为建立H3亚型犬流感病毒(CIV)荧光定量PCR检测方法,本研究根据H3亚型CIV HA基因的保守区序列,设计合成一对特异性引物和Taq Man MGB探针,经条件优化后初步建立了H3亚型CIV荧光定量RT-PCR检测方法。结果显示,构建的重组质粒标准品在109拷...为建立H3亚型犬流感病毒(CIV)荧光定量PCR检测方法,本研究根据H3亚型CIV HA基因的保守区序列,设计合成一对特异性引物和Taq Man MGB探针,经条件优化后初步建立了H3亚型CIV荧光定量RT-PCR检测方法。结果显示,构建的重组质粒标准品在109拷贝/μL~10^(2)拷贝/μL浓度范围内有良好的线性关系,标准曲线的相关系数为0.999。该方法仅能特异性扩增H3N2亚型CIV核酸,与H3N2亚型禽流感病毒、人流感病毒和猪流感病毒及H9N2亚型CIV、H1N1亚型猪流感病毒、犬腺病毒、犬瘟热病毒、犬细小病毒、犬冠状病毒等病毒核酸均无交叉反应。该方法最低可检测到的质粒标准品浓度为19拷贝/μL,敏感性高于普通PCR方法。组内与组间重复性试验的变异系数均小于1%。利用该方法对83份临床样品的核酸进行检测,检测结果与病毒分离结果总符合率为97.59%。本研究建立的荧光定量PCR检测方法特异性强、敏感性高、重复性好、操作简便,为临床H3亚型CIV的快速检测提供可靠方法。展开更多
In recent years,the avian influenza has brought not only serious economic loss to the poultry industry in China but also a serious threat to human health because of the avian influenza virus(AIV) gene recombination an...In recent years,the avian influenza has brought not only serious economic loss to the poultry industry in China but also a serious threat to human health because of the avian influenza virus(AIV) gene recombination and reassortment.Until now,traditional RT-PCR,fluorescence RT-PCR and virus isolation identification have been developed and utilized to detect AIV,but these methods require high-level instruments and experimental conditions,not suitable for the rapid detection in field and farms.In order to develop a rapid,sensitive and practical method to detect and identify AIV subtypes,4 specific primers to the conserved region of AIV M gene were designed and a loop-mediated isothermal amplification(RT-LAMP) method was established.Using this method,the M gene of H1–H16 subtypes of AIV were amplified in 30 min with a water bath and all 16 H subtypes of AIV were able to be visually identified in presence of fluorescein,without cross reaction with other susceptible avian viruses.In addition,the detection limit of the common H1,H5,H7,and H9 AIV subtypes with the RT-LAMP method was 0.1 PFU(plaque-forming unit),which was 10 times more sensitive than that using the routine RT-PCR.Further comparative tests found that the positivity rate of RT-LAMP on detecting clinical samples was 4.18%(14/335) comparing with 3.58%(12/335) from real-time RT-PCR.All these results suggested that the RT-LAMP method can specifically detect and identify AIV with high sensitivity and can be considered as a fast,convenient and practical method for the clinic test and epidemiological investigation of AIV.展开更多
H7 avian influenza viruses(AIVs) normally circulated among birds before. From 1996 to 2012, human infections with H7 AIVs(H7 N2, H7 N3, and H7 N7) were reported in Canada, Italy, Mexico, the Netherlands, the United Ki...H7 avian influenza viruses(AIVs) normally circulated among birds before. From 1996 to 2012, human infections with H7 AIVs(H7 N2, H7 N3, and H7 N7) were reported in Canada, Italy, Mexico, the Netherlands, the United Kingdom and the USA. Until March 2013, human infections with H7 N9 AIVs were reported in China. Since then, H7 N9 AIVs have continued to circulate in both humans and birds. Therefore, the detection of antibodies against the H7 subtype of AIVs has become an important topic. In this study, a competitive enzyme-linked immunosorbent assay(cELISA)method for the detection of antibody against H7 AIVs was established. The optimal concentration of antigen coating was 5 μg mL^(-1), serum dilution was 1/10, and enzyme-labeled antibody was 1/3 000. To determine the cut-off value of cELISA, percent inhibition(PI) was determined by using receiver operating characteristic(ROC) curve analysis in 178 AIVs negative samples and 368 AIVs positive serum samples(n=546). When PI was set at 40%, the specificity and sensitivity of cELISA were 99.4 and 98.9%, respectively. This method could detect the antibodies against H7 Nx(N1–N4, N7–N9) AIVs, and showed no reaction with AIVs of H1–H6 and H8–H15 subtypes or common avian viruses such as Newcastle disease virus(NDV), Infectious bronchitis virus(IBV) and Infectious bursal disease virus(IBDV), exhibiting good specificity. This method showed a coincidence rate of 98.56% with hemagglutinin inhibition(HI) test. And the repeatability experiment revealed that the coefficients of variation(CV) of intra-and inter-batch repetition were all less than 12%. The data indicated that the cELISA antibody-detection method established in this study provided a simple and accurate technical support for the detection of a large number of antibody samples of H7-AIV.展开更多
Monoclonal antibodies(mAbs) are widely used in virus research and disease diagnosis. The nucleoprotein(NP) of influenza A virus(IAV) plays important roles in multiple stages of the virus life cycle. Therefore, generat...Monoclonal antibodies(mAbs) are widely used in virus research and disease diagnosis. The nucleoprotein(NP) of influenza A virus(IAV) plays important roles in multiple stages of the virus life cycle. Therefore, generating conserved mAbs against NP and characterizing their properties will provide useful tools for IAV research. In this study, two mAbs against the NP protein, 10 E9 and 3 F3, were generated with recombinant truncated NP proteins(NP-1 and NP-2) as immunogens. The heavy-chain subclass of both 10 E9 and 3 F3 was determined to be IgG2α, and the light-chain type was κ. Truncation and site-specific mutation analyses showed that the epitopes of mAbs 10 E9 and 3 F3 were located in the N terminal 84–89 amino acids and the C terminal 320–324 amino acids of the NP protein, respectively. We found that mAbs 10 E9 and 3 F3 reacted well with the NP protein of H1–H15 subtypes of IAV. Both 10 E9 and 3 F3 can be used in immunoprecipitation assay, and 10 E9 was also successfully applied in confocal microscopy. Furthermore, we found that the 10 E9-recognized _(84) SAGKDP_(89) epitope and 3 F3-recognized 320 ENPAH324 epitope were highly conserved in NP among all avian and human IAVs. Thus, the two mAbs we developed could be used as powerful tools in the development of diagnostic methods of IAV, and also surely promote the basic research in understanding the replication mechanisms of IAV.展开更多
In 2013, a human influenza outbreak caused by a novel H7N9 virus occurred in China. Recently, the H7N9 virus acquired multiple basic amino acids at its hemagglutinin(HA) cleavage site, leading to the emergence of a ...In 2013, a human influenza outbreak caused by a novel H7N9 virus occurred in China. Recently, the H7N9 virus acquired multiple basic amino acids at its hemagglutinin(HA) cleavage site, leading to the emergence of a highly pathogenic virus. The development of an effective diagnostic method is imperative for the prevention and control of highly pathogenic H7N9 influenza. Here, we designed and synthesized three pairs of primers based on the nucleotide sequence at the HA cleavage site of the newly emerged highly pathogenic H7N9 influenza virus. One of the primer pairs and the corresponding probe displayed a high level of amplification efficiency on which a real-time RT-PCR method was established. Amplification using this method resulted in a fluorescent signal for only the highly pathogenic H7N9 virus, and not for any of the H1–H15 subtype reference strains, thus demonstrating high specificity. The method detected as low as 39.1 copies of HA-positive plasmid and exhibited similar sensitivity to the virus isolation method using embryonated chicken eggs. Importantly, the real-time RT-PCR method exhibited 100% consistency with the virus isolation method in the diagnosis of field samples. Collectively, our data demonstrate that this real-time RT-PCR assay is a rapid, sensitive and specific method, and the application will greatly aid the surveillance, prevention, and control of highly pathogenic H7N9 influenza viruses.展开更多
文摘为建立H3亚型犬流感病毒(CIV)荧光定量PCR检测方法,本研究根据H3亚型CIV HA基因的保守区序列,设计合成一对特异性引物和Taq Man MGB探针,经条件优化后初步建立了H3亚型CIV荧光定量RT-PCR检测方法。结果显示,构建的重组质粒标准品在109拷贝/μL~10^(2)拷贝/μL浓度范围内有良好的线性关系,标准曲线的相关系数为0.999。该方法仅能特异性扩增H3N2亚型CIV核酸,与H3N2亚型禽流感病毒、人流感病毒和猪流感病毒及H9N2亚型CIV、H1N1亚型猪流感病毒、犬腺病毒、犬瘟热病毒、犬细小病毒、犬冠状病毒等病毒核酸均无交叉反应。该方法最低可检测到的质粒标准品浓度为19拷贝/μL,敏感性高于普通PCR方法。组内与组间重复性试验的变异系数均小于1%。利用该方法对83份临床样品的核酸进行检测,检测结果与病毒分离结果总符合率为97.59%。本研究建立的荧光定量PCR检测方法特异性强、敏感性高、重复性好、操作简便,为临床H3亚型CIV的快速检测提供可靠方法。
基金supported by the Special Foundation for State Basic Research Program of China(2013FY113300-8)the National Key R&D Program of China(2016YFD0500800)
文摘In recent years,the avian influenza has brought not only serious economic loss to the poultry industry in China but also a serious threat to human health because of the avian influenza virus(AIV) gene recombination and reassortment.Until now,traditional RT-PCR,fluorescence RT-PCR and virus isolation identification have been developed and utilized to detect AIV,but these methods require high-level instruments and experimental conditions,not suitable for the rapid detection in field and farms.In order to develop a rapid,sensitive and practical method to detect and identify AIV subtypes,4 specific primers to the conserved region of AIV M gene were designed and a loop-mediated isothermal amplification(RT-LAMP) method was established.Using this method,the M gene of H1–H16 subtypes of AIV were amplified in 30 min with a water bath and all 16 H subtypes of AIV were able to be visually identified in presence of fluorescein,without cross reaction with other susceptible avian viruses.In addition,the detection limit of the common H1,H5,H7,and H9 AIV subtypes with the RT-LAMP method was 0.1 PFU(plaque-forming unit),which was 10 times more sensitive than that using the routine RT-PCR.Further comparative tests found that the positivity rate of RT-LAMP on detecting clinical samples was 4.18%(14/335) comparing with 3.58%(12/335) from real-time RT-PCR.All these results suggested that the RT-LAMP method can specifically detect and identify AIV with high sensitivity and can be considered as a fast,convenient and practical method for the clinic test and epidemiological investigation of AIV.
基金supported by the National Key R&D Program of China(2016YFD0500800)。
文摘H7 avian influenza viruses(AIVs) normally circulated among birds before. From 1996 to 2012, human infections with H7 AIVs(H7 N2, H7 N3, and H7 N7) were reported in Canada, Italy, Mexico, the Netherlands, the United Kingdom and the USA. Until March 2013, human infections with H7 N9 AIVs were reported in China. Since then, H7 N9 AIVs have continued to circulate in both humans and birds. Therefore, the detection of antibodies against the H7 subtype of AIVs has become an important topic. In this study, a competitive enzyme-linked immunosorbent assay(cELISA)method for the detection of antibody against H7 AIVs was established. The optimal concentration of antigen coating was 5 μg mL^(-1), serum dilution was 1/10, and enzyme-labeled antibody was 1/3 000. To determine the cut-off value of cELISA, percent inhibition(PI) was determined by using receiver operating characteristic(ROC) curve analysis in 178 AIVs negative samples and 368 AIVs positive serum samples(n=546). When PI was set at 40%, the specificity and sensitivity of cELISA were 99.4 and 98.9%, respectively. This method could detect the antibodies against H7 Nx(N1–N4, N7–N9) AIVs, and showed no reaction with AIVs of H1–H6 and H8–H15 subtypes or common avian viruses such as Newcastle disease virus(NDV), Infectious bronchitis virus(IBV) and Infectious bursal disease virus(IBDV), exhibiting good specificity. This method showed a coincidence rate of 98.56% with hemagglutinin inhibition(HI) test. And the repeatability experiment revealed that the coefficients of variation(CV) of intra-and inter-batch repetition were all less than 12%. The data indicated that the cELISA antibody-detection method established in this study provided a simple and accurate technical support for the detection of a large number of antibody samples of H7-AIV.
基金supported by the Natural Science Foundation of Heilongjiang Province,China(JQ2019C005)the National Natural Science Foundation of China(31702265 and 32172847)。
文摘Monoclonal antibodies(mAbs) are widely used in virus research and disease diagnosis. The nucleoprotein(NP) of influenza A virus(IAV) plays important roles in multiple stages of the virus life cycle. Therefore, generating conserved mAbs against NP and characterizing their properties will provide useful tools for IAV research. In this study, two mAbs against the NP protein, 10 E9 and 3 F3, were generated with recombinant truncated NP proteins(NP-1 and NP-2) as immunogens. The heavy-chain subclass of both 10 E9 and 3 F3 was determined to be IgG2α, and the light-chain type was κ. Truncation and site-specific mutation analyses showed that the epitopes of mAbs 10 E9 and 3 F3 were located in the N terminal 84–89 amino acids and the C terminal 320–324 amino acids of the NP protein, respectively. We found that mAbs 10 E9 and 3 F3 reacted well with the NP protein of H1–H15 subtypes of IAV. Both 10 E9 and 3 F3 can be used in immunoprecipitation assay, and 10 E9 was also successfully applied in confocal microscopy. Furthermore, we found that the 10 E9-recognized _(84) SAGKDP_(89) epitope and 3 F3-recognized 320 ENPAH324 epitope were highly conserved in NP among all avian and human IAVs. Thus, the two mAbs we developed could be used as powerful tools in the development of diagnostic methods of IAV, and also surely promote the basic research in understanding the replication mechanisms of IAV.
基金supported by the National Key R&D Program of China(2016YFD0500800)the International Science&Technology Cooperation Program of China(2014DFR31260)
文摘In 2013, a human influenza outbreak caused by a novel H7N9 virus occurred in China. Recently, the H7N9 virus acquired multiple basic amino acids at its hemagglutinin(HA) cleavage site, leading to the emergence of a highly pathogenic virus. The development of an effective diagnostic method is imperative for the prevention and control of highly pathogenic H7N9 influenza. Here, we designed and synthesized three pairs of primers based on the nucleotide sequence at the HA cleavage site of the newly emerged highly pathogenic H7N9 influenza virus. One of the primer pairs and the corresponding probe displayed a high level of amplification efficiency on which a real-time RT-PCR method was established. Amplification using this method resulted in a fluorescent signal for only the highly pathogenic H7N9 virus, and not for any of the H1–H15 subtype reference strains, thus demonstrating high specificity. The method detected as low as 39.1 copies of HA-positive plasmid and exhibited similar sensitivity to the virus isolation method using embryonated chicken eggs. Importantly, the real-time RT-PCR method exhibited 100% consistency with the virus isolation method in the diagnosis of field samples. Collectively, our data demonstrate that this real-time RT-PCR assay is a rapid, sensitive and specific method, and the application will greatly aid the surveillance, prevention, and control of highly pathogenic H7N9 influenza viruses.