研究对二氯苯的遗传毒性作用。
目的:评价茶油的急性毒性和遗传毒性作用。
提示我们危货站空气污染物具有直接遗传毒性作用。
It indicated that air pollution of DCARTS had direct mutagenesis.
结论四氯化碳对小鼠生殖细胞和血红细胞有遗传毒性作用。
Conclusion Carbon tetrachloride has genetic toxic effect on the PCE cell and germ cell in the mice.
结论证明食用油烟雾冷凝物中的一些化学成分具有较强的隐性致死作用,对果蝇的生殖系统具有遗传毒性作用。
Conclusions Some of the various compounds in the condensation of edible oil fume were proved to have high recessive lethal effect and also genotoxic effect on the reproductive system of drosophila.
目的观察中药益母草的遗传毒性和抗诱变作用。
Objective to observe the genetic toxicity and anti-mutation effect of Herba Leonuri.
研究空心莲子草的化感作用和遗传毒性机理对于有效治理该入侵种具有十分重要的意义。
It is important significance that studied the mechanism of the allelopathy and heredity toxicity of this species to effectively control the invasive plant.
结论:理中汤对环磷酰胺产生的遗传毒性有明显的抑制作用。
Conclusion: Lizhong Decoction has obvious inhibiting effect on genetic toxicity caused by CTX.
采用细胞体外培养的方法,在卵巢颗粒细胞对数生长期,对f - 2毒素的繁殖遗传毒性和V - E对其的解毒作用进行了研究。
During logarithmic phase of cultivated ovary granulose cell, experiments were carried out to investigate the genetically procreation toxicity of F-2 toxin and the detoxification of V-E.
目的:探讨细胞间隙通讯和细胞钙离子信号传导系统在非遗传毒性致癌物的遗传外致癌过程中的作用。
Objective: To discuss the effects of gap junction function and calcium mediated signal transduction system on nongenotoxic carcinogenesis.
目的:观察氯化锂的遗传毒性特征并对其毒作用机制做一初步探讨。
Objective: to study the genotoxicity of lithium chloride and its mechanism in mice.
目的研究香烟烟雾水溶物对雄性小鼠的生殖和遗传毒性,探讨其作用机理。
Objectives to test reproductive and genetic toxicity induced by water-soluble contents of cigarette smoke (WSCCS), and explore the mechanism.
大部分的遗传毒性致癌物是与DNA结合的亲电子试剂,它们直接与DNA相互作用,形成共价键,从而形成DNA -致癌物复合体,或称之为dna加合物。
Most of Genotoxic carcinogens are electrophiles that bind with DNA, and they interact directly with DNA and form covalent bond, resulting in DNA-carcinogen complexes, or DNA adducts.
大部分的遗传毒性致癌物是与DNA结合的亲电子试剂,它们直接与DNA相互作用,形成共价键,从而形成DNA -致癌物复合体,或称之为dna加合物。
Most of Genotoxic carcinogens are electrophiles that bind with DNA, and they interact directly with DNA and form covalent bond, resulting in DNA-carcinogen complexes, or DNA adducts.
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