中国寄生虫学与寄生虫病杂志

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弓形虫感染对子一代雄性小鼠脑部多巴胺水平的影响

周永华1,2,朱虎平3,许金俊2,张英1,毛爱民3,杨静1,范峰3,许永良1,赵中兴3,陶建平2 *   

  1. 1 江苏省寄生虫病防治研究所,卫生部寄生虫病预防与控制技术重点实验室,江苏省寄生虫病学重点学科,无锡 214064;
    2 扬州大学兽医学院,扬州 225009;3 无锡市农畜产品检测中心,无锡 214023
  • 出版日期:2015-02-28 发布日期:2015-05-04
  • 基金资助:

    “十一五”国家科技支撑计划重点项目(No. 2010BAD04B02);教育部创新团队发展计划(No. IRT0978)

Effect of Toxoplasma gondii Infection in Female Mice on Dopamine Level in the Brain of the Male Offspring

ZHOU Yong-hua1,2,ZHU Hu-ping3,XU Jin-jun2,ZHANG Ying1,MAO Ai-min3,YANG Jing1,FAN Feng3,XU Yong-liang1,ZHAO Zhong-xing3,TAO Jian-ping2 *   

  1. 1 Jiangsu Institute of Parasitic Diseases; Key Laboratory on Technology for Parasitic Disease Prevention and Control,Wuxi 214064,China;2 College of Veterinary Medicine,Yangzhou University,Yangzhou 225009,China;3 Wuxi Centre of Inspection and Testing for Agricultural Products,Wuxi 214023,China
  • Online:2015-02-28 Published:2015-05-04
  • Supported by:

    Supported by the Key Projects in the National Science & Technology Pillar Program during the 11th Five-Year Plan Period(No. 2010BAD04B02) and the Program for Innovative Research Team in University of Ministry of Education of China(No. IRT0978)

摘要:

目的  探讨弓形虫感染对子一代雄性小鼠发育期脑部多巴胺水平的影响。  方法  36只雌性ICR小鼠随机分为健康对照组和弓形虫感染组,每组18只。感染组每鼠分别经口感染弓形虫PRU弱毒株10个包囊。感染后90 d,与健康雄性ICR小鼠按1 ∶ 1交配。每组各取2只交配成功的母鼠于孕20 d时剖腹取胎鼠。其他交配成功的母鼠自然分娩。应用高效液相色谱-电化学法对孕20 d的雄性胎鼠及出生后14 d和63 d的雄性仔鼠(各6只)进行脑皮层、小脑、海马和纹状体多巴胺含量的测定。  结果  感染组小鼠感染后死亡3只,余15只感染鼠中,仅6只交配成功。2只于孕20 d剖腹取胎鼠12只,其中雄性7只;4只自然分娩,仔鼠存活21只,其中雄性15只。18只对照组小鼠均交配成功,2只于孕20 d时剖腹取胎鼠23只,其中雄性12只;16只自然分娩,仔鼠存活179只,其中雄性92只。感染组和对照组雄性胎鼠小脑区多巴胺含量分别为(413.25±21.78)ng/g和(346.30±51.83)ng/g,感染组显著高于对照组(P<0.01),两者皮层区多巴胺含量差异无统计学意义(P>0.05)。感染组出生后14 d和63 d,雄性仔鼠皮层区[(462.50±24.80)ng/g和(1 215.77±113.64)ng/g]、小脑区[(271.55±26.19)ng/g和(1 328.82±39.62)ng/g]、海马区[(225.78±24.17)ng/g和(1 322.70±58.34)ng/g]和纹状体区[(455.23±61.53)ng/g和(991.32±54.31)ng/g]的多巴胺含量均显著高于相应对照组(P<0.05或P<0.01)。  结论  弓形虫感染能引起子一代雄性小鼠发育期脑部多巴胺水平显著升高。

关键词: 刚地弓形虫, 多巴胺, 高效液相色谱电化学法, 脑, 子一代

Abstract:

Objective  To investigate the effect of Toxoplasma gondii infection in female mice on dopamine level in the brain of male offspring.  Methods  Thirty-six ICR female mice were randomly divided into control group and infection group, 18 mice in each group. Each mouse in infection group was orally infected with 10 cysts of T. gondii Prugniaud strain. On the 90th day after infection, the infected female mice were mated with normal male ICR mice at 1 ∶ 1 ratio. On the 20th day of pregnancy, 2 mice in each group were delivered for fetal mice by cesarean section, and the brain of male fetal mice (n=6) in each group were collected. On the 14th and 63rd day after birth, 6 male offspring mice in each group were sacrificed, and the brain were collected. Dopamine levels in the cortex, cerebellum, hippocampus, and striatum were analyzed by high-performance liquid chromatography-electrochemical detection(HPLC-ECD).  Results  Three mice in infection group died during the experiment, and 6 out of 15 female mice mated successfully. The number of fetal mice and F1 generation mice in infection group was 12 (male: 7) and 21 (male: 15), respectively. All the mice in control group mated successfully. The number of fetal mice and F1 generation mice was 23(male: 12) and 179(male: 92), respectively. The dopamine level in the cerebellum of fetal mice of infection group and control group was (413.25±21.78) ng/g and (346.30±51.83) ng/g, respectively(P<0.01). No significant difference was found in dopamine content in the cortex between the two groups (P>0.05). Compared with the control  group, on the 14th day and 63rd day after birth, the dopamine content in cortical areas[(462.50±24.80) ng/g and (1 215.77±113.64) ng/g], cerebellum area[(271.55±26.19) ng/g and(1 328.82±39.62) ng/g], hippocampus area [(225.78±24.17) ng/g and (1 322.70±58.34) ng/g], and striatum area [(455.23±61.53) ng/g and (991.32±54.31) ng/g] of the male offspring in infection group were significantly higher than that of the control (P<0.05, P<0.01).  Conclusion  T. gondii infection in female mice causes an increase of dopamine level in the brain of F1 generation male mice.

Key words: Toxoplasma gondii, Dopamine, High-performance liquid chromatography-eletrochemical detection, Brain, Offspring