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首页> 外文期刊>International Journal of Astrobiology >The extraction of intracrystalline bio markers and other organic compounds from sulphate minerals using a microfluidlc format - a feasibility study for remote fossil-life detection using a microfluidic H-cell
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The extraction of intracrystalline bio markers and other organic compounds from sulphate minerals using a microfluidlc format - a feasibility study for remote fossil-life detection using a microfluidic H-cell

机译:使用微流格式从硫酸盐矿物中提取晶体内生物标志物和其他有机化合物-使用微流H细胞进行远程化石生命检测的可行性研究

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摘要

Water-soluble sulphate minerals such as epsomite and gypsum have been reported on a number of planetary bodies of astrobiological interest and their presence is often used as an indicator for potential habitability as it can indicate the presence of liquid water. The sulphate minerals can incorporate biomarkers and biomolecules as intracrystalline inclusions. These intracrystalline inclusions are protected from their exterior chemical environments and their analysis can yield a biomarker record, even in environments where extreme oxidizing conditions may have degraded any record present in non-intraciystalline organic matter In this study, organic compounds were incorporated within epsomite as intracrystalline inclusions by co-precipitating a mineral from solutions of a mineral and organic compound, A feasibly study utilizing a microfluidic H-cell to process finely ground samples of the inclusion-bearing epsomite indicates that a similar device may be used to extract biomarkers for analysis.
机译:水溶性硫酸盐矿物(如泻石和石膏)已在许多具有星生物学意义的行星体上得到报道,它们的存在通常被用作潜在宜居性的指标,因为它可以指示液态水的存在。硫酸盐矿物可以将生物标志物和生物分子作为晶体内包裹体结合。这些晶内夹杂物不受外部化学环境的影响,即使在极端氧化条件下可能降解了非鞘内钙质有机物中任何记录的环境中,其分析也可以产生生物标志物记录。通过从矿物质和有机化合物的溶液中共沉淀矿物质来沉淀夹杂物,一项利用微流控H细胞处理含磨eps石的细磨样品的可行性研究表明,可以使用类似的设备提取生物标记物进行分析。

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