首页> 外文学位 >Evaluation of the developmental effects and bioaccumulation potential of triclosan and triclocarban using the South African clawed frog, Xenopus laevis.
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Evaluation of the developmental effects and bioaccumulation potential of triclosan and triclocarban using the South African clawed frog, Xenopus laevis.

机译:使用南非爪蛙非洲爪蟾评估三氯生和三氯卡班的发育效应和生物富集潜力。

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摘要

Triclosan (TCS) and triclocarban (TCC) are antimicrobials found in U.S. surface waters. This dissertation assessed the effects of TCS and TCC on early development and investigated their potential to bioaccumulate using Xenopus laevis as a model. The effects of TCS on metamorphosis were also investigated. For 0-week tadpoles, LC50 values for TCS and TCC were 0.87 mg/L and 4.22 mg/L, respectively, and both compounds caused a significant stunting of growth. For 4-week tadpoles, the LC50 values for TCS and TCC were 0.22 mg/L and 0.066 mg/L; and for 8-week tadpoles, the LC50 values were 0.46 mg/L and 0.13 mg/L.;Both compounds accumulated in Xenopus. For TCS, wet weight bioaccumulation factors (BAFs) for 0-, 4- and 8-week old tadpoles were 23.6x, 1350x and 143x, respectively. Lipid weight BAFs were 83.5x, 19792x and 8548x. For TCC, wet weight BAFs for 0-, 4- and 8-week old tadpoles were 23.4x, 1156x and 1310x. Lipid weight BAFs were 101x, 8639x and 20942x.;For the time-to-metamorphosis study, TCS showed an increase in weight and snout-vent length in all treatments. Exposed tadpoles metamorphosed approximately 10 days sooner than control tadpoles. For the hind limb study, although there was no difference in weight, snout-vent length, or hind limb length, the highest treatment was more developed compared to the control. There were no differences in tail resorption rates between the treatments and controls.;At relevant concentrations, neither TCS nor TCC were lethal to Xenopus prior to metamorphosis. Exposure to relatively high doses of both compounds resulted in stunted growth, which would most likely not be evident at lower concentrations. TCS and TCC accumulated in Xenopus , indicating that the compound has the potential to bioaccumulate through trophic levels. Although TCS may increase the rate of metamorphosis in terms of developmental stage, it did not disrupt thyroid function and metamorphosis in regards to limb development and tail resorption.
机译:三氯生(TCS)和三氯卡班(TCC)是在美国地表水中发现的抗菌剂。本文评估了TCS和TCC对早期发育的影响,并以非洲爪蟾为模型研究了它们在生物蓄积中的潜力。还研究了TCS对变态的影响。对于0周的t,TCS和TCC的LC50值分别为0.87 mg / L和4.22 mg / L,并且两种化合物均导致生长明显停滞。对于4周的t,TCS和TCC的LC50值分别为0.22 mg / L和0.066 mg / L。对于8周的t,LC50值分别为0.46 mg / L和0.13 mg / L。两种化合物都在非洲爪蟾中积累。对于TCS,0、4和8周龄t的湿重生物蓄积因子(BAF)分别为23.6x,1350x和143x。脂质重量BAF为83.5x,19792x和8548x。对于TCC,0、4和8周龄t的湿重BAF为23.4x,1156x和1310x。脂质重量BAF分别为101倍,8639倍和20942倍。对于变态时间研究,TCS在所有治疗中均显示体重和鼻突长度增加。暴露的t比对照t变态的时间要早​​约10天。对于后肢研究,尽管体重,鼻出口长度或后肢长度没有差异,但与对照组相比,最高的治疗方法更加完善。处理和对照组之间的尾巴吸收率没有差异。在相关浓度下,变态前TCS和TCC均未对爪蟾致死。暴露于相对较高剂量的两种化合物均会导致生长受阻,这在较低浓度下很可能不明显。 TCS和TCC在非洲爪蟾中积累,表明该化合物具有通过营养水平进行生物积累的潜力。尽管TCS可能会增加发育阶段的变态率,但它并没有破坏四肢发育和尾巴吸收方面的甲状腺功能和变态。

著录项

  • 作者

    King, Marie Kumsher.;

  • 作者单位

    University of North Texas.;

  • 授予单位 University of North Texas.;
  • 学科 Health Sciences Toxicology.;Biology Endocrinology.;Environmental Health.;Water Resource Management.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 227 p.
  • 总页数 227
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:31

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