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人类淋巴细胞在空间中遭遇的混合电离辐射下的染色体损伤、基因表达和转录本替换。

Chromosomal damage, gene expression and alternative transcription in human lymphocytes exposed to mixed ionizing radiation as encountered in space.

机构信息

Centre for Radiation Protection Research, Department of Molecular Biosciences, The Wenner-Gren Institute, Stockholm University, Svante Arrhenius Väg 20C, 106 91, Stockholm, Sweden.

Institute of Experimental Physics, Faculty of Physics, University of Warsaw, Warsaw, Poland.

出版信息

Sci Rep. 2024 May 20;14(1):11502. doi: 10.1038/s41598-024-62313-7.

Abstract

Astronauts travelling in space will be exposed to mixed beams of particle radiation and photons. Exposure limits that correspond to defined cancer risk are calculated by multiplying absorbed doses by a radiation-type specific quality factor that reflects the biological effectiveness of the particle without considering possible interaction with photons. We have shown previously that alpha radiation and X-rays may interact resulting in synergistic DNA damage responses in human peripheral blood lymphocytes but the level of intra-individual variability was high. In order to assess the variability and validate the synergism, blood from two male donors was drawn at 9 time points during 3 seasons of the year and exposed to 0-2 Gy of X-rays, alpha particles or 1:1 mixture of both (half the dose each). DNA damage response was quantified by chromosomal aberrations and by mRNA levels of 3 radiation-responsive genes FDXR, CDKN1A and MDM2 measured 24 h post exposure. The quality of response in terms of differential expression of alternative transcripts was assessed by using two primer pairs per gene. A consistently higher than expected effect of mixed beams was found in both donors for chromosomal aberrations and gene expression with some seasonal variability for the latter. No synergy was detected for alternative transcription.

摘要

宇航员在太空中将暴露于混合粒子辐射和光子束中。通过将吸收剂量乘以反映粒子生物效应而不考虑与光子相互作用的辐射类型特异性质量系数,计算出与定义的癌症风险相对应的暴露限值。我们之前已经表明,α辐射和 X 射线可能相互作用,导致人外周血淋巴细胞中协同的 DNA 损伤反应,但个体内的变异性水平很高。为了评估变异性并验证协同作用,在一年中的 3 个季节的 9 个时间点从 2 名男性供体中抽取血液,并将其暴露于 0-2Gy 的 X 射线、α粒子或两者的 1:1 混合物(各半剂量)。通过染色体畸变和暴露后 24 小时测量的 3 个辐射反应基因 FDXR、CDKN1A 和 MDM2 的 mRNA 水平来量化 DNA 损伤反应。通过使用每个基因的两对引物来评估替代转录物差异表达的反应质量。在两个供体中,混合束对染色体畸变和基因表达的影响均高于预期,后者存在一些季节性变化。未检测到替代转录的协同作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd91/11106305/2d0177f9c0b9/41598_2024_62313_Fig1_HTML.jpg

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