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Radiation interactions with biological systems

机译:与生物系统的辐射相互作用

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摘要

Purpose: The use of radiation, especially ionizing radiation (IR), is currently attracting great attention in the field of medical sciences. However, it should be mentioned that IR has both beneficial and harmful effects in biological systems. This review aims to focus on IR-mediated physiological events in a mechanistic way.Materials and methods: Evidence from the databases, mainly from PUBMED and SCIENCE DIRECT were considered.Results: IR directly and/or with their lyses products (indirect) causes oxidative stresses to biological systems. These activities may be localized and systematic. Otherwise, IR-induced non-/multi-targeted effects are also evident. IR in diagnosis and cancer radiotherapy is well-known. Reactive species produced by IR are not only beneficial, but also can exert harmful effects in a biological system such as aging, genetic instability and mutagenicity, membrane lysis and cell death, alteration of enzymatic activity and metabolic events, mitochondrial dysfunction, and even cancer. Additionally, DNA adducts formation, after IR-induced DNA breakage, is a cause of blockage of DNA repair capability with an increase in cellular radiosensitivity. These may allow cellular ruin even at low IR levels.Conclusion: Dependent on the dose, duration of action and quality, IR plays diverse roles in biological systems.
机译:目的:使用辐射,尤其是电离辐射(IR),目前在医学科学领域吸引了极大的关注。然而,应该提到IR在生物系统中具有有益和有害的影响。该审查旨在专注于机械方式的IR介导的生理事件。关于数据库的证据,主要来自数据库,主要来自PubMed和Science Direct。结果:IR直接和/或与其裂解产品(间接)引起氧化强调生物系统。这些活动可能是本地化和系统的。否则,IR诱导的非/多目标效果也是明显的。 IR诊断和癌症放射疗法是众所周知的。由IR产生的反应性物种不仅有益,而且可以在衰老,遗传不稳定和突变度,膜裂解和细胞死亡,酶活性和代谢事件的改变,线粒体功能障碍和甚至癌症中施加有害影响。另外,在IR诱导的DNA破裂后,DNA加合物形成是DNA修复能力堵塞的原因,随着细胞辐射敏感性的增加。这些即使在低IR水平下也可以允许细胞破产。结论:取决于剂量,作用持续时间和质量,IR在生物系统中起不同的作用。

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