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首页> 外文期刊>Toxicological and Environmental Chemistry >Aqueous ractopamine exposure below 0.22 mg/L has no effect on mortality, malformation, or growth of developing Xenopus laevis tadpoles
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Aqueous ractopamine exposure below 0.22 mg/L has no effect on mortality, malformation, or growth of developing Xenopus laevis tadpoles

机译:含水性乳酰胺暴露于0.22 mg / L以下对Xenopus Laevis Tadpoles的死亡率,畸形或生长没有影响

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摘要

Ractopamine, a beta-adrenergic receptor agonist, is commonly used as a repartitioning agent and growth promotor in animal agriculture. There is evidence that ractopamine can enter natural water sources from livestock wastes, at concentrations in the low ng/L range. Currently, aquatic toxicity data for ractopamine is scarce. Therefore, in two separate experiments Xenopus laevis tadpoles were exposed to ractopamine in tank water at concentrations ranging from 2 ng/L to 2.2 mg/L for up to 14 d utilizing FETAX methodology. No overt signs of toxicity were identified in measured endpoints including survival, growth, malformation, and developmental stage. Oral ractopamine exposure in mammals and fish is associated with cardiotoxicity, increased mortality, and physiological alterations; however, this study suggests that aqueous ractopamine is not a developmental toxicant or overtly toxic to amphibians at environmentally relevant concentrations.[GRAPHICS].
机译:β-肾上腺素能受体激动剂牛氨酰胺通常用作动物农业中的省力分配剂和生长促进剂。有证据表明牛氨基胺可以从低Ng / L范围内的浓度进入牲畜废物的天然水源。目前,Ractopamine的水生毒性数据很少。因此,在两种单独的实验中,南欧平劳埃比斯蝌蚪以2ng / L至2.2mg / l的浓度暴露于罐水中的乳酰胺,其利用Fetax方法的浓度高达14d。在测量的终点中没有发现明显的毒性迹象,包括生存,生长,畸形和发育阶段。哺乳动物和鱼类中的口腔哺乳酰胺暴露与心脏毒性,增加死亡率和生理改变有关;然而,本研究表明,在环境相关浓度下,乳酰胺水溶性不是对两栖动物的发育毒性或公开毒性。[图形]。

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