection of acidophilic microorganisms in the Rio Tinto Mars analogue and report the absence of substantial negative effects on the immunoassay in the presence of 50 mM perchlorate (20 times higher than that found at the Phoenix landing site). Our SOLID instrument concept is an excellent option with which to detect biomolecules because it avoids the high-temperature treatments that may destroy organic matter in the presence of martian oxidants. Key Words: Planetary exploration—SOLID instrument—In situ automated analysis—Life-detection chips—Antibody microarrays—Environmental monitoring. Astrobiology 11, 15-28.
机译:在其他行星体上寻找明确的生命迹象是天体生物学的主要挑战之一。样品加热后无法通过测量挥发性化合物检测火星表面有机分子的失败,再加上火星土壤化学的新知识,促使天体生物学界开发了新的方法和技术。基于蛋白质微阵列技术,我们设计并制造了一系列称为SOLID(用于“生命迹象”的仪器)的仪器,用于自动就地检测和识别液体和固体样品(土壤,沉淀物或粉末)中的物质或分析物。 。在这里,我们介绍了SOLID3仪器,该仪器能够执行三明治和竞争性免疫测定,并且由两个独立的功能单元组成:用于超声处理10种不同提取物的样品制备单元(SPU)和用于荧光免疫测定的样品分析单元(SAU) 。 SAU由五个不同的流通池组成,每个流通池中都有一个抗体微阵列(2000个斑点)。它还配备了专用的光学组件和用于荧光检测的电荷耦合器件(CCD)。我们展示了SOLID3在检测各种分子大小的化合物(从肽和蛋白质到整个细胞和孢子)的性能,对生物分子和104至103个孢子的灵敏度为1-2 ppb(ngmL ^ 1)。每毫升。我们报告了其在力拓力拓火星类似物中检测嗜酸性微生物的应用,并报告了在存在50 mM高氯酸盐(比Phoenix登陆点高出20倍)的情况下,对免疫测定没有实质性的负面影响。我们的SOLID仪器概念是检测生物分子的绝佳选择,因为它避免了在火星氧化剂存在下可能破坏有机物的高温处理。关键字:行星探测– SOLID仪器–原位自动分析–生命探测芯片–抗体微阵列–环境监测。天体生物学11,15-28。

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