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  • 标题:Hydroxylation Increases the Neurotoxic Potential of BDE-47 to Affect Exocytosis and Calcium Homeostasis in PC12 Cells
  • 作者:Milou M.L. Dingemans ; Aart de Groot ; Regina G.D.M. van Kleef
  • 期刊名称:Environmental Health Perspectives
  • 印刷版ISSN:0091-6765
  • 电子版ISSN:1552-9924
  • 出版年度:2008
  • 卷号:116
  • 期号:5
  • 页码:637-643
  • DOI:10.1289/ehp.11059
  • 语种:English
  • 出版社:OCR Subscription Services Inc
  • 摘要:Background Oxidative metabolism, resulting in the formation of hydroxylated polybrominated diphenyl ether (PBDE) metabolites, may enhance the neurotoxic potential of brominated flame retardants. Objective Our objective was to investigate the effects of a hydroxylated metabolite of 2,2′,4,4′-tetra-bromodiphenyl ether (BDE-47; 6-OH-BDE-47) on changes in the intracellular Ca2+ concentration ([Ca2+] i ) and vesicular catecholamine release in PC12 cells. Methods We measured vesicular catecholamine release and [Ca2+] i using amperometry and imaging of the fluorescent Ca2+-sensitive dye Fura-2, respectively. Results Acute exposure of PC12 cells to 6-OH-BDE-47 (5 μM) induced vesicular catecholamine release. Catecholamine release coincided with a transient increase in [Ca2+] i , which was observed shortly after the onset of exposure to 6-OH-BDE-47 (120 μM). An additional late increase in [Ca2+] i was often observed at ≥1 μM 6-OH-BDE-47. The initial transient increase was absent in cells exposed to the parent compound BDE-47, whereas the late increase was observed only at 20 μM. Using the mitochondrial uncoupler carbonyl cyanide 4-(trifluoromethoxy)phenylhydrazone (FCCP) and thapsigargin to empty intracellular Ca2+ stores, we found that the initial increase originates from emptying of the endoplasmic reticulum and consequent influx of extracellular Ca2+, whereas the late increase originates primarily from mitochondria. Conclusion The hydroxylated metabolite 6-OH-BDE-47 is more potent in disturbing Ca2+ homeostasis and neurotransmitter release than the parent compound BDE-47. The present findings indicate that bioactivation by oxidative metabolism adds considerably to the neurotoxic potential of PBDEs. Additionally, based on the observed mechanism of action, a cumulative neurotoxic effect of PBDEs and ortho -substituted polychlorinated biphenyls on [Ca2+] i cannot be ruled out.
  • 关键词:bioactivation; brominated flame retardants; calcium; catecholamine; exocytosis; intra-cellular calcium stores; neurotoxicity; neurotransmitter release; persistent organic pollutants; poly-brominated diphenyl ether
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