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Acute and developmental behavioral effects of flame retardants and related chemicals in zebrafish

机译:阻燃剂和相关化学物质在斑马鱼中的急性和发育行为影响

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摘要

As polybrominated diphenyl ethers are phased out, numerous compounds are emerging as potential replacement flame retardants for use in consumer and electronic products. Little is known, however, about the neurobehavioral toxicity of these replacements. This study evaluated the neurobehavioral effects of acute or developmental exposure to t-butylphenyl diphenyl phosphate (BPDP), 2-ethylhexyl diphenyl phosphate (EHDP), isodecyl diphenyl phosphate (IDDP), isopropylated phenyl phosphate (IPP), tricresyl phosphate (TMPP; also abbreviated TCP), triphenyl phosphate (TPHP; also abbreviated TPP), tetrabromobisphenol A (TBBPA), tris (2-chloroethyl) phosphate (TCEP), tris (1,3-dichloroisopropyl) phosphate (TDCIPP; also abbreviated TDCPP), tri-o-cresyl phosphate (TOCP), and 2,2-,4,4′-tetrabromodiphenyl ether (BDE-47) in zebrafish (Danio rerio) larvae. Larvae (n ≈ 24 per dose per compound) were exposed to test compounds (0.4–120 µM) at sub-teratogenic concentrations either developmentally or acutely, and locomotor activity was assessed at 6 days post fertilization. When given developmentally, all chemicals except BPDP, IDDP and TBBPA produced behavioral effects. When given acutely, all chemicals produced behavioral effects, with TPHP, TBBPA, EHDP, IPP, and BPDP eliciting the most effects at the most concentrations. The results indicate that these replacement flame retardants may have developmental or pharmacological effects on the vertebrate nervous system.
机译:随着多溴二苯醚的逐步淘汰,许多化合物正在成为潜在的替代阻燃剂,用于消费类和电子产品。然而,关于这些替代品的神经行为毒性知之甚少。这项研究评估了急性或发育性暴露于叔丁基磷酸二苯酯(BPDP),2-乙基己基磷酸二苯酯(EHDP),异癸基磷酸二癸酯(IDDP),异丙基磷酸苯酯(IPP),磷酸三甲苯酯(TMPP)的神经行为影响缩写为TCP),磷酸三苯酯(TPHP;也缩写为TPP),四溴双酚A(TBBPA),磷酸三(2-氯乙基)酯(TCEP),磷酸三(1,3-二氯异丙基)酯(TDCIPP;也缩写为TDCPP),三-斑马鱼(Danio rerio)幼虫中的邻甲酚磷酸酯(TOCP)和2,2-,4,4'-四溴二苯醚(BDE-47)。幼虫(每剂每化合物n≈​​24)在发育或急性亚暴露于亚致畸形浓度的试验化合物(0.4–120 µM)下,在受精后第6天评估运动能力。从发育角度考虑,除BPDP,IDDP和TBBPA以外的所有化学物质均会产生行为影响。紧急使用时,所有化学物质均会产生行为效应,其中TPHP,TBBPA,EHDP,IPP和BPDP在最高浓度下产生最大效应。结果表明,这些替代阻燃剂可能对脊椎动物神经系统具有发育或药理作用。

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