Katagi Toshiyuki
Bioscience Research Laboratory, Sumitomo Chemical Co., Ltd., 3-1-98 Kasugadenaka, Konohana-ku, Osaka 554-8558, Japan.
J Pestic Sci. 2020 Feb 20;45(1):1-15. doi: 10.1584/jpestics.D19-074.
Metabolism is one of the most important factors in controlling the toxicity and bioaccumulation of pesticides in fish. systems using subcellular fractions, cell lines, hepatocytes and tissues of a specific organ, each of which is characterized by usability, enzyme activity and chemical transport membrane, have been applied to investigate the metabolic profiles of pesticides. Not only species and organs but also the fishkeeping conditions are known to greatly affect the metabolism of pesticides. A comparison of the metabolic profiles of pesticides and industrial chemicals taken under similar conditions has shown that systems using a subcellular S9 fraction and hepatocytes qualitatively reproduce many metabolic reactions. More investigation of these systems for pesticides is necessary to verify their applicability to the estimation of pesticide metabolism in fish.
代谢是控制鱼类体内农药毒性和生物累积的最重要因素之一。利用亚细胞组分、细胞系、肝细胞以及特定器官组织的系统,每种系统都具有可用性、酶活性和化学物质跨膜转运等特点,已被用于研究农药的代谢概况。不仅物种和器官,而且养鱼条件也被认为会极大地影响农药的代谢。对在相似条件下获取的农药和工业化学品代谢概况进行比较表明,使用亚细胞S9组分和肝细胞的系统能定性地重现许多代谢反应。有必要对这些农药系统进行更多研究,以验证它们在估计鱼类农药代谢方面的适用性。