期刊文献+

蒿甲醚对约氏疟原虫在斯氏按蚊体内发育影响

Effect of artemether on the development of Plasmodium yoelii in Anopheles stephensi
暂未订购
导出
摘要 目的研究蒿甲醚对约氏疟原虫在大劣按蚊体内发育的影响及其机制。方法本课题利用已经建立的斯氏按蚊-约氏疟原虫模型,通过吸饲蒿甲醚糖水的方法,观察蒿甲醚是否影响约氏疟原虫在斯氏按蚊体内的发育。通过RT-PCR方法,分析NOS、TEP1和PPO三个斯氏按蚊重要的免疫反应相关基因的表达变化,以了解青蒿素类药物蒿甲醚影响疟原虫在按蚊体内的发育机制。结果蒿甲醚可以促进疟原虫在按蚊体内的发育,使卵囊数量增长3-5倍。对其机制的研究中发现,斯氏按蚊吸饲蒿甲醚后,使NOS、TEP1和PPO三个免疫相关基因在转录水平下调,提示蒿甲醚可能通过抑制NO产生,丝氨酸级联反应及溶解反应,降低按蚊免疫反应,促进疟原虫在按蚊体内发育。结论蒿甲醚可能通过抑制斯氏按蚊免疫相关基因的表达,促进约氏疟原虫在斯氏按蚊体内发育。 Objective To explore the effect of artemether on the development of Plasmodium yoelii in Anopheles stephensi and its mechanism.Methods Basing on Plasmodium yoelii / Anopheles stephensi model,mosquitoes were fed on artemether,which the effect of artemether on the development of Plasmodia was observed.To learn the mechanism of artemether effected the development of Plasmodia,which the transcript variation of NOS,TEP1and PPO was analyzed by using RT-PCR.NOS,TEP1and PPO play important roles in immune response against plasmodia infection.Results Artemether enhanced the development of Plasmodium yoelii in Anopheles stephensi,and made the oocysts increase 3-to 5-folds.RT-PCR results showed that artemether inhibited the expression of NOS,TEP1 and PPO.Our research suggested that artemether may weaken Anopheles stephensi immune response against Plasmodium by inhibiting NO synthesis and melanization or lysis,which resulted in better development of Plasmodium in Anopheles stephensi.Conclusion Our research suggested that artemether may inhibit the expression of immune genes of mosquites,which results in better development of Plasmodium yoelii in Anopheles stephensi.
出处 《成都医学院学报》 CAS 2011年第2期107-110,共4页 Journal of Chengdu Medical College
基金 国家自然科学基金项目(NO.30771870)
关键词 斯氏按蚊 约氏疟原虫 蒿甲醚 免疫反应 Anopheles stephensi Plasmodium yoelii artemether immune response
  • 相关文献

参考文献14

  • 1Nicholas J White.The role of anti-malarial drugs in eliminating malaria[J].Malaria Journal,2008,7(8):1-6.
  • 2Javier Prada,Simone MuUer,Ulrich Bienzle,et al.Upregulation of reactive oxygen and nitrogen intermediates in Plasmodium berghei infected mice after rescue therapy with chloroquine or artemether[J].Journal of Antimicrobial Chemotherapy,1996,38(1):95-102.
  • 3Luckhart S,Yoram V,Liwang C,et al.The mosquito Anopheles stephensi limits malaria parasite development with inducible synthesis of nitric oxide[J].Immunology,1998,95(10):5700-5705.
  • 4Leyla Akman-Anderson,Martin Olivier,Shirley Luckhart,et al.Induction of Nitric Oxide Synthase and Activation of Signaling Proteinsin Anopheles Mosquitoes by the Malaria Pigment,Hemozoin[J].Infection and Immunity,2007,75(8):4012-4019.
  • 5Karbwang J,Na-Bangchang K,Tin T,et al.Pharmacokinetics of intramuscular artemether in patients with severe falciparum malaria with or without acute renal failure[J].Br J Clin Pharmacol,1998,45(6):597-600.
  • 6Abrantes P,George Dimopoulos,Ana Rita Grosso,et al.Chloroquine Mediated Modulation of Anopheles gambiae Gene Expression[J].PLoS ONE,2008,3(7):1-9.
  • 7Abrantes P,Lopes LF,do Rosario VE,et al.Effect of chloroquine on the expression of genes involved in the mosquito immune response to Plasmodium infection[J].Insect Biochem Mol Biol,2005,35(10):1124-1132.
  • 8Michel K,Kafatos FC.Mosquito immunity against Plasmodium[J].Insect Biochemistry Molecular Biology,2005,35(7):677-689.
  • 9Blandin S,Levashina EA.Mosquito immune responses against malaria parasites[J].Curr Opin Immunol,2004,16(1):16-20.
  • 10杨松,黄复生,段建华.斯氏按蚊丝氨酸蛋白酶基因克隆及其与约氏疟原虫卵囊黑化关系的研究[J].中国人兽共患病杂志,2005,21(12):1059-1063. 被引量:3

二级参考文献9

  • 1Blandin S,Levashina EA.Mosquito immune responses against malaria parasites[J].Current Opin Immunol,2004,16(1):16-20.
  • 2Liu CT,Hou RF,Ashida M,et al.Effects of inhibitors of serine protease,phenoloxidase and dopa decarboxylase on the melanization of Dirofilaria immitis microfilariae with Armigeres subalbatus haemolymph in vitro[J].Parasitology,1997,115 (Pt 1):57-68.
  • 3Gorman MJ,Andreeva OV,Paskewitz SM.Molecular characterization of five serine protease genes cloned from Anopheles gambiae hemolymph[J].Insect Biochem Mol Biol,2000,30(1):35-46.
  • 4Jiang HB,Ma CC,Lu ZQ,et al.β-1,3-Glucan recognition protein-2(βGRP-2)from Manduca Sexta:an acute-phase protein that binds β-1,3-glucan and lipoteichoic acid to aggregate fungi and bacteria and stimulate prophenoloxidase activation[J].Insect Biochem Mol Biol,2004,34(1):89-100.
  • 5Yu XQ,Jiang HB,Wang Y,et al.Nonproteolytic serine proteinase homologs are involved in prophenoloxidase activation in the tobacco hornworm,Manduca Sexta[J].Insect Biochem Mol Biol,2003,33(2):197-208.
  • 6Soderhall K,Cerenius L.Role of the prophenoloxidase activating system in invertebrate immunity[J].Curr Opin Immunol,1998,10(1):23-28.
  • 7Jiang H, Kanost MR.The clip-domain family of serine proteinases in arthropods[J].Insect Biochem Mol Biol,2000,30(2):95-105.
  • 8Gorman MJ,Andreeva OV,Paskewitz SM.SP22D:a multidomain serine protease with a putative role in insect immunity[J].Gene,2000,251(1):9-17.
  • 9杨松,黄复生,况明书,段建华.按蚊血淋巴丝氨酸蛋白酶与疟原虫卵囊黑化关系研究[J].中国寄生虫病防治杂志,2003,16(5):272-274. 被引量:5

共引文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部