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人工纳米材料富勒烯(C60)低剂量长期暴露对鲫鱼的氧化伤害 被引量:27

Oxidative Damages of Long-term Exposure to Low Level Fullerenes(C_(60)) in Carassius auratus
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摘要 为更好地判断人工纳米材料(富勒烯,C60)对水生生物的潜在健康危害,以鲫鱼(Carassius auratus)幼鱼为受试生物,研究了低剂量C60(0.04-1.0 mg.L^-1)长期(32 d)暴露对鲫鱼的氧化伤害.结果表明,各实验组中鲫鱼幼鱼脑、肝脏、鳃组织中的还原型谷胱甘肽(GSH)含量都发生显著降低(p〈0.05),其中1 mg.L^-1nC60/aq的暴露对鳃组织GSH含量的抑制率为14.3%,高于对鱼脑、肝脏组织中的抑制率;肝脏组织中过氧化氢酶(CAT)和超氧化物歧化酶(SOD)活性,以及鳃组织中Na^+-K^+-ATP酶活性均被显著激活,其最大活性分别是对照的121.34%(0.04 mg.L^-1暴露组)、114.80%(0.04 mg.L^-1暴露组)和348.59%(0.20mg.L^-1暴露组).实验结果揭示,长期暴露引起机体组织的氧化应激可能是水环境中C60的致毒机制之一. To determine the potential effects of fullerenes(C60) on aquatic organism,larval Carassius auratus was exposed to low level C60(0.04-1.0 mg·L^-1) for 32 days.Then the oxidative damages in brain,liver and gill tissue of larval Carassius auratus were measured.The results showed that: compared to the control,the reduced glutathione(GSH) contents in all different tissues decreased significantly(p〈0.05),and the most serious inhibition of GSH with a 14.3% inhibition rate was found in the gill tissue of larval crucian exposed to 1 (mg·L^-1) C60 aqueous suspension;whereas the superoxide dismutase(SOD) and catalase(CAT) activities in liver tissue,Na^+-K^+-ATPase activities in gill tissue were stimulated significantly(p〈0.05),and the maximal activity of them were 121.34%(exposed to 0.04(mg·L^-1) C60 aqueous suspension),114.80%(exposed to 0.04(mg·L^-1) C60 aqueous suspension) and 348.59%(exposed to 0.20(mg·L^-1) C60 aqueous suspension) respectively than that of control.The experiment results indicated that oxidative damages induced by long-term exposure might play a role in the bio-toxicity of C60 to larval crucian.
出处 《环境科学》 EI CAS CSCD 北大核心 2008年第4期855-861,共7页 Environmental Science
基金 国家自然科学基金项目(30470319) 高等学校博士点专项基金项目(20070055033)
关键词 纳米材料 富勒烯 鲫鱼 暴露 生态毒性 氧化伤害 nanomaterials fullerene C60 Carassius auratus exposure ecotoxicity oxidative damages
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参考文献17

  • 1Colvin V L. The potential environmental impact of engineered nanomaterials[ J ]. Nature Biotechnology, 2003, 21 (10) : 1166- 1170.
  • 2US Environmental Protection Agency, National Center for Environmental Research, Science to Achieve Results (STAR) Program; National Science Foundation; National Institute for Occupational Safety and Health. Nanotechnology research grants investigating environmental and human health effects of manufactured nanomaterials: a joint research solicitation [EB/OL]. EPA, NSF, NIOSH. 2004. 09. http://es. epa. gov/ncer/rfa/2004/2004-manufactured-nano. html. 2005-02-15.
  • 3朱小山,朱琳.人工纳米材料生物效应研究进展[J].安全与环境学报,2005,5(4):86-90. 被引量:18
  • 4Oberdorster E. Manufactured nanomaterials (fullerenes, C60 ) induce oxidative stress in the brain of juvenile largemouth bass [ J ]. Environmental Health Perspectives, 2004, 112(10) : 1058-1062.
  • 5Lyon D Y, Adams L K, Falkner J C, et al. Antimicrobial activity of fullerene water suspensions: Effects of preparation method and particle size[J]. Environmental Science and Technology, 2006, 40: 4360-4366.
  • 6Hcyman D. Solubility of C60 in alcohols and alkanes[J]. Carbon, 1996, 34:627-631.
  • 7Zhu S Q, Oberdorster E, Haasch M L. Toxicity of an engineered nanoparticle (fullerene, C60 ) in two aquatic species, Daphnia and fathead minnow [ J ]. Marine Environmental Research, 2006, 62 (Supplement 1) : S5-S9.
  • 8Oberdorster E, Zhu S Q. Blickley T M, et al. Ecotoxicology of carbon-based engineered nanoparticles: Effects of fullerene (C60) on aquatic organisms[J]. Carbon, 2006, 44: 1112-1120.
  • 9Moore M N. Do nanoparticles present ecotoxicological risks for the health of the aquatic environment? [J]. Environment International, 2006, 32 (8): 967-976.
  • 10Zhu X, Zhu L, Li Y, et al. Developmental Toxicity in Zebrafish Embryos After Exposure to Manufactured Nanomaterials: Buckminsterfullerene Aggregates ( nC60 ) and Funerol [ J ] .Environmental Toxicology and Chemistry, 2007, 2,6(5) : 976-979.

二级参考文献44

  • 1郭敏亮,姜涌明.考马斯亮蓝显色液组分对蛋白质测定的影响[J].生物化学与生物物理进展,1996,23(6):558-561. 被引量:104
  • 2黄文栋,钱凯先,李文铸.巴氏碳球C_(60)对红细胞膜的光敏作用研究[J].生物化学杂志,1996,12(4):483-487. 被引量:5
  • 3White House. National Nanotechnology Initiative : Leading to the Next Industrial Revolution [EB/OL]. The White House, Office of the Press Secretary, Washington, DC. http: //clinton4.nara.gov/textonly/WH/New/html/20000121-4. html. 2005-02-15.
  • 4Chiu-Wing Lam, James J T, Richard McCluskey, et al. Pulmonary toxicity of single-wall carbon nanotubes in Mice 7 and 90 days after intratracheal instillation[J]. Toxicological Sciences, 2004, 77(1 ): 126-134.
  • 5Amato I Nano's safety checkup [J]. Technology Review, 2004,107(1): 22-23.
  • 6Dagani R. Nanomaterials: safe or unsafe? [ J ]. Chemical and Engineering News, 2003, 81 (17) : 30- 33.
  • 7Service R F. Is nanotechnology dangerous? [J]. Science, 2000, 290(5496) : 1526 - 1527.
  • 8Vicki I Colvin. The potential environmental impact of engineered nanomaterials[J]. Nature Biotechnology, 2003, 21 (10) : 1166 - 1770.
  • 9Service R F. Nanomaterials show signs of toxicity [J]. Science, 2003,300(5617) : 243.
  • 10Gorman J. Taming high-tech particles [ J]. Science News, 2002, 161(March 30) : 200- 201.

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