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评估各种紫外线源对噬菌体T7剂量计中灭活和光产物诱导的影响。

Assessment of the effects of various UV sources on inactivation and photoproduct induction in phage T7 dosimeter.

作者信息

Fekete A, Vink A A, Gaspar S, Berces A, Modos K, Ronto G, Roza L

机构信息

Institute of Biophysics, Semmelweis University of Medicine, Budapest, Hungary.

出版信息

Photochem Photobiol. 1998 Oct;68(4):527-31.

PMID:9796435
Abstract

The correlation between the biologically effective dose (BED) of a phage T7 biological dosimeter and the induction of cyclobutane pyrimidine dimers (CPD) and (6-4) photoproducts ((6-4)PD) in the phage DNA was determined using seven various UV sources. The BED is the inactivation rate of phage T7 expressed in HT7 units. The CPD and (6-4)PD were determined by lesion-specific monoclonal antibodies in an immunodot-blot assay. The various lamps induced these lesions at different rates; the relative induction ratios of CPD to (6-4)PD increased with increasing effective wavelength of irradiation source. The amount of total adducts per phage was compared to the BED of phage T7 dosimeter, representing the average number of UV lesions in phage. For UVC (200-280 nm radiation) and unfiltered TL01 the number of total adducts approximates the reading; however, UV sources having longer effective wavelengths produced fewer CPD and (6-4)PD. A possible explanation is that although the most relevant lesions by UVC are the CPD and (6-4)PD, at longer wavelengths other photoproducts can contribute to the lethal damage of phages. The results emphasize the need to study the biological effects of solar radiation because the lesions responsible for the lethal effect may be different from those produced by various UV sources.

摘要

使用七种不同的紫外线光源,测定了噬菌体T7生物剂量计的生物学有效剂量(BED)与噬菌体DNA中环丁烷嘧啶二聚体(CPD)和(6-4)光产物((6-4)PD)诱导之间的相关性。BED是以HT7单位表示的噬菌体T7的失活率。通过免疫斑点印迹分析中损伤特异性单克隆抗体测定CPD和(6-4)PD。不同的灯以不同的速率诱导这些损伤;CPD与(6-4)PD的相对诱导率随着辐照源有效波长的增加而增加。将每个噬菌体的总加合物量与噬菌体T7剂量计的BED进行比较,BED代表噬菌体中紫外线损伤的平均数。对于UVC(200-280nm辐射)和未过滤的TL01,总加合物的数量接近读数;然而,具有较长有效波长的紫外线光源产生的CPD和(6-4)PD较少。一种可能的解释是,虽然UVC最相关的损伤是CPD和(6-4)PD,但在较长波长下,其他光产物可能导致噬菌体的致死损伤。结果强调了研究太阳辐射生物效应的必要性,因为导致致死效应的损伤可能与各种紫外线光源产生的损伤不同。

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