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  • 标题:Effects of PCB Congeners in Rodent Neuronal Cells in Culture;Effects of Chitosan
  • 其他标题:PCB 이성질체가 설치류 신경세포에 미치는 영향: 키토산의 효과
  • 本地全文:下载
  • 作者:Sun-Young Kim ; Hyun-Gyo Lee
  • 期刊名称:Environmental Health and Toxicology
  • 电子版ISSN:2233-6567
  • 出版年度:2007
  • 卷号:22
  • 期号:3
  • 语种:English
  • 出版社:Korean Society of Environmental Health and Toxicology
  • 摘要:The present study attempted to analyze the mechanism of PCB-induced neurotoxicity with respect to the PKC signaling. Since the developing neuron is particularly sensitive to PCB-induced neurotoxicity,we isolated cerebellar granule cells derived from 7-day old SD rats and grew cells in culture for additional 7 days to mimic PND-14 conditions. Only non-coplanar PCBs at a high dose showed a significant increase of total PKC activity at [3 H]PDBu binding assay,indicating that non-coplanar PCBs are more neuroactive than coplanar PCBs in neuronal cells. PKC isoforms were immunoblotted with respective monoclonal antibodies. PKC-alpha and - epsilon were activated with non-coplanar PCB exposure. The result suggests that coplanar PCBs have a PKC pathway different from non-coplanar PCBs. Activation of PKC with exposure was dampened with treatment of high molecular weight of chitosan. Chitoan (M.W.¤1,000 kDa) inhibited the total activity of PKC induced by the non-coplanar PCBs. Translocation of PKC isoforms was also inhibited by the high molecular weight of chitosan. The study demonstrated that non-coplanar PCBs are more potent neurotoxic congeners than coplanar PCBs and the alteration of PKC activities by PCB exposure can be blocked with the treatment of chitosan. The results suggest a potential use of chitosan as a means of nutritional intervention to prevent the harmful effects of pollutant-derived diseases.
  • 关键词:PCB;chitosan;structure-activity relation;neuron;PKC
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