低水平电离辐射会对我们造成伤害吗?

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
M. Janiak, M. Waligórski
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引用次数: 1

摘要

目前的放射防护系统依赖于线性不冻融(LNT)假说,即由于人类暴露于电离辐射(IR)而导致的癌症风险。根据这一原则,通过从实际观察到有害影响的高剂量和剂量率区域向下线性外推,评估低剂量(即急性和慢性暴露分别不超过100 mGy或0.1 mGy/min的X射线或γ射线)的影响。然而,多年来积累的证据清楚地表明,人类暴露在低剂量辐射下不会造成任何伤害,而且通常会促进健康。在这篇综述中,我们讨论了一些流行病学分析、临床试验和对照实验动物研究的结果。流行病学数据表明在最低剂量范围存在阈值和偏离线性。实验研究清楚地证明了低剂量和高剂量IR下生物学机制和效果之间的质的差异。我们还讨论了LNT原则持续存在的原因和可能原因,尽管它在科学上是不可信的,并产生了有害的社会后果。现在是时候用基于科学的剂量-效应关系来取代LNT范式了,在这种关系中,可以利用现实的定量兴奋或阈值模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Can Low-Level Ionizing Radiation Do Us Any Harm?
The current system of radiological protection relies on the linear no-threshold (LNT) hypothesis of cancer risk due to humans being exposed to ionizing radiation (IR). Under this tenet, effects of low doses (i.e. of those not exceeding 100 mGy or 0.1 mGy/min. of X- or γ-rays for acute and chronic exposures, respectively) are evaluated by downward linear extrapolation from regions of higher doses and dose rates where harmful effects are actually observed. However, evidence accumulated over many years clearly indicates that exposure of humans to low doses of radiation does not cause any harm and often promotes health. In this review, we discuss results of some epidemiological analyses, clinical trials and controlled experimental animal studies. Epidemiological data indicate the presence of a threshold and departure from linearity at the lowest dose ranges. Experimental studies clearly demonstrate the qualitative difference between biological mechanisms and effects at low and at higher doses of IR. We also discuss the genesis and the likely reasons for the persistence of the LNT tenet, despite its scientific implausibility and deleterious social consequences. It is high time to replace the LNT paradigm by a scientifically based dose-effect relationship where realistic quantitative hormetic or threshold models are exploited.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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