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Assessment of tissue-specific accumulation elimination and toxic effects of dichlorodiphenyltrichloroethanes (DDTs) in carp through aquatic food web

机译:通过水生食物网评估鲤鱼中二氯二苯基三氯乙烷(DDT)的组织特异性积累消除和毒性作用

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摘要

Microcosms containing DDT spiked-sediment, Tubifex tubifex and carp (Cyprinus carpio) were constructed to simulate a freshwater system. The accumulation, elimination and toxic effects of DDT (p,p’-DDT, o,p’-DDT), and its metabolites DDD (p,p’-DDD, o,p’-DDD) and DDE (p,p’-DDE, o,p’-DDE) were studied in T. tubifex and carp. Tissue/organ distributions of DDTs were also investigated in carp. The bioaccumulation and elimination of DDT differed in T. tubifex, carp and its tissues/organs. Unimodal or bimodal distributions were observed, and the concentrations of DDT metabolites (DDD and p,p’-DDE) increased over time. The carp organ with the highest concentrations of DDTs (DDT, DDD and DDE) was the gill. The largest mass distribution of DDTs was also in gill, followed by muscle and gastrointestinal tract. Maximum levels of DDTs in whole carp and carp muscle were 161 and 87 ng/g, respectively; therefore, the levels of DDTs observed in carp in this study were insufficient to constitute a health concern if present in fish for human consumption. Significant changes were observed in some biomarkers, including superoxide dismutase, catalase, glutathione-S-transferase, glutathione, and carboxylesterase, in T. tubifex and carp tissues during DDT exposure. Tissue-specific accumulation of DDTs in carp can be a key indicator of exposure to environmentally relevant concentrations.
机译:构造了含有滴滴涕加标沉积物,塔比菲克斯·塔比菲克斯和鲤鱼(鲤)的缩影,以模拟淡水系统。 DDT(p,p'-DDT,o,p'-DDT)及其代谢产物DDD(p,p'-DDD,o,p'-DDD)和DDE(p,p)的累积,消除和毒性作用'-DDE,o,p'-DDE)在T.tubifex和鲤鱼中进行了研究。还研究了鲤鱼中滴滴涕的组织/器官分布。 D.tubifex,鲤鱼及其组织/器官中DDT的生物积累和消除作用不同。观察到单峰或双峰分布,DDT代谢物(DDD和p,p'-DDE)的浓度随时间增加。滴滴涕(DDT,DDD和DDE)浓度最高的鲤鱼器官是g。滴滴涕的最大质量分布也在g中,其次是肌肉和胃肠道。整个鲤鱼和鲤鱼肌肉中的滴滴涕最高含量分别为161和87 ng / g;因此,在这项研究中,在鲤鱼中观察到的滴滴涕水平不足以构成健康问题,如果存在于供人类食用的鱼中。在滴滴涕暴露期间,T.tubifex和鲤鱼组织中的某些生物标记物,包括超氧化物歧化酶,过氧化氢酶,谷胱甘肽-S-转移酶,谷胱甘肽和羧酸酯酶,发生了显着变化。鲤鱼中滴滴涕的组织特异性积累可能是暴露于环境相关浓度的关键指标。

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