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The Oxygen Release Instrument: Space Mission Reactive Oxygen Species Measurements for Habitability Characterization Biosignature Preservation Potential Assessment and Evaluation of Human Health Hazards

机译:氧气释放仪:用于可居住性表征生物签名保存潜力评估以及人类健康危害评估的太空任务活性氧物种测量

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摘要

We describe the design of an instrument, the OxR (for Oxygen Release), for the enzymatically specific and non-enzymatic detection and quantification of the reactive oxidant species (ROS), superoxide radicals (O2•−), and peroxides (O22−, e.g., H2O2) on the surface of Mars and Moon. The OxR instrument is designed to characterize planetary habitability, evaluate human health hazards, and identify sites with high biosignature preservation potential. The instrument can also be used for missions to the icy satellites of Saturn’s Titan and Enceladus, and Jupiter’s Europa. The principle of the OxR instrument is based on the conversion of (i) O2•− to O2 via its enzymatic dismutation (which also releases H2O2), and of (ii) H2O2 (free or released by the hydrolysis of peroxides and by the dismutation of O2•−) to O2 via enzymatic decomposition. At stages i and ii, released O2 is quantitatively detected by an O2 sensor and stoichiometrically converted to moles of O2•− and H2O2. A non-enzymatic alternative approach is also designed. These methods serve as the design basis for the construction of a new small-footprint instrument for specific oxidant detection. The minimum detection limit of the OxR instrument for O2•− and O22− in Mars, Lunar, and Titan regolith, and in Europa and Enceladus ice is projected to be 10 ppb. The methodology of the OxR instrument can be rapidly advanced to flight readiness by leveraging the Phoenix Wet Chemical Laboratory, or microfluidic sample processing technologies.
机译:我们描述了一种设计工具,即OxR(用于氧气释放),用于酶促特异性和非酶促检测和定量反应性氧化剂(ROS),超氧自由基(O2 •-)以及火星和月球表面的过氧化物(O2 2-,例如H2O2)。 OxR仪器旨在表征行星的宜居性,评估人类健康危害并确定具有高生物签名保存潜力的场所。该仪器还可以用于对土星的土卫六和土卫二以及木星的欧罗巴的冰冷卫星进行飞行任务。 OxR仪器的原理基于(i)O2 •-通过其酶促歧化反应(也释放H2O2)和(ii)H2O2(由H2O释放或释放)转化为O2。过氧化物水解并通过酶促分解将O2 •-)分解为O2。在第i和ii阶段,由O2传感器定量检测释放的O2,并将其化学计量转换为O2 •-和H2O 2 的摩尔数。还设计了非酶替代方法。这些方法可作为构建用于特定氧化剂检测的新型小型仪器的设计基础。月球火星中O 2 •-和O 2 2-的OxR仪器的最低检测限,以及土卫六长石,在欧罗巴和土卫二中的冰预计为10 ppb。利用菲尼克斯湿化学实验室或微流体样品处理技术,可以将OxR仪器的方法迅速发展为飞行就绪状态。

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