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Effects of chlorothalonil on phagocyte function in fish (Morone saxatilis and Fundulus heteroclitus) and oysters (Crassostrea virginica): Mechanisms of immunotoxicity.

机译:百菌清对鱼类(Morone saxatilis和Fundulus heteroclitus)和牡蛎(Crassostrea virginica)的吞噬细胞功能的影响:免疫毒性机制。

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摘要

The pesticide chlorothalonil (2,4,5,6-tetrachloroisophthalonitrile, TCIN is the most commonly applied fungicide in the United States. A thiol-reactive agent, TCIN inactivates enzymes by binding to functional sulfhydryl groups. It is detoxified by glutathione (GSH) conjugation. The purpose of this research was to evaluate the effects of TCIN on immune system function in fish (striped bass, Morone saxatilus and mummichogs, Fundulus heteroclitus ) and oysters (Crassostrea virginica). Four separate exposure studies were performed. In the first study, phagocytes from the anterior kidneys of striped bass were exposed to TCIN (10–500 μg/L = 0.04–2.0 μM) in vitro for 20h. Cell viability was evaluated by the trypan blue exclusion assay. Phagocytosis was measured using fluorescent-labeled yeast. Reactive oxygen species (ROS) production was evaluated using chemiluminescent assays, and NADPH production was measured using a colorimetric assay based on the reduction of a tetrazolium. For the second study, this experiment was repeated using oyster hemocytes. The third study examined the effect of sulfhydryl-modifying agents (buthionine sulfoximine, BSO, and dithiothreitol, DTT) on TCIN-induced immunomodulation. Cell viability, superoxide generation, NADPH production, and lipid peroxidation were measured. The final experiments evaluated the effects of 48h in vivo exposure to TCIN (1.0–20 μg/L) using mummichogs. The endpoints tested included anterior kidney macrophage ROS production and hepatic inducible nitric oxide synthase (NOS) expression.; Results of these studies indicate that TCIN had no effect on phagocytosis, but did suppress ROS generation. NADPH production was enhanced at the 50–100 μg/L TCIN concentrations, but was decreased at higher concentrations. Oyster hemocytes were found to respond in a manner very similar to that of striped bass macrophages. In fish phagocytes, BSO was found to enhance the toxicity of TCIN, as measured by ROS production, whereas DTT reduced toxicity. TCIN did not induce lipid peroxidation, even when BSO-pre-incubation was employed. In vivo exposure of mummichogs to TCIN resulted in decreased ROS production in male fish, but not in females. Hepatic NOS expression exhibited a dose-dependent decrease in baseline expression. In conclusion, environmental exposures to TCIN have the potential to modulate phagocyte function; since multiple species are affected the effect may be ubiquitous.
机译:农药百菌清(2,4,5,6-四氯间苯二甲腈,TCIN是美国最常用的杀真菌剂。一种硫醇反应剂,TCIN通过与功能巯基结合而使酶失活。它被谷胱甘肽(GSH)解毒这项研究的目的是评估TCIN对鱼类(鲈鱼,鲈鱼,斜纹细木耳和mummichogs,斜纹独角茴香的斜体)和牡蛎(斜体)的免疫系统功能的影响。 (italic> Crassostrea virginica )。进行了四项单独的暴露研究:在第一项研究中,将条纹鲈鱼前肾的吞噬细胞体外暴露于TCIN(10–500μg/ L = 0.04–2.0μM), 20h。用锥虫蓝排除法评估细胞活力;使用荧光标记酵母检测吞噬作用;化学发光法评估活性氧(ROS)产生;比色法测定NADPH产生还原四唑。对于第二项研究,使用牡蛎血细胞重复该实验。第三项研究检查了巯基修饰剂(丁硫氨酸亚砜亚胺,BSO和二硫苏糖醇,DTT)对TCIN诱导的免疫调节的影响。测量细胞活力,超氧化物生成,NADPH产生和脂质过氧化。最终实验评估了使用木犀草素对TCIN(1.0–20μg/ L)体内暴露48h的影响。测试的终点包括肾脏前巨噬细胞ROS的产生和肝诱导型一氧化氮合酶(NOS)的表达。这些研究结果表明,TCIN对吞噬作用没有影响,但确实抑制了ROS的产生。在50–100μg/ L TCIN浓度下,NADPH产量增加,但在较高浓度下,NADPH产量下降。发现牡蛎血细胞以与条纹鲈鱼巨噬细胞非常相似的方式应答。在鱼的吞噬细胞中,发现BSO可以增强TCIN的毒性(通过ROS的产生来衡量),而DTT可以降低毒性。即使使用BSO预温育,TCIN也不会诱导脂质过氧化。穆米氏菌在体内暴露于TCIN会导致雄鱼体内ROS产生减少,而雌鱼却没有。肝NOS表达在基线表达中呈剂量依赖性降低。总之,TCIN暴露于环境中可能会调节吞噬细胞的功能。由于多种物种都受到影响,因此影响可能无处不在。

著录项

  • 作者

    Baier-Anderson, Caroline.;

  • 作者单位

    University of Maryland, Baltimore.;

  • 授予单位 University of Maryland, Baltimore.;
  • 学科 Environmental Sciences.; Agriculture Fisheries and Aquaculture.; Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 185 p.
  • 总页数 185
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境科学基础理论;水产、渔业;生物化学;
  • 关键词

  • 入库时间 2022-08-17 11:48:03

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