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刘建安, 刘德华, 张太强, 静进, 易欢琼. 子宫内铅暴露对仔鼠学习能力的影响及预防[J]. 中国公共卫生, 2003, 19(9): 1093-1095.
引用本文: 刘建安, 刘德华, 张太强, 静进, 易欢琼. 子宫内铅暴露对仔鼠学习能力的影响及预防[J]. 中国公共卫生, 2003, 19(9): 1093-1095.
LIU Jian-an, LIU De-hu, ZHANG Tai-qing, . Effect of prenatal lead exposure on offspring's learning ability and prevention[J]. Chinese Journal of Public Health, 2003, 19(9): 1093-1095.
Citation: LIU Jian-an, LIU De-hu, ZHANG Tai-qing, . Effect of prenatal lead exposure on offspring's learning ability and prevention[J]. Chinese Journal of Public Health, 2003, 19(9): 1093-1095.

子宫内铅暴露对仔鼠学习能力的影响及预防

Effect of prenatal lead exposure on offspring's learning ability and prevention

  • 摘要:
      目的   研讨子宫内铅暴露致仔鼠学习能力影响, 维生素C、锌和硒对其保护作用。
      方法   Wistar性成熟雌鼠40只, 随机均分5组, 自妊娠之日起, 各组饮下列成分加双蒸水, 各成分为: 0.1mol/L醋酸铅(Pb2+)、0.1mol/L葡萄糖酸锌(Zn2+)、0.5%维生素C(VC)及亚硒酸钠(Se)强化饲料(0.5μg/kg)。对照组A: (双蒸水), 铅对照组B: (+Pb2+), C组: Pb2++VC, D组: Pb2++VC+Zn2+, 各组喂基础饲料。E组: 饮水(Pb2++VC+Zn2+), 喂Se强化饲料。各组分娩后, 分笼喂养, 由母鼠哺乳, 21d断乳, 每组仔鼠随机选10只, 进行学习记忆力的测试(跳台和水迷宫试验)。测试结束后, 处死动物, 测试仔鼠血、海马脑Pb、Zn和Se水平、大脑皮层单胺类神经递质和乙酰胆碱。
      结果   染铅B组仔鼠学习记忆力受损, 其大脑皮层5-HT、Ach下降, 多巴胺(DA)、去甲肾上腺素(NE)升高。C、D和E组学习记忆力有改善, 5-HT、Ach、DA及NE水平有所恢复, 以E组效果较好。孕鼠补锌、硒能提高仔鼠血Zn、Se水平; VC降血Pb, 锌、硒降血Pb和抗Pb蓄积, E组驱铅明显。
      结论   子宫内铅暴露损害仔鼠学习记忆能力, 维生素C、锌和硒对其智力损害均有保护作用, 三者联用, 效果较理想。

     

    Abstract:
      Objective   To evaluate prenatal lead exposure on the offspring's learning ability and protective effects of some drugs(zinc, selenite and VitC)through animal experiments.
      Methods   Forty pregnant wistar rats were divided into five groups randomly: group A(double distilled water, the control groups), group B(A plus 0.1 mol/L Pb acetate), group C(B plus 0.5% VitC), group D(C plus 0.1 mol/L glucono zinc), group E(D plus food containted 0.5 μg sodium selenite), providing them drinking water and food from the first day of gestation respectively, all groups were changed to intake deionized water and common food after birth.The learning ability of the pups were tested by water-maze and down tests at the 21-day old.Pb, Zn and Se concentration of blood and hippocampus were deter mined, so were NA, DA, 5-HT and Ach concentration of cerebral cortex.
      Results   (1) Prenatal lead exposure had adverse effects on the offspring's learning ability, which was probably induced by the decreased 5-HT and Ach and the increased NA, DA concentration in cerebral cortex, and which could be corrected by the supplementation of VitC, Zn and Se.(2)VitC could significantly decrease the lead level of blood, so could Zn and Se.Meanwhile, they also could significantly decrease accumulation of lead in the hippocampus of young rats.
      Conclusion   VitC, Zn and Se had protective function against Pb-induced toxicity and can protect lead toxicity on the offspring's learning ability, which can gain better effect by supplementing them together.

     

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