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Cell-free DNA (cfDNA) and Exosome Profiling from a Year-Long Human Spaceflight Reveals Circulating Biomarkers

机译:无细胞DNA(CFDNA)和来自一年的人类空间的外出剖面揭示了循环生物标志物

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摘要

Liquid biopsies based on cell-free DNA (cfDNA) or exosomes provide a noninvasive approach to monitor human health and disease but have not been utilized for astronauts. Here, we profile cfDNA characteristics, including fragment size, cellular deconvolution, and nucleosome positioning, in an astronaut during a year-long mission on the International Space Station, compared to his identical twin on Earth and healthy donors. We observed a significant increase in the proportion of cell-free mitochondrial DNA (cf-mtDNA) inflight, and analysis of post-flight exosomes in plasma revealed a 30-fold increase in circulating exosomes and patient-specific protein cargo (including brain-derived peptides) after the year-long mission. This longitudinal analysis of astronaut cfDNA during spaceflight and the exosome profiles highlights their utility for astronaut health monitoring, as well as cf-mtDNA levels as a potential biomarker for physiological stress or immune system responses related to microgravity, radiation exposure, and the other unique environmental conditions of spaceflight.
机译:基于无细胞DNA(CFDNA)或外泌体的液体活组织检查提供了监测人类健康和疾病的非侵入性方法,但尚未用于宇航员。在这里,我们概况CFDNA特征,包括片段大小,细胞去卷积和核心定位,在国际空间站的一年长期以来的一年期间,与他在地球和健康捐赠者的相同双胞胎上相比。我们观察到无细胞线粒体DNA(CF-MTDNA)的比例的显着增加,并且血浆中飞行后外泌体的分析显示循环外泌体和患者特异性蛋白质货物增加了30倍(包括脑衍生的肽)经过一年的任务。在太空飞行期间的宇航员CFDNA的纵向分析和外来概况突出了他们对宇航员健康监测的效用,以及与微匍匐,辐射暴露和其他独特的环境相关的生理压力或免疫系统反应的潜在生物标志物。和其他独特的环境的CF-MTDNA水平空间的条件。

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