期刊文献+

利用SYBR Green检测衣原体Real-Time PCR方法的建立 被引量:2

Development of a Real-Time PCR Assay for Detection and Quantitation of Chlamydia Using SYBR Green and the Light Cycler
下载PDF
导出
摘要 利用SYBR Green建立了检测种特异性衣原体的Real-Time PCR方法。本方法应用衣原体种特异性的高度保守特异引物,能够扩增627bp特异片段;使用定量标准基因组DNA,本方法能准确检测最少250fg衣原体DNA。Real-TimePCR方法与免疫荧光方法的检测结果表明:检测4种衣原体临床样本,Real-TimePCR敏感性均在96%~98%;特异性均为100%;这两种方法符合率达97%以上(n=60);批内和批间重复性试验结果表明,本方法具有良好的准确性。本方法的建立对于快速、准确检测临床样本种特异性衣原体提供了一种切实有效的方法。 Here, we presented a Chlamydiaceae-specific 23S rRNA--based real-time PCR assay for simultaneous detection and quantltation of four members of Chlamydiaceae family, C. trachomatis, C. psittaci, C. pneumoniae and C. Decorum, using SYBR Green and LightcyclerTM. The as- say was characterized using plasmid constructs of the bacteria and verified on standard strains of all four species of the Chlamydiaceae and a large cohort of clinical samples collected from human and animals by comparison with fluorescence immunohistochemistry method. The results showed that the present real-time PCR assay was of high specificity and sensitivity. It was capable of detecting as few as 250 fg of chlamydial DNA (equivalent to 10^-1 IFU) and was applicable to both liquid cultures and clinical samples. This assay may therefore offer a rapid, economic and reliable method for screening of the chlamydiaceae pathogens.
出处 《畜牧兽医学报》 CAS CSCD 北大核心 2006年第1期84-90,共7页 ACTA VETERINARIA ET ZOOTECHNICA SINICA
基金 国家自然科学基金项目(30370072) 北京自然科学基金项目(6052014)
关键词 SYBR Green 衣原体 REAL-TIME PCR 检测 SYBR Green Chlamydia real-time PCR detection
  • 相关文献

参考文献26

  • 1Pawlikowska M, Deptula W. Chlamydia, Chlamydophila,and specific cellular immunity [J]. Postepy Hig Med Dosw,2005, 59:510-516.
  • 2Everett K D E, Andersen A A. The ribosomal intergenic spacer and domain I of the 23S rRNA gene are phylogenetic markers for Chlamydia spp [J]. Int J Syst Bacteriol, 1997, 47:461-473.
  • 3Fred J, DeGraves, Dongya Gao, et al. Quantitative detection of Chlamydia psittaci and C. pecorum by high-sensitivity real-time PCR reveals high prevalence of vaginal infection in cattle[J]. J Clin Microbiol, 2003,1 726-1 729.
  • 4Hammerschlag M R. The role of Chlamydia in upper respiratory tract infections [J]. Curr Infect Dis Rep,2000, 2:115-120.
  • 5Yamaguchi H, Yamada M, Uruma T, et al. Prevalence of viable Chlamydia pneumoniae in peripheral blood mononuclear cells of healthy blood donors[J].Transfusion, 2004, 44:1 072-1 078.
  • 6Hammerschlag M R, Ke Z, Lu F, et al. Is Chlamydia pneumoniae present in brain lesions of patients with multiple sclerosis[J]. J Clin Microbiol,2000, 38:4 274-4 276.
  • 7Gaydos C A, Roblin P M, Hammerschlag M R, et al.Diagnostic utility of PCR-enzyme immunoassay, culture, and serology for detection of Chlamydia pneumoniae in symptomatic and asymptomatic patients [J].J Clin Microbiol, 1994, 32:903-905.
  • 8Bishara J, Pitlik S, Kazakov A, et al. Failure to detect Chlamydia pneumoniae by cell culture and polymerase chain reaction in major arteries of 93 patients with atherosclerosis [J]. Eur J Clin Mierobiol Infect Dis, 2003, 22:300-302.
  • 9Tuuminen T, Varjo S, Ingman H, et al. Prevalence of Chlarnydia pneurnoniae and Mycoplasma pneurnoniae immunoglobulin G and A antibodies in a healthy Finnish population as analysed by quantitative enzyme immunoassays[J]. Clin Diagn Lab Immunol, 2000, 7734-738.
  • 10Hoymans V Y, Bosmans J M,Ursi D, et al. Immunohistostaining assays for detection of chlarnydia pneumoniae in atherosclerotic arteries indicate cross-reactions with nonchlamydial plaque constituents [J]. J Clin Microbiol, 2004, 3 219-3 224.

同被引文献61

  • 1陈颖,吴亚君,徐宝梁,王晶,钱增敏,苏宁.进出口动物源性产品中牛羊成分的检测方法[J].食品工业科技,2004,25(8):144-146. 被引量:18
  • 2曹金元,杨琪,杨利,刘哲翔,何诚.北京市及周边省份家禽鹦鹉热嗜性衣原体流行状况的调查[J].中国兽医科学,2006,36(11):931-934. 被引量:9
  • 3周继章,邱昌庆.我国禽衣原体病流行情况及防制措施[J].中国家禽,2007,29(10):26-27. 被引量:7
  • 4李儒曙,张健騑,刘宇,周秀蓉,汪涛.鹦鹉热衣原体病的实验室诊断方法及防制[J].黑龙江畜牧兽医,2007(9):66-67. 被引量:2
  • 5Chikuni K, Tabata T, Kosugiyama M, et aL Polymerase chainreaction assay for detection of sheep and goat meats[J].Meat Sci, 1994,37:337-345.
  • 6Chikuni K, Tabata T, Saito M, et al. Sequencing of mitochondrial cytochrome b genes for the identification of meat species[J].Animal Science and Technology, 1994,65:571-579.
  • 7Fei S, Okayama T, Yamanoue M, et al. Species identification of meats and meat products by PCR[J].Animal Science and Technology, 1996,67:900-905.
  • 8Zhang J B, Huang H, Cai Z P, et al. Species identification in salted products of red snappers by semi-nested PCR-RFLP based on the mitochondrial 12S rRNA gene sequence[J].Food Contr,2006,17: 557-563.
  • 9Girish P S, Anjaneyulu A S R, Viswas K N, et al. Sequence analysis of mitochondrial 12S rRNA gene can identify meat species[J].Meat Sci,2004,66(3):551-556.
  • 10Girish P S, Anjaneyulu A S R, Viswas K N, et al. Meat species identification by polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) of mitochondrial 12S rRNA gene[J].Meat Sci,2005,70( I ): 107-112.

引证文献2

二级引证文献15

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