...
首页> 外文期刊>International Journal of Radiation Biology: Covering the Physical, Chemical, Biological, and Medical Effects of Ionizing and Non-ionizing Radiations >Quantitative evaluation of the parameters of bacterial photoreactivation after exposure to ultraviolet light and ionizing radiation.
【24h】

Quantitative evaluation of the parameters of bacterial photoreactivation after exposure to ultraviolet light and ionizing radiation.

机译:暴露于紫外线和电离辐射后细菌光活化参数的定量评估。

获取原文
获取原文并翻译 | 示例

摘要

The purpose was to compare quantitatively the parameters of photoreactivation of an ultraviolet (UV) light hypersensitive strain of Escherichia coli Bs-1 irradiated with UV light and ionizing radiation. In addition, to evaluate the influence of the different physical and chemical factors on the parameters of the photoreactivation kinetics of the bacterial cells exposed to ionizing radiation. Survival curves and kinetics of the photoreactivation were measured in E. coli Bs-1 cells exposed to UV light (254 nm) and ionizing radiations (gamma-rays of 137Cs, gamma-rays of 60Co and 25 MeV pulsed X-rays). A mathematical model describing the process of photoreactivation in terms of a decreasing effective dose was applied to the experimental data obtained here and that published by others to evaluate quantitatively the probability of photoreactivation and the irreversible component of the radiation damage. Both the rate and extent of photoreactivation decreased in the following order of inactivating agents: WUVlight, pulsed X-ray beam, gamma-ray of 60Co and gamma-ray of 137Cs. However, the irreversible component of radiation damage increased with the same order of radiations whereas the probability of photoreactivation per unit time was independent of the kind of radiation. After exposure to 6 MeV photons, the parameters of photoreactivation were changed in the presence of caffeine or after irradiation in the presence of the radioprotective agent dithiothreitol. The independence of the probability of photoreactivation on the quality of radiation indicates the cells have the same ability to photoreactivate damage produced by different kinds of radiations and is an additional argument indicating that during ionizing radiation a UV-like damage can be produced. The decrease in the extent and the rate of photoreactivation with radiation quality is explained by the formation of irreversible damage rather than by the impairment of the photorecovery process itself. Chemical and physical factors influencing the relative contribution of ionization and excitation on the ionizing radiation effect could modify both the extent of the photoreactivation and the probability of the recovery per unit time. It is concluded that the mathematical approach used here may be useful to reveal some new relationships between the parameters of photoreactivation.
机译:目的是定量比较用紫外线和电离辐射照射的大肠杆菌Bs-1的紫外线(UV)过敏株的光活化参数。此外,要评估不同物理和化学因素对暴露于电离辐射的细菌细胞的光活化动力学参数的影响。在暴露于紫外线(254 nm)和电离辐射(137 Cs的γ射线,60Co的γ射线和25 MeV脉冲X射线)的大肠杆菌Bs-1细胞中,测定了光活化的存活曲线和动力学。将数学模型描述为以有效剂量递减的方式进行光活化的过程,并将其应用于此处获得的实验数据以及其他人发表的实验数据,以定量评估光活化的可能性和辐射破坏的不可逆成分。光灭活的速率和程度均按照灭活剂的以下顺序降低:WUVlight,脉冲X射线束,60Co的伽马射线和137Cs的伽马射线。然而,辐射损伤的不可逆成分随着相同数量的辐射而增加,而每单位时间光再活化的概率与辐射的种类无关。暴露于6 MeV光子后,在咖啡因存在下或在放射防护剂二硫苏糖醇存在下进行辐照后,改变了光活化的参数。光活化概率与辐射质量的独立性表明细胞具有相同的光活化不同种类辐射产生的损伤的能力,这是一个另外的论点,表明在电离辐射过程中会产生类似UV的损伤。光活化程度和辐射质量的降低与辐射质量的下降有关,是由于形成了不可逆的损害,而不是由于光回收过程本身受到了损害。影响电离和激发对电离辐射效应的相对贡献的化学和物理因素可以改变光活化的程度和每单位时间恢复的可能性。结论是,此处使用的数学方法可能有助于揭示光活化参数之间的一些新关系。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号