期刊文献+

日本血吸虫不同虫期和性别的虫体差异表达蛋白及基因研究 被引量:2

The study on differentially expressed proteins and genes at different development stages and gender of Schistosoma japonicum
原文传递
导出
摘要 血吸虫病是一种人兽共患、流行广泛的寄生虫病, 严重影响着人群的健康和社会经济的发展。血吸虫在整个生活史过程中,呈现显著的生物学和形态学变化,这种不同发育阶段虫体在形态学和生物学上的变化可能与不同发育阶段虫体蛋白、基因差异表达及独特的代谢和发育过程相关。分析比较不同发育阶段、不同性别之间的差异表达蛋白及基因,鉴定可能与血吸虫生长发育、致病等相关的分子,可为阐明日本血吸虫的生长发育机制,进而为筛选疫苗候选分子、新的诊断抗原及治疗药物靶标奠定基础。该文对日本血吸虫不同发育阶段和不同性别虫体差异表达蛋白及基因的研究进展进行综述。 Schistosomiasis remains one of the most prevalent parasitic zoonosis in human and livestock and continues to be a global public health and social economy concern in the developing countries. In each stage of the life cycle, sehistosome appears distinct characteristics in biology and morphology, which may he relevant to the differential protein and gene expression and special metabolism and development process at different stages. Ana- lyzing the differentially expressed proteins and genes involved in the growth and pathopoiesia could provide a basis for illuminating the development mechanism of sehistosome, and for the screening of vaccine candidates, new diagnosis antigens and new drug targets. The aim of this review is to summarize the recent development in studies on differentially expressed proteins and genes at different development stages and gender of Schistosomajaponicum.
出处 《国际医学寄生虫病杂志》 CAS 2013年第4期216-220,共5页 International JOurnal of Medical Parasitic Diseases
关键词 日本血吸虫 蛋白组 基因组 差异表达 Schistosomajaponicum Proteome Genome Differential expression
  • 相关文献

参考文献17

二级参考文献140

共引文献68

同被引文献27

  • 1吴锦雅,杨培良,周晓红,李华,陈晓光.应用抗SjP38的单克隆抗体建立血吸虫感染的胶体金免疫层析检测体系[J].第一军医大学学报,2005,25(5):538-541. 被引量:7
  • 2程喻力,徐明星,宋文剑,杨燕,刘文琪,李雍龙,裘敏燕,吴海.应用基因芯片分析HLA-DRB与晚期肝脾型日本血吸虫病的相关性[J].中国寄生虫学与寄生虫病杂志,2005,23(6):392-395. 被引量:2
  • 3许静,陈年高,冯婷,王恩木,吴晓华,陈红根,汪天平,周晓农,郑江.日本血吸虫病常用诊断方法现场查病效果的评估[J].中国寄生虫学与寄生虫病杂志,2007,25(3):175-179. 被引量:61
  • 4Tholen M, Wolanski J, Stolze B, et al. Stress-resistant translation of cathepsin L mRNA in breast cancer progression [J]. J Biol Chem, 2015, 290(25): 15758-15769.
  • 5Boukli NM, Delgado B, Ricaurte M, et al. Fasciola hepatica and Schistosoma mansoni: identification of common proteins by com- parative proteomic analysis [J]. J Parasitol, 2011, 97 (5): 852- 861.
  • 6El Ridi R, Tallima H, Selim S, et al. Cysteine peptidases as schis- tosomiasis vaccines with inbuih adjuvanticity [J ]. PLoS One, 2014, 9(1 ): e85401.
  • 7Buro C, Beckmann S, Oliveira KC, et al. Imatinib treatment caus- es substantial transcriptional changes in adult Schistosoma man- soni in vitro exhibiting pleiotropic effects[J]. PLoS Neg] Trop Dis, 2014, 8 (6):e2923.
  • 8Dougall AM, Skwarczynski M, Khoshnejad M, et al. Lipid core peptide targeting the cathepsin D hemoglobinase of Schistosoma mansoni as a component of a schistosomiasis vaccine [J]. Hum Vacein Immunother, 2014, 10(2): 399-409.
  • 9Zahoor Z, Lockyer AE, Davies A J, et al. Differences in the gene expression profiles of haemocytes from schistosome-susceptible and -resistant biomphalaria glabrata exposed to Schistosoma man- soni excretory-secretory products [J]. PLoS One, 2014, 9 (3): e93215.
  • 10Jilkova A, Horn M, Rezacova P, et al. Activation route of the Schistosoma mansoni cathepsin B1 drug target: structural map with a glycosaminoglycan switch [J]. Structure, 2014, 22 (12): 1786-1798.

引证文献2

二级引证文献5

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