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1)  reproductive genotoxicity
生殖遗传毒性
1.
Our study aims to further calibrate the oxidative damage and reproductive genotoxicity and mechanism of FA .
本课题探讨了吸入甲醛致小鼠氧化损伤和生殖遗传毒性,藉以探讨甲醛的毒性效应及其机制,为人群健康监测提供早期灵敏的生物效应标志物。
2)  Reproductive and genetic toxicity
生殖和遗传毒性
3)  biological genetic toxicity
生物遗传毒性
1.
The removal effects of trace organics in water by the four processes were investigated,and the biological genetic toxicity and biostability of the outflow water from O3/AC and UV/AC processes were also investigated.
为保证直饮水水质并提高其安全性,采用AC、O3/AC、UV/AC、O3/UV/AC工艺对自来水进行处理,考察4种工艺对水中微量有机物的去除效果和O3/AC、UV/AC工艺出水的生物遗传毒性及水质的生物稳定性。
4)  genotoxicity
遗传毒性
1.
Studies on quantitative structure-genotoxicity of substituted benzenes on the human lymphocyte;
取代苯对人体细胞的定量结构—遗传毒性研究
2.
Genotoxicity of the pesticide Dichlorvos and herbicide Butachlor in Rhacophorus megacephalus tadpoles;
杀虫剂敌敌畏和除草剂丁草胺对斑腿树蛙蝌蚪的遗传毒性(英文)
3.
Studies on genotoxicity of gaseous formaldehyde on human buccal cells.;
气态甲醛对人体颊黏膜细胞遗传毒性的研究
5)  genetic toxicity
遗传毒性
1.
Study on the genetic toxicity of disinfection by-products in drinking water;
饮用水消毒副产物的遗传毒性研究
2.
A study on the genetic toxicity of formaldehyde emitted from wood-based panels;
人造板材释放的甲醛所致遗传毒性的研究
3.
Comparison of SCGE and chromosome aberrations for detecting genetic toxicity;
SCGE和染色体畸变分析用于遗传毒性检测的比较
6)  hereditary toxicity
遗传毒性
1.
On the hereditary toxicity of the landfilled refuse leachate;
垃圾渗滤液的遗传毒性研究
2.
Objective To study the hereditary toxicity and adaptability of siliconegel breast filling(SBF) after its sterilization by means of irradiation and to approach the application of irradiation in the field of polymeric biomaterials sterilization.
目的研究硅凝胶充填乳房植入物辐照灭菌后遗传毒性和适应性,探索辐照灭菌在高分子生物材料灭菌中的应用。
3.
Objective To study general toxicity,hereditary toxicity and mutagenicity of quaternary ammonium compound detergent.
目的 研究季氨化合物洗消剂的毒性、遗传毒性及致突变性。
补充资料:生殖毒性
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性质:指外来物质对雌性和雄性生殖系统,包括排卵、生精,从生殖细胞分化到整个细胞发育,也包括对胚胎细胞发育所致的损害,引起生化功能和结构的变化,影响繁殖能力,甚至累及后代。据报道,已有五、六千种化学物质具有生殖毒性。二溴氯丙烷是典型的生殖毒生,可致精子减少,活力缺乏和性腺发育不全,以致不育。镉、邻苯二甲酸二乙基已酯可引起不同类型的睾丸损害,多环芳烃、博来霉素和二硫化碳可致雌性生殖系统的损害。

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