Transgenerational changes in Daphnia magna under radio frequency radiation in the juvenile and puberty period.

IF 2.1 4区 医学 Q2 BIOLOGY International Journal of Radiation Biology Pub Date : 2023-01-01 DOI:10.1080/09553002.2022.2087928
Elena I Sarapultseva, Darya V Uskalova, Ksenya V Ustenko, Viktor N Tikhonov, Igor A Ivanov, Alexander V Tikhonov
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Abstract

Purpose: To analyze the results of direct and transgenerational effects of radio frequency electromagnetic fields (RF-EMF) on the model organism of crustaceans Daphnia magna.

Materials and methods: D. magna were chronically exposed at 900 GHz EMF with an energy flux density (EFD) of about 1 mW/cm2 in the juvenile and pubertal periods of their ontogenesis. The cytotoxicity of exposure as well as survival, fertility and teratogenic effect of directly exposed daphnids and their progeny across three generations were analyzed.

Results and conclusions: The results of our study show that exposure of RF-EMF at juvenile period can significantly affect the fertility and size of irradiated daphnids and their offspring of the first generation. The decrease in fertility may be associated with a cytotoxic effect on the cells of irradiated animals. The reduction in the size of the terminal spine and the body of individuals is an indicator of the negative impact of radiation on the protective strategy of the crustacean population. The reproductive process is restored by the second generation. The results of our study provide further insights into the possible mechanisms underlying the in vivo effects of RF-EMF.

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幼年期和发育期大水蚤在射频辐射下的跨代变化。
目的:分析射频电磁场(RF-EMF)对模式生物大水蚤(Daphnia magna)的直接和跨代影响。材料和方法:在发育的幼年期和发育期,长期暴露在900 GHz电磁场下,能量通量密度(EFD)约为1 mW/cm2。分析了直接暴露的水蚤及其后代三代的细胞毒性、存活率、生育力和致畸效应。结果与结论:本研究结果表明,幼年期接触射频电磁场对受辐射水蚤及其第一代后代的生育能力和体型有显著影响。生育能力的下降可能与受辐照动物细胞的细胞毒性作用有关。个体末端脊椎和身体尺寸的减小是辐射对甲壳类种群保护策略产生负面影响的一个指标。繁殖过程由第二代恢复。我们的研究结果为射频电磁场体内效应的可能机制提供了进一步的见解。
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来源期刊
CiteScore
5.00
自引率
11.50%
发文量
142
审稿时长
3 months
期刊介绍: The International Journal of Radiation Biology publishes original papers, reviews, current topic articles, technical notes/reports, and meeting reports on the effects of ionizing, UV and visible radiation, accelerated particles, electromagnetic fields, ultrasound, heat and related modalities. The focus is on the biological effects of such radiations: from radiation chemistry to the spectrum of responses of living organisms and underlying mechanisms, including genetic abnormalities, repair phenomena, cell death, dose modifying agents and tissue responses. Application of basic studies to medical uses of radiation extends the coverage to practical problems such as physical and chemical adjuvants which improve the effectiveness of radiation in cancer therapy. Assessment of the hazards of low doses of radiation is also considered.
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