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Cholinergic and Behavioral Neurotoxicity of Carbaryl and Cadmium to Larval Rainbow Trout (Oncorhynchus mykiss)

机译:Carbaryl和CaYmium的胆碱能和行为神经毒性在幼虫彩虹鳟鱼中(Oncorhynchus mykiss)

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摘要

Pesticides and heavy metals are common environmental contaminants that can cause neurotoxicity to aquatic organisms, impairing reproduction and survival. Neurotoxic effects of cadmium and carbaryl exposures were estimated in larval rainbow trout (RBT; Oncorhynchus mykiss) using changes in physiological endpoints and correlations with behavioral responses. Following exposures, RBT were videotaped to assess swimming speed. Brain tissue was used to measure cholinesterase (ChE) activity, muscarinic cholinergic receptor (MChR) number, and MChR affinity. ChE activity decreased with increasing concentrations of carbaryl but not of cadmium. MChR were not affected by exposure to either carbaryl or cadmium. Swimming speed correlated with ChE activity in carbaryl-exposed RBT, but no correlation occurred in cadmium-exposed 5sh. Thus, carbaryl exposure resulted in neurotoxicity reflected by changes in physiological and behavioral parameters measured, while cadmium exposure did not. Correlations between behavior and physiology provide a useful assessment of neurotoxicity.
机译:杀虫剂和重金属是常见的环境污染物,可导致水生生物,损害生存和存活的神经毒性。利用生理终点的变化和与行为响应的相关性估算镉和碳酸露出的神经毒性作用估计镉和碳酸癌曝光。在曝光之后,RBT被录像以评估游泳速度。脑组织用于测量胆碱酯酶(CHE)活性,毒蕈碱胆碱能受体(MCHR)数和MCHR亲和力。随着猪的浓度而不是镉的浓度,CHE活性降低。 MCHR不会受到Carbaryl或镉的影响。游泳速度与Carbaryl-Outprosed RBT中的CHE活动相关,但在镉暴露5SH中没有发生相关性。因此,Carbaryl暴露导致通过测量的生理和行为参数的变化反映的神经毒性,而镉暴露则没有。行为与生理学之间的相关性提供了对神经毒性的有用评估。

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