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水产养殖品中化学污染物与药物的相互作用及其对鱼类原代细胞关键解毒机制和细胞骨架的影响

Interactions of pharmaceuticals and other xenobiotics on key detoxification mechanisms and cytoskeleton in Poeciliopsis lucida hepatocellular carcinoma, PLHC-1 cell line.

机构信息

Department of Biological and Environmental Sciences, University of Gothenburg, Box 463, SE-405 30 Göteborg, Sweden.

出版信息

Toxicol In Vitro. 2013 Feb;27(1):111-20. doi: 10.1016/j.tiv.2012.10.002. Epub 2012 Oct 12.

DOI:10.1016/j.tiv.2012.10.002
PMID:23064032
Abstract

Fish are exposed to chemicals, including pharmaceuticals, in their natural habitat. This study focuses on effects of chemicals, including nine classes of pharmaceuticals, on key detoxification mechanisms in a fish liver cell-line (PLHC-1). Chemical interactions were investigated on efflux pumps, P-glycoprotein (Pgp) and multidrug resistance associated proteins (MRP1/MRP2), and on biotransformation enzymes, cytochrome P450 (CYP1A/CYP3A). Diclofenac and troleandomycin inhibited efflux activities, whereas ethinylestradiol activated efflux function. Exposure to troleandomycin and β-naphthoflavone induced MRP2 mRNA levels, but no effects were seen on MRP1 or Pgp expressions. Inhibition of CYP1A activities were seen in cells exposed to α-naphthoflavone, β-naphthoflavone, clotrimazole, nocodazole, ketoconazole, omeprazole, ethinylestradiol, lithocholic acid, rifampicin and troleandomycin. Exposure to fulvestrant, clotrimazole and nocodazole resulted in induction of CYP1A mRNA levels. Although, exposure to nocodazole resulted in disassembled microtubules. A CYP3A-like cDNA sequence was isolated from PLHC-1, but basal expression and activities were low and the gene was not responsive to prototypical CYP3A inducers. Exposure to ibuprofen, lithocholic acid and omeprazole resulted in fragmentation of microtubules. This study revealed multiple interactions on key detoxification systems, which illustrates the importance of study effects on regulation combined with functional studies to provide a better picture of the dynamics of the chemical defense system.

摘要

鱼类在其自然栖息地中会接触到包括药物在内的化学物质。本研究重点研究了包括九类药物在内的化学物质对鱼类肝细胞系(PLHC-1)中关键解毒机制的影响。研究了化学物质对流出泵、P-糖蛋白(Pgp)和多药耐药相关蛋白 1/2(MRP1/MRP2)以及生物转化酶细胞色素 P450(CYP1A/CYP3A)的相互作用。双氯芬酸和特利加压素抑制流出活性,而雌二醇激活流出功能。暴露于特利加压素和β-萘黄酮会诱导 MRP2 mRNA 水平,但对 MRP1 或 Pgp 表达没有影响。细胞色素 P4501A 活性的抑制见于暴露于α-萘黄酮、β-萘黄酮、克霉唑、诺考达唑、酮康唑、奥美拉唑、雌二醇、石胆酸、利福平、特利加压素的细胞中。暴露于氟维司群、克霉唑和诺考达唑导致 CYP1A mRNA 水平的诱导。尽管暴露于诺考达唑导致微管解体。从 PLHC-1 中分离出一种 CYP3A 样 cDNA 序列,但基础表达和活性较低,该基因对典型的 CYP3A 诱导剂没有反应。暴露于布洛芬、石胆酸和奥美拉唑导致微管碎片化。本研究揭示了关键解毒系统的多种相互作用,这说明了研究调节作用与功能研究相结合以提供化学防御系统动态更好的画面的重要性。

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