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光谱灵敏度曲线在选择用于太阳紫外线监测的相关生物剂量计中的作用。

The role of the spectral sensitivity curve in the selection of relevant biological dosimeters for solar UV monitoring.

作者信息

Modos K, Gaspar S, Kerekgyarto T, Vink A A, Roza L, Fekete A

机构信息

Institute of Biophysics and Radiation Biology, Semmelweis University of Medicine, Budapest, Hungary.

出版信息

J Photochem Photobiol B. 1999 Nov-Dec;53(1-3):20-5. doi: 10.1016/s1011-1344(99)00116-5.

Abstract

To estimate the risk of enhanced UV-B radiation due to stratospheric ozone depletion, phage T7 and uracil thin-layer biological dosimeters have been developed, which weight the UV irradiance according to induced DNA damage. To study the molecular basis of the biological effects observed after UV irradiation, the spectral sensitivity curves of the two dosimeters and induction of the two major DNA photoproducts, cyclobutane pyrimidine dimers (CPDs) and 6-4 photoproducts ((6-4)PDs), in phage T7 have been determined for polychromatic UV sources. CPDs and (6-4)PDs are determined by lesion-specific monoclonal antibodies in an immunodotblot assay. Phage T7 and uracil biological dosimeters together with a Robertson-Berger (RB) meter have been used for monitoring environmental radiation from the polar region to the equator. The biologically effective dose (BED) established with the three different dosimeters increases according to the changes in the solar angle and ozone column, but the degree of the change differs significantly. The results can be explained based on the different spectral sensitivities of the dosimeters. A possible method for determining the trend of the increase in the biological risk due to ozone depletion is suggested.

摘要

为评估平流层臭氧消耗导致的紫外线B辐射增强风险,已开发出噬菌体T7和尿嘧啶薄层生物剂量计,它们根据诱导的DNA损伤对紫外线辐照度进行加权。为研究紫外线照射后观察到的生物效应的分子基础,已针对多色紫外线源测定了两种剂量计的光谱灵敏度曲线以及噬菌体T7中两种主要DNA光产物——环丁烷嘧啶二聚体(CPD)和6-4光产物((6-4)PD)的诱导情况。CPD和(6-4)PD通过免疫斑点印迹分析中病变特异性单克隆抗体进行测定。噬菌体T7和尿嘧啶生物剂量计与罗伯逊-伯格(RB)仪一起用于监测从极地地区到赤道的环境辐射。用三种不同剂量计确定的生物有效剂量(BED)随太阳角度和臭氧柱的变化而增加,但变化程度差异显著。这些结果可根据剂量计不同的光谱灵敏度来解释。提出了一种确定臭氧消耗导致生物风险增加趋势的可能方法。

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