|本期目录/Table of Contents|

[1]张锦海,陈文琦,韩一芳,等.逆转录环介导等温扩增技术检测H7N9禽流感病毒基因[J].医学研究与战创伤救治(原医学研究生学报),2019,21(01):7-11.[doi:10.3969/j.issn.1672-271X.2019.01.002]
 ZHANG Jin-hai,CHEN Wen-qi,HAN Yi-fang,et al.Rapid Visual Detection of H7N9 avian influenza virus by use of reverse transcription loop-mediated isothermal amplification[J].JOURNAL OF MEDICALRESEARCH —COMBAT TRAUMA CARE,2019,21(01):7-11.[doi:10.3969/j.issn.1672-271X.2019.01.002]
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逆转录环介导等温扩增技术检测H7N9禽流感病毒基因()

《医学研究与战创伤救治》(原医学研究生学报)[ISSN:1672-271X/CN:32-1713/R]

卷:
第21卷
期数:
2019年01期
页码:
7-11
栏目:
基础研究
出版日期:
2019-01-20

文章信息/Info

Title:
Rapid Visual Detection of H7N9 avian influenza virus by use of reverse transcription loop-mediated isothermal amplification
作者:
张锦海陈文琦韩一芳张琪叶福强王太武陈乐如王长军
作者单位:210002南京,东部战区疾病预防控制中心疾病预防控制所(张锦海、韩一芳、张琪、叶福强、王太武、陈乐如、王长军);210006南京,南京医科大学附属南京第一医院皮肤科(陈文琦)
Author(s):
ZHANG Jin-hai1 CHEN Wen-qi2HAN Yi-fang1 ZHANG Qi1 YE Fu-qiang1 WANG Tai-wu1 CHEN Le-ru1 WANG Chang-jun1
(1.Department of Infectious Diseases, Center for Disease Control and Prevention of Eastern Theater Command, Nanjing 210002,Jiangsu,China; 2. Department of Dermatology, Nanjing First Hospital Affiliated to Nanjing Medical University, Nanjing 210006, Jiangsu,China)
关键词:
H7N9禽流感病毒逆转录环介导等温扩增检测
Keywords:
H7N9 Avian influenza virus reverse transcription loop-mediated isothermal amplification detection
分类号:
R373.1
DOI:
10.3969/j.issn.1672-271X.2019.01.002
文献标志码:
A
摘要:
目的 建立检测H7N9禽流感病毒基因的逆转录环介导等温扩增(reverse transcription Loop-mediated isothermal amplification, RT-LAMP)方法 ,并初步评估应用。方法 设计、合成H7N9禽流感病毒血凝素(HA)基因、神经氨酸酶(NA)基因的引物组,通过优化参数,建立RT-LAMP反应体系,使用梯度稀释的标准品测试该体系检测灵敏度,并使用对比毒株测试特异性,再对142份临床标本进行实样检测。结果 成功建立了检测H7N9禽流感病毒HA基因、NA基因的RT-LAMP方法 ,可直接肉眼观察判读结果 ,检测其HA基因、NA基因的敏感性分别达到10拷贝每反应、5拷贝每反应,对其他常见呼吸道病原无交叉反应;在测序证实阳性的临床样本中,对于病毒HA基因、NA基因检出率分别为100%、92.68%。结论 逆转录环介导等温扩增技术检测H7N9禽流感病毒基因,具有简单、快速、灵敏度高,检测结果 可视化,无需特殊设备等优点,在禽流感病原监测上有一定应用前景。
Abstract:
Objective To develop a one-step RT-LAMP method for rapid detection of HA gene and NA gene of H7N9 virus.Methods Two sets of specific primerswere designed and synthesized according to HA and NA genes of H7N9 virus. The reaction parameters were optimized to improve the RT-LAMP assay for the rapid detection of H7N9 virus.This study also tested the sensitivity and specificity of the RT-LAMP assay, the minimum detection limit of which was evaluated using the gradient dilution RNA templates in vitro transcription. Moreover,the RT-LAMP was applied to 142 clinical specimens for testing. Results The RT-LAMP method for detecting the HA gene and NA gene of H7N9 avian influenza virus was successfully established.The Results showed that the detection limit for H7 gene is around 10 copies per reaction, which is similar to that of the real time PCR, whereas counterpart of N9 gene is 5copies perreaction in 100-folds higher sensitivity than the real-time PCR method. The RT-LAMP assay also had good specificity.In the positive specimens confirmed by sequencing, the RT-LAMP detection rate of viral HA gene and NA gene were 100% and 92.68%, respectively.Conclusion Considering RT-LAMP′s simplicity in operation and high sensitivity, there is potential use in clinical diagnosis and surveillance of H7N9 virus.

参考文献/References:

[1]Gao R, Cao B, Hu Y, et al. Human infection with a novel avian-origin influenza A (H7N9) virus [J]. N Engl J Med,2013,368(20):1888-1897.
[2]Zhu W, Dong J, Zhang Y, et al. A gene constellation in avian influenza A (H7N9) viruses may have facilitated the Fifth Wave outbreak in China[J]. Cell Rep,2018,23(3):909-917.
[3]Quan C, Shi W, Yang Y, et al. New threats of H7N9 influenza virus: the spread and evolution of highly and low pathogenic variants with high genomic diversity in Wave Five[J]. J Virol,2018,92(11).doi: 10.1128/JVI.00301-18.
[4]Hui DSC, Lee N, Chan PKS. Avian influenza A (H7N9) virus infections in humans across five epidemics in mainland China, 2013-2017[J]. J Thorac Dis,2017,9(12): 4808-4811.
[5]王洁, 王卫萍, 李晓军, 等. 4种常见呼吸道病毒快速分子检测方法的建立[J]. 东南国防医药, 2013, 15(6):551-555.
[6]吕恒, 钟璟浩, 张锦海, 等. 新型布尼亚病毒环介导等温扩增可视化检测方法的建立[J]. 中国病原生物学杂志,2016,11(3): 225-228.
[7]刘玉, 陈文琦, 张锦海, 等. 炭疽杆菌双重可视化LAMP检测方法的建立[J]. 东南国防医药, 2016, 18(4): 341-345.
[8]Zhang J, Zhu J, Ren H, et al. Rapid Visual Detection of Highly Pathogenic Streptococcus suis Serotype 2 Isolates by Use of Loop-Mediated Isothermal Amplification[J]. J Clin Microbiol, 2013, 51(10): 3250-3256.
[9]张锦海, 陈文琦, 胡丹, 等. H7N9禽流感病毒重组质粒构建及应用[J].中国公共卫生, 2013, 29(12): 1868-1870.[1]0]陈雅,朱进,冯振卿. 新型人感染H7N9型禽流感病毒研究进展[J]. 医学研究生学报,2016,29(7):759-763.[1]1]贺甘霖, 颜文娟, 祁贤, 等. 2013-2017年中国甲型H7N9流感病毒血凝素基因进化分析[J]. 医学研究生学报,2017,30(10):1029-1034.[1]2]Lamb LE, Bartolone SN, Tree MO, et al. Rapid Detection of Zika Virus in Urine Samples and Infected Mosquitos by Reverse Transcription-Loop-Mediated Isothermal Amplification[J]. Sci Rep,2018,8(1):3803.[1]3]Chen Y, Liang W, Yang S, et al. Human infections with the emerging avian influenza A H7N9 virus from wet market poultry: clinical analysis and characterisation of viral genome[J].Lancet,2013,381(9881):1916-1925.[1]4]Li M, Xie Z, Xie Z, et al. Simultaneous detection of eight avian influenza A virus subtypes by multiplex reverse transcription-PCR using a GeXP analyser[J]. Sci Rep,2018,8(1):6183.

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备注/Memo

备注/Memo:
基金项目:军队后勤重大项目(AWS16J020)
更新日期/Last Update: 2019-01-20