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Chromosomal aberrations in peripheral blood lymphocytes exposed to a mixed beam of low energy neutrons and gamma radiation

机译:暴露于低能中子和γ射线混合束的外周血淋巴细胞的染色体畸变

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摘要

Cells exposed to thermal neutrons are simultaneously damaged by radiations with high and low linear energy transfer (LET). A question relevant for the assessment of risk of exposure to a mixed beam is whether the biological effect of both radiation types is additive or synergistic. The aim of the present investigation was to calculate whether the high and low LET components of a thermal neutron field interact when damaging cells. Human peripheral blood lymphocytes were exposed to neutrons from the HB11 beam at the Institute for Energy and Transport, Petten, Netherlands, in a 37°C water phantom at varying depths, where the mix of high and low LET beam components differs. Chromosomal aberrations were analysed and the relative biological effectiveness (RBE) values as well as the expected contributions of protons and photons to the aberration yield were calculated based on a dose response of aberrations in lymphocytes exposed to ~(60)Co gamma radiation. The RBE for 10 dicentrics per 100 cells was 3 for mixed beam and 7.2 for protons. For 20 dicentrics per 100 cells the respective values were 2.4 and 5.8. Within the limitations of the experimental setup the results indicate that for this endpoint there is no synergism between the high and low LET radiations.
机译:暴露于热中子的细胞同时受到具有高和低线性能量转移(LET)的辐射的损害。与评估暴露于混合光束的风险有关的一个问题是,两种辐射类型的生物效应是加和还是协同的。本研究的目的是计算在破坏细胞时热中子场的高和低LET分量是否相互作用。在37°C水幻影中,人类外周血淋巴细胞在37°C水幻影中暴露于来自HB11束的中子,其中HB11束的高低LET束成分不同。分析了染色体畸变,并根据暴露于〜(60)Coγ射线的淋巴细胞的畸变的剂量响应,计算了相对生物学功效(RBE)值以及质子和光子对畸变产量的预期贡献。每100个像元10个双着丝粒的RBE对于混合束为3,对于质子为7.2。对于每100个电池20个双着丝粒,分别为2.4和5.8。在实验设置的限制内,结果表明,对于该终点,高和低LET辐射之间没有协同作用。

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