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以H3亚型禽流感病毒(AIV)免疫BALB/c小鼠,取其脾细胞与SP2/0骨髓瘤细胞融合,用血凝抑制试验(HI)筛选阳性杂交瘤细胞并克隆化。结果获得了4株针对H3亚型禽流感病毒血凝素的单克隆抗体,分别命名为1D7、1F9、5A4、5F5。这些单克隆抗体小鼠腹水HI效价为212~214。用H1、H6、H10亚型禽流感病毒各2株,H4、H5、H9和新城疫病毒(NDV)各1株进行特异性试验。结果表明:所有这些单抗仅与H3亚型AIV发生特异性HI反应,而不与其他亚型AIV及NDV反应。用28株H3亚型禽流感病毒进行排谱试验,结果证明:4株单抗均具有广谱性,其中1F9、5A4、5F5与受试的28株H3亚型AIV均反应,而1D7只与其中的26株反应。以上单抗将为控制畜禽及人类的流感提供必需的诊断试剂。  相似文献   

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以禽流感病毒A/Chicken/Hubei/327/2004(H5N1)免疫Balb/c小鼠,将免疫鼠脾细胞与SP2/0骨髓瘤细胞融合,用血凝抑制试验筛选细胞培养上清,采用有限稀释法对阳性孔进行克隆,3次克隆后获得7株能稳定分泌抗H5亚型禽流感病毒血凝素单克隆抗体的杂交瘤细胞株,分别命名为1C4,1D4,1E12,2E11,4C12,4G2和5E12。细胞培养上清HI效价为24~27,腹水HI效价可达210~218。所有单抗与禽流感H7和H9亚型标准血凝抗原,新城疫病毒和鸡传染性支气管炎病毒无交叉反应。在细胞上的中和试验显示具有较高的中和效价,获得的单克隆抗体可在禽流感流行病学的监测中发挥重要作用。  相似文献   

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先测定NDV强、弱毒毒株和H9AIV毒株的血凝(HA)效价,并用血清分别作血凝抑制(HI)试验。将测定好的病毒液按不同比例混合,测定HA效价及血清对其抑制效价后接种SPF鸡胚。收获死胚尿囊液后测定HA、HI效价。结果显示,H9AIV和NDV之间存在比较严重的干扰现象。  相似文献   

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通过血凝抑制(HI)和鸡胚中和试验(VN)证实,本实验室制备的抗禽流感H9M2单抗11A5和11B2株可特异性地抑制H9亚型禽流感病毒的血凝特性,而与禽流感H5和H7亚型以及其他具有血凝性感染禽类的病毒(如新城疫等)不反应。两株单抗腹水HI效价均达到15Log2。中和试验表明:上述两株单抗均可有效抑制H9N2病毒在SPF鸡胚中的增殖,使病毒失去血凝活性.测得11A5和11B2株腹水对H9N2禽流感病毒的半数保护量分别为10^-3.35和10^-4.58。该单抗的研制成功对于进一步建立快速鉴别诊断禽流感H9亚型病毒具有重要意义。  相似文献   

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不同来源禽网状内皮增生病病毒株的致病性比较   总被引:1,自引:1,他引:0  
本研究旨在探讨不同来源的禽网状内皮增生病病毒(REV)对1日龄SPF鸡的致病性.用包括分子克隆化病毒REV-C99在内的不同来源的6个REV株人工感染1日龄SPF鸡,以禽流感病毒灭活疫苗(H9-AIV、H5-AIV)与新城疫病毒灭活疫苗(NDV)免疫后HI抗体滴度的测定结果为指标,比较不同REV株的致病性.结果表明,分别用3000TCID_(50)·只~(-1)的剂量人工感染1日龄SPF鸡,6个REV感染组与对照组相比,H9-AIV、H5-AIV与NDV免疫后4、5与6周的HI抗体水平均极显著降低(P<0.01).但6个REV感染组之间差异不显著(P>0.05).研究结果显示,不同来源REV株感染1日龄SPF鸡后均造成生长迟缓,并对体液免疫反应有明显的抑制作用,同时,这也揭示出REV感染可能是免疫失败的重要原因之一.  相似文献   

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本研究根据GenBank中鸭新城疫病毒(NDV)的F基因和鸭圆环病毒(DuCV)的V1/rep基因的保守序列,各设计一对特异性引物,并对二重PCR的扩增条件进行优化,建立了鸭NDV和DuCV的二重PCR检测方法。对混合样品进行扩增,得到2条大小为493bp(鸭NDV)和218bp(DuCV)的特异性条带,与预扩增片段相符。而对番鸭细小病毒、鸭瘟病毒、鸭肝炎病毒、鸭源小鹅瘟病毒、鸭H9亚型流感病毒、鸭疫里氏杆菌、大肠杆菌、禽多杀性巴氏杆菌等病原检测,结果为阴性。该方法的敏感性试验表明,鸭NDV的核酸最小量为40fg,DuCV为20fg。  相似文献   

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旨在提高对禽流感病毒(avian influenza virus,AIV)检测效率,及时发现疫病。本研究通过分析M基因以及H5、H7和H9亚型的HA基因序列保守区域,设计并合成了相关探针和引物,建立了禽流感病毒(AIV)四重荧光RT-PCR检测方法,该方法可在检测禽流感病毒(AIV)的同时,确定病原是否为H5、H7和H9亚型。结果显示,该检测方法耗时短、特异性好、检测下限达到10-5 ng·μL-1。采用该方法检测临床采集的13个活禽交易市场的384份禽咽喉和泄殖腔双拭子样品,经检测,其中有60份样品为流感病毒阳性,且全部是H9亚型,该结果与行业标准方法(NY/T 772—2013)检测结果一致,κ值为1(P<0.001)。本方法能实现对禽流感病毒及H5、H7和H9亚型的高通量快速检测,将在AIV快速检测中发挥重要作用。  相似文献   

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以H4亚型AIV分离株A/鸭/扬州/185/2003免疫BALB/c小鼠,取小鼠脾脏细胞与骨髓瘤细胞进行融合,经血凝抑制(HI)试验筛选并克隆后,获得能够稳定分泌抗体的单克隆细胞株:2C11、6E7、4C8和5C5。4株单抗腹水的HI效价在2~(12)~2~(15),单抗亚类均为IgG2a。4株单抗均能与感染了H4亚型AIV的MDCK细胞发生间接免疫荧光(IFA)反应。并且,均不与其他亚型AIV、NDV、IBV和EDS-76病毒发生HI反应。另外,4株单抗均能使病毒失去感染细胞的能力,显示出良好的中和特性。单抗HI反应谱表明,2C11、4C8、6E7和5C5分别可以抑制10株H4亚型AIV中9、8、7和7株病毒的血凝反应,且均不能抑制A/鸭/苏州/1/2002毒株的血凝作用。  相似文献   

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H7亚型禽流感病毒实时荧光定量RT-PCR检测方法的建立   总被引:1,自引:0,他引:1  
H7亚型禽流感病毒致病性强、危害性大,是进出口家禽及禽类产品的主要检疫对象。为了加强对H7亚型禽流感病毒的检测,建立新的快速检测方法。通过对GenBank已报道的H7亚型禽流感病毒的HA基因进行序列分析比较,设计了两套分别针对H7N2亚型和H7Nx亚型的特异性引物和用FAM标记的Taq Man MGB核酸探针,建立了H7亚型禽流感病毒实时荧光定量RT-PCR方法(Real-time RT-PCR)。该方法特异性好,不存在假阴性和假阳性的现象;敏感性高,对禽流感病毒H7亚型标准HI抗原检测的敏感性达到10-5,能够满足口岸禽流感病毒快速、准确、有效的检疫需求。  相似文献   

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根据GenBank中新城疫病毒(NDV)L基因和番鸭细小病毒(MDPV)Vp3基因的保守序列,采用Primer Premier 5.0软件设计并合成了2对引物。通过优化反应条件及特异性、敏感性评价,建立了能同时检测鸭源NDV和MDPV的二重PCR方法。该方法对鸭源NDV和MDPV的检测敏感性分别为30和16 fg。同时使用该方法对鸭瘟病毒、鸭肝炎病毒、鸭圆环病毒、H9亚型禽流感病毒、鸭黄病毒、沙门氏菌、大肠杆菌和禽多杀性巴氏杆菌进行检测,结果显示全为阴性。本研究建立的鸭源NDV和MDPV的二重PCR检测方法,具有特异、敏感、快速、重复性好等优点,可用于鸭源NDV和MDPV感染的快速鉴别检测。  相似文献   

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为建立一种快速、准确地检测H1和H3亚型猪流感病毒(swine influence virus,SIV)的方法,根据H1和H3亚型SIV血凝素(hemagglutinin,HA)基因保守序列,分别设计2对特异性引物和2条TaqMan探针,建立双重实时荧光定量RT-PCR方法。结果显示,该方法敏感性高,可检测到最低拷贝数为102拷贝/μL;重复性良好,重复孔Ct值的变异系数均在5%以下;特异性好,除H1和H3亚型SIV外,H4、H5、H7、H9亚型SIV、猪瘟病毒、猪繁殖与呼吸综合征病毒、口蹄疫病毒、伪狂犬病病毒检测均为阴性;在田间样品中成功检出1株H1和1株H3亚型SIV,检出率为1.16%。该方法准确、快速、灵敏、特异,可为H1、H3亚型SIV的快速鉴别检测及流行病学调查提供有效的技术手段。  相似文献   

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To establish a rapid, accurate method to diagnose and detect H1 and H3 subtype swine influenza viruses (SIV) at the same time, the specific primers and TaqMan probes were designed according to the conserved region of the HA gene of H1 and H3 subtype SIV. A duplex Real-time RT-PCR assay was developed for detection of H1 and H3 subtype SIV. The results showed that the Real-time RT-PCR could detect 102 copies/μL of H1 and H3 subtype SIV, the sensibility was well. Coefficient of variation of Ct value between repeating groups were all below 5%, the repeatability was favorable. The results were negative for the detection of H4, H5, H7, H9 subtypes SIV, classical swine fever virus, porcine reproductive and respiratory syndrome virus, foot and disease virus and pseudorabies virus, the specificity was fine. One sample was H1 subtype SIV, and one sample was H3 subtype SIV, by the established assay, the positive rate was 1.16%. The method was highly accurate, rapid, sensitive and specific, and could provide a method for rapid detection and epidemiological investigation of H1 and H3 subtype SIV.  相似文献   

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鸡新城疫、传染性支气管炎、禽流感(H9亚型)三联灭活苗(La Sota株+M41株+Re-9株)(三联苗(Re-9株))为国内首个采用基因重组H9亚型禽流感疫苗株研制的新支流三联灭活疫苗。为研究疫苗上市后的实际应用效果,使用7日龄AA肉鸡和260日龄产蛋期蛋鸡评价三联苗(Re-9株)有效性。结果显示:肉鸡免疫后14 d即可激发抗体,免疫后21 d,新城疫病毒(NDV)、传染性支气管炎病毒(IBV)、H9亚型禽流感病毒(H9 AIV)的血凝抑制(HI)抗体分别达8.6log2、6.2log2、8.3log2,出栏时仍维持在较高水平;于免疫后14 d抽样进行NDV、H9 AIV攻毒,对照组均100%发病或排毒,免疫鸡均可获得100%保护;在蛋鸡上,免疫三联苗(Re-9株)后28 d,NDV、IBV、H9 AIV的HI抗体效价分别达12.0log2、7.8log2、12.2log2,免疫后6个月仍可以维持在较高水平。结果表明:三联苗(Re-9株)在实际应用中免疫效果较好,本研究将为鸡新城疫、传染性支气管炎、H9亚型禽流感的防控提供有力支撑。  相似文献   

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Detecting avian influenza virus (AIV) and Newcastle disease virus (NDV) at low concentrations from tracheal and cloacal swabs of avian influenza- and Newcastle disease-infected poultry was carried out using a highly sensitive immunological-polymerase chain reaction (immuno-PCR) method. Magnetic gold particles were pre-coated with a capture antibody, either a monoclonal anti-AIV/H5 or monoclonal anti-NDV/F and viruses serially diluted ten-fold from 10(2) to 10(-5)EID(50)/ml. A biotinylated detection antibody bound to the viral antigen was then linked via a streptavidin bridge to biotinylated reporter DNA. After extensive washing, reporter DNA was released by denaturation, transferred to PCR tubes, amplified, electrophoresed and visualized. An optimized immuno-PCR method was able to detect as little as 10(-4)EID(50)/ml AIV and NDV. To further evaluate the specificity and the clinical application of this IPCR assay for AIV H5N1 and NDV, the tracheal swab specimens, taken from chickens which were infected with H5N1/AIV, H9N2/AIV, H7N2/AIV, NDV, IBDV, IBV/H(120), were detected by IPCR. Our data demonstrated that this monoclonal antibody-based immuno-PCR method provides a platform capable of rapid screening of clinical samples for trace levels of AIV H5 and NDV in one step.  相似文献   

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This experiment was aimed to develop a method for simultaneous detection of H9 and H6 subtype avian influenza virus (AIV).Two pairs of specific primers were designed according to the conserved regions sequences of H6 and H9 AIV HA gene,a duplex RT-PCR simultaneous detection of H9 and H6 subtype AIV was developed by optimizing the PCR system such as the concentration of different primers and annealing temperature.It showed that all samples could be amplified specific bands from H9 subtype AIV single infection samples or H6 subtype AIV single infection samples,and the samples mix infection these two subtypes AIV.No specific bands of the same sizes were amplified from genomic materials of other avian pathogens.The detection limit of the duplex RT-PCR was 5×104 copies/μL. It suggested that this duplex RT-PCR assay was a specific,sensitive,stable and repeatable method for detection of H9 and H6 subtype of AIV,and could provide technical support for the monitoring of H9 and H6 subtype AIV.  相似文献   

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试验旨在建立可同时鉴别检测H9和H6亚型禽流感病毒(avian influenza virus,AIV)的二重RT-PCR方法。根据GenBank中H9和H6亚型AIV的HA基因保守序列,分别设计2对特异性引物,优化引物浓度与退火温度等条件,建立了可同时鉴别检测H9和H6亚型AIV的二重RT-PCR检测方法。用该法对H9和H6亚型AIV混合感染样品、H9亚型AIV单一感染样品和H6亚型AIV单一感染样品进行扩增,结果均得到对应的目的条带,而对其余亚型AIV及其他禽病病原体均未扩增出特异性条带。该法对H9和H6亚型AIV的检测下限均为5×104拷贝/μL。本研究建立的二重RT-PCR检测方法特异性强、敏感性高、稳定性和重复性良好,可同时鉴别检测H9与H6两种亚型AIV,为H9与H6亚型AIV的监测提供技术支撑。  相似文献   

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In order to develop a rapid and simultaneous assay for H7N9 subtype avian influenza virus (AIV), three pairs of specific primers were designed according to the conserved sequences of the hemagglutinin (HA) gene of H7 subtype AIV, the neuramidinase (NA) gene of N9 subtype AIV, and the matix (M) gene of all subtypes AIV. The reaction conditions were optimized, and the specificity and sensitivity of this method were evaluated to develop a triplex PCR assay. It was shown that H7N9 subtype AIV could be amplified into three specific bands by this triplex PCR, the lengths of these bands were 330 (H7 AIV), 207 (N9 AIV) and 632 bp (all AIV), respectively. Samples containing H7 or N9 subtype AIV could be amplified into two specific bands, which were 330 and 632, 207 and 632 bp, respectively. Samples containing other subtypes AIV could be amplified into a 632 bp specific band. No specific band was amplified from other avian pathogenic virus. Sensitivity test results showed that as low as 103 copies/μL H7N9 subtype AIV could be detected. This triplex PCR could simultaneously diagnose H7N9 subtype AIV, single H7 subtype AIV, single N9 subtype AIV and other subtype AIV in one tube. This assay was a rapid, specific and sensitive method for the detection of H7N9 subtype AIV. It could be applied in rapid diagnosis for clinical samples, and also provided a technical support to prevent and control H7N9 subtype AIV.  相似文献   

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猪流感病毒H1、H3、N1、N2亚型分型 RT-PCR方法的建立   总被引:1,自引:0,他引:1  
根据GenBank中H1N1和H3N2亚型猪流感病毒(SIV)血凝素(hemagglutinin,HA)、神经氨酸酶(neuraminidase,NA)和M基因保守序列,分别设计合成了5对特异性引物,利用RT-PCR技术对SIV的型和亚型进行鉴定。结果表明,该方法的型RT-PCR可以检测出104 EID50病毒量所提取的RNA;H1、H3、N1和N2的亚型RT-PCR均可以检测出104 EID50病毒量所提取的RNA。除每对特异性引物所对应的亚型外,对其他亚型及猪繁殖与呼吸综合征病毒(PRRSV)和猪瘟病毒(CSFV)的检测均为阴性,应用该方法对临床样品进行检测,其结果与病毒分离结果符合率为100%。结果表明,该方法特异性好、敏感性高,有望成为SIV的一种特异、敏感、快速的分型检测方法,为猪流感分子流行病学的调查奠定了良好的基础。  相似文献   

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