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Immunotoxic Effects of Persistent Organic Pollutants on the Northern Leopard Frog, Lithobates (Rana) pipiens.

机译:持久性有机污染物对北豹蛙,石tho(Rana)pipiens的免疫毒性作用。

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摘要

Lithobates (Rana) pipiens is a native amphibian species of north central North America and has experienced population declines, making it of interest to investigate whether organic contaminant exposure compromises immune function in this frog species. L. pipiens is exposed to a variety of contaminants in the wild, including the two that are the focus of this dissertation, polybrominated diphenyl ethers (PBDEs) and polychlorinated biphenyls (PCBs). Tadpoles, orally exposed to environmentally relevant levels of PBDEs, were assessed for innate and adaptive immune responses following metamorphosis. PBDE exposure significantly decreased secondary antibody response to the antigen, keyhole limpet hemocyanin (KLH). Innate immune measures were not significantly altered by PBDE exposure. When tadpoles were exposed to environmentally relevant, dietary levels of PCB-126, there were no effects of PCB-126 on survival, growth and development of tadpoles, but there were alterations in immune responses. PCB-exposed frogs, challenged with KLH, had significantly decreased levels of KLH-specific IgY antibodies compared to the control frogs. The amount of secreted antimicrobial skin peptides (AMPs) was also significantly decreased in PCB-treated animals, but the composition of AMPs was not affected by PCB exposure. We ran two additional exposure trials to test whether life stage affected immune response following PCB-126 exposure. When tadpoles were exposed to PCB-126 and also challenged with a primary injection of KLH, the level of KLH-specific IgY antibodies produced following metamorphosis was significantly suppressed compared to control frogs. However, suppression was not apparent when animals were exposed to PCB-126 only after metamorphosis. To assess innate immune response, we measured complement hemolytic activity in the juvenile frogs. Larval PCB-126 exposure decreased hemolytic activity of frogs compared to unexposed frogs, but this suppression was no longer apparent when frogs were exposed only after metamorphosis. This is the first study to demonstrate differences in immunotoxicity between anuran life stages, and that a carry-over effect of larval immune disruption due to PCB-126 exposure persisted through metamorphosis and suppressed post-metamorphic frog immunity. The collection of research in this dissertation provides evidence in juvenile L. pipiens for immunomodulation following exposure to both PBDEs and PCB-126.
机译:Lithobates(Rana)pipiens是北美中北部的一种天然两栖动物,并且种群数量减少,因此研究有机污染物暴露是否会损害这种青蛙物种的免疫功能引起了人们的兴趣。 pipiens L. pipiens在野外暴露于多种污染物,包括本论文重点研究的两种污染物,即多溴联苯醚(PBDEs)和多氯联苯(PCBs)。评估暴露于环境相关水平的多溴二苯醚的的先天性和适应性免疫反应。 PBDE暴露显着降低了对抗原匙孔血蓝蛋白(KLH)的二级抗体反应。 PBDE暴露并没有明显改变先天免疫措施。当t暴露于与环境相关的饮食中PCB-126时,PCB-126对survival的存活,生长和发育没有影响,但免疫反应会发生变化。与对照青蛙相比,受到KLH攻击的PCB暴露青蛙的KLH特异性IgY抗体水平显着降低。在PCB处理过的动物中,分泌的抗菌皮肤肽(AMPs)的数量也显着减少,但是AMPs的组成不受PCB暴露的影响。我们另外进行了两次接触试验,以测试生命周期是否会影响PCB-126接触后的免疫反应。当t暴露于PCB-126并通过初次注射KLH攻击时,与对照青蛙相比,变态后产生的KLH特异性IgY抗体水平被显着抑制。然而,当动物仅在变态后才暴露于PCB-126时,抑制作用并不明显。为了评估先天免疫反应,我们测量了幼蛙的补体溶血活性。与未暴露的青蛙相比,幼虫PCB-126暴露降低了青蛙的溶血活性,但是当青蛙仅在变态后才暴露时,这种抑制作用不再明显。这是第一个证明无寿期生命阶段之间免疫毒性差异的研究,并且由于变态和抑制了变态后的青蛙免疫,由于PCB-126暴露而导致的幼虫免疫破坏的残留效应仍然存在。本论文的研究成果为幼稚的L. pipiens暴露于PBDEs和PCB-126后的免疫调节提供了证据。

著录项

  • 作者

    Cary, Tawnya L.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Biology Zoology.;Health Sciences Immunology.;Environmental Sciences.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 181 p.
  • 总页数 181
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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