季节和成分变化对牛乳中4,4-二氯二苯三氯乙烷污染的影响

Vitalina Karaulna, L. V. Ezerkovska, I. Prymak, Y. Fedoruk, S. Chernyuk, L. Karpuk, A. Pavlichenko, S. Polishchuk, S. Kubrak, V. V. Bilkevich, N. Fedoruk
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摘要

本文介绍了在基辅州斯克维尔斯基区的一些定居点(Movchanivka村、Leninske村、Mali-Lisivtsi村、Velikopolovetskye村和Pustovarivka村)获得的牛奶样品中有机氯农药和滴滴涕含量的测定调查结果。一年中冬季和夏季牛奶中脂肪和蛋白质含量的分析。我们发现,在冬季,随着牛奶中脂肪含量的增加,滴滴涕及其衍生物的浓度也会增加。牛奶中有机氯化合物的含量没有超过最高允许水平。如果农药残留与食品一起长期流入人体生物体或饲料进入动物生物体,有毒物质会在其中逐渐积累,并对生物体的不同功能系统产生负面影响,从而干扰生物体的工作。有害物质的净化是通过将有毒物质代谢转化为更易在组织中移动的化合物来实现的,这些化合物可以更容易地从体内清除。用生物液和粪便清除体内有害物质,包括杀虫剂的代谢产物的过程非常漫长,其强度主要是由于外源性物质对人或动物的毒性负荷程度。人类和家畜对生活在特定农业地区的杀虫剂的毒性暴露程度和质量的一个指标可能是人类和温血牛奶中这些杀虫剂的水平。然而,最方便和负担得起的农药暴露于生物体的指标可能存在于牛奶中,主要是牛奶。该毒性负荷指示对象的最大优点是生物材料选择的可能性无限,并且体积不足,这对于卫生和卫生研究是必要的,因为不同农业地区的每个农场几乎都有牛群。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of the seasonal and compositional changes on 4,4-dichlorodiphenyltrichloroethane (DDT) contamination in cows milk
The article presents the results of investigations on the determination of the content of organochlorine pesticides and DDT in the milk samples obtained in some settlements (village Movchanivka, Leninske, Mali Lisivtsi, Velikopolovetskye, and Pustovarivka), Skvirsky district, Kyiv oblast. The analysis of fat and protein content in milk in the winter and summer periods of the year. We registered that in the winter period with an increase of fat content in the milk, the concentration of DDT and its derivatives also increases. The content of organochlorine compounds in cow's milk did not exceed the maximum permissible level. In case of prolonged inflow of pesticide residues with food products into the human organism or feed into the animal organism, toxic substances gradually accumulate in them and have a negative influence on different functional systems of organisms, causing disturbances in their work. Purification from harmful substances is carried out by metabolic conversion of toxicants into more mobile in tissues compounds that can be more easily removed from the body. The process of removal of harmful substances, including metabolites of pesticides from the body warm-blooded with biological fluids and fecal masses is very long, and its intensity is mostly due to the degree of toxic load of xenobiotics on a person or animal. An indicator of the degree and quality of toxic exposure of humans and domestic animals to pesticides that live in a particular agricultural region may be the levels of these pesticides in human and warm-blooded milk. However, the most convenient and affordable indicator of pesticide exposure to organisms may be found in cattle milk, primarily cow milk. The great advantage of this object of toxic load indication is the unlimited possibility of biomaterial selection and deficiency of volumes, necessary for sanitary and hygienic researches because herds of cattle are almost in every farm of different agricultural regions.
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