首页> 外文会议>NATO Advanced Research Workshop on Multipollution Exposure and Risk Allessment - A Challenge for the Future; 20061001-05; Minsk(BY) >GENETIC EFFECTS OF COMBINED ACTION OF SOME CHEMICALS AND IONIZING RADIATION IN ANIMALS AND HUMAN CELLS
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GENETIC EFFECTS OF COMBINED ACTION OF SOME CHEMICALS AND IONIZING RADIATION IN ANIMALS AND HUMAN CELLS

机译:某些化学物质和电离辐射共同作用于动物和人类细胞的遗传效应

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Environmental contamination by radionuclides and different chemical substances results in exposure of human and other beings to a complex of physical and chemical factors. Results of combined influence of diverse agents can be unpredictable, because observed effects can differ from the sum of effects of each one taken separately.We studied cytogenetic effects of sodium nitrite and nitrate in drosophila and mice. It was found that these substances didn't possess mutagenic activity and sensibilized significantly (2-4 times) genetic effect of ionizing radiation. Genetic effects of herbicide zenkor were found to be completely different. Zenkor has mutagenic activity and irradiation of zenkor-treated mice results in decreasing aberration levels. Chronic influence of zenkor and gamma-rays leads to more strict "antagonistic" effect than acute one. Such effect can be explained by increased death of cells treated with both mutagenic factors - zenkor and irradiation. In the same time many food stuffs contain radioprotectors or antimutagens. We shown that melanin is very effective radioprotector not only against acute irradiation, but even against chronic one. Influence of different substances (melanin, tocopherol or zenkor) on fractionated irradiation is also different. So, phenomena of sensibilization, antagonism, protection or inhibition were observed. Influence of combined action of chemical and physical factors on hereditary structures are worthy of great attention and must be considered during taking environmental protection measures.
机译:放射性核素和不同化学物质对环境的污染导致人类和其他生物暴露于复杂的物理和化学因素中。由于观察到的效果可能与分别采取的每种效果的总和不同,因此各种试剂的综合效果的结果可能无法预测。我们研究了果蝇和小鼠中亚硝酸钠和硝酸盐的细胞遗传学作用。发现这些物质不具有诱变活性,并且对电离辐射的遗传效应具有显着的敏感性(2-4倍)。发现除草剂zenkr的遗传效应完全不同。 Zenkor具有诱变活性,对zenkor处理的小鼠进行辐照会导致畸变水平降低。 zenkor和伽马射线的慢性影响比急性影响更严格的“拮抗”作用。这种效应可以通过诱变因子-zenkor和辐射处理的细胞死亡增加来解释。同时,许多食品都含有辐射防护剂或抗突变蛋白。我们表明,黑色素不仅对急性辐射非常有效,甚至对慢性辐射也非常有效。不同物质(黑色素,生育酚或zenkor)对分级照射的影响也不同。因此,观察到增感,拮抗,保护或抑制的现象。化学和物理因素共同作用对遗传结构的影响值得高度重视,在采取环境保护措施时必须予以考虑。

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