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1.
2013年中国吉林某养鸡场发生疑似H9亚型禽流感疫情,采集该发病鸡场病料接种9日龄SPF鸡胚,分离得到一株病毒。经血凝(HA)试验、血凝抑制(HI)试验、测序分析,鉴定该毒株为H9亚型禽流感病毒(AIV)。对本试验分离株HA基因进行测序及序列分析,结果显示分离株HA基因的裂解位点为RSSR↓GLF,符合低致病性AIV的基因特征;HA肽链具有9个潜在糖基化位点,与近些年H9亚型AIV分离株的潜在糖基化位点相同;具有8个受体结合位点,其中234位受体结合位点由谷氨酰胺(Q)变异成苏氨酸(T);HA基因系统进化树结果显示本试验分离株属于欧亚进化分支,与中国最早分离株A/Chicken/Beijing/1/94(H9N2)亲缘关系较远,与2007年后中国H9亚型AIV主要流行分支的代表株A/Chicken/Guangxi/55/2005(H9N2)亲缘关系较近。将该毒株制成油乳剂灭活疫苗免疫SPF鸡,免疫后第21天免疫鸡血清抗体高达10log2,表明本试验分离株具有很好的免疫原性。  相似文献   

2.
为评价H9N2亚型禽流感病毒HF株灭活疫苗对流行毒株的免疫保护效果,将禽流感病毒HF株灭活疫苗和商品化鸡新城疫、禽流感(H9亚型)二联灭活疫苗分别以0.3 mL/只接种21日龄SPF鸡,3周后采血测定HI抗体效价,并用2018年-2019年分离的4株H9亚型禽流感病毒分别进行攻毒。结果显示,免疫后21 d, HF株灭活疫苗免疫组HI抗体效价达到9.1 log2以上,商品化疫苗HI抗体效价几何平均值则为6.3 log2以内。4株H9亚型禽流感病毒流行毒株以10~(7.0)EID_(50)的剂量静脉攻毒后,HF株灭活疫苗免疫组可抵抗流行毒株的攻击,保护率为100%;而商品化疫苗对流行毒株的攻毒保护率仅为40%~60%。说明H9N2亚型禽流感病毒HF株灭活疫苗具有较强的免疫原性,能使免疫鸡抵抗流行毒株的攻击。  相似文献   

3.
为评价H9N2亚型重组禽流感病毒(AIV)灭活疫苗Re-9株的免疫效力,本研究选取2010年~2011年分离的5株H9N2亚型AIV进行攻毒保护实验。这5个分离株均为类A/CK/Beijing/1/94病毒株,其HA和NA基因与Re-9株及其亲本株的同源性介于90.6%~97.5%和88.1%~98.7%之间,其抗原相关值在66.67%~100%之间。将Re-9株为种毒制备灭活疫苗,免疫4周龄SPF雏鸡后,3周时平均HI抗体效价达9.5 log2;在免疫后3周以2×107EID50的剂量攻击亲本株和5株流行病毒株,攻毒后采集3 d、5 d、7 d的拭子,免疫组拭子样品病毒检测均为阴性;对照组3 d、5 d拭子病毒检测的阳性率均在80%以上,7 d的阳性率在60%以下。以上结果表明灭活疫苗Re-9株抗原针对性强,而且具有良好的免疫效力,能够抵御近年来分离的H9N2亚型AIV,是理想的H9N2亚型禽流感疫苗株。  相似文献   

4.
H9亚型禽流感在我国家禽中广泛流行,给养禽业造成巨大经济损失的同时,也严重威胁着公共卫生安全。H9亚型禽流感病毒(avian influenza virus,AIV)具有高度遗传变异性,导致流行株和疫苗株之间抗原匹配性差,从而影响疫苗的临床保护效果,急需研发一种高效、具有交叉保护性的通用型H9亚型禽流感疫苗。马赛克疫苗是针对遗传多样性病原体设计,通过整合所有抗原序列获得一条抗原表位覆盖最广泛的嵌合蛋白,并制备疫苗。本研究参考mosaic疫苗设计原则,设计、优化并合成了一条H9亚型禽流感病毒的mosaic血凝素(hemagglutinin,HA)基因序列,采用反向遗传操作技术,以H1N1亚型流感病毒PR8株为骨架,以mosaic H9HA序列替换PR8株的HA片段,获得重组病毒rPR8-HAm/H9。将其制备为灭活疫苗并免疫SPF雏鸡,监测抗体水平、攻毒保护效果,评价其交叉保护效果。结果表明,重组病毒rPR8-HAm/H9灭活疫苗免疫SPF雏鸡,可诱导机体产生较高水平的HI抗体和中和抗体,可显著抑制攻毒后病毒的脱落,对H9N2 AIV JM0305株的攻毒保护率为80%。rPR8-HAm/H9灭活疫苗可以对异源H9N2 AIV JM0305株产生较好的交叉攻毒保护,为研发基于马赛克技术的禽流感通用疫苗提供了前期基础。  相似文献   

5.
H9亚型禽流感病毒流行毒株交叉免疫攻毒保护试验   总被引:3,自引:0,他引:3  
采用1998-2009年在河北、河南及山东分离的3株禽流感H9亚型流行毒株,分别制备灭活疫苗,免疫SPF鸡,免疫后21 d,采血测定HI抗体,然后用从上述3个地区及北京分离的共5株禽流感H9亚型流行毒株进行攻击,观察不同时期及地点分离的H9亚型流行毒株的交叉免疫攻毒保护效果。结果显示,用不同时期及地点的3个分离毒株所制备出的灭活疫苗免疫鸡后,各免疫组试验鸡H9亚型禽流感的HI抗体效价均明显上升,不同毒株灭活疫苗所诱导产生的HI抗体效价存在着不同程度的差异,用同源毒株作为抗原测定免疫组鸡的血清样品,可获得较高的HI抗体效价。攻毒试验结果证明,对不同时期及地点分离的禽流感H9亚型流行毒株间产生了较好的交叉保护力。用1998年分离的WD98株制备出的灭活疫苗对目前的流行毒株仍具有较好的保护效力。  相似文献   

6.
为了探讨悬浮培养和鸡胚尿囊液培养得到的H9亚型禽流感病毒(AIV)抗原制备的疫苗的免疫效力,试验用3株H9亚型AIV株分别接种微载体悬浮培养的MDCK细胞制备3种悬浮培养的细胞疫苗抗原,以3株H9亚型AIV株接种10日龄SPF鸡胚制备3种鸡胚尿囊液抗原,测定6种抗原液HA效价和鸡胚半数感染量(EID50);分别使用6种抗原液制备灭活疫苗,免疫21日龄SPF鸡,并在免疫后第21天采血测定HI抗体水平,采血后进行攻毒并在攻毒后第5天进行病毒分离试验。结果表明:两种方式制备的AIV抗原HA效价为7~9 lb,鸡胚半数感染量为1×106.9~7.9EID50,疫苗免疫后第21天用同源毒株作为工作抗原测定的免疫鸡HI效价差异不大,用异源毒株测定时有一定差异;两种方法得到的抗原制备的疫苗均能获得很好攻毒保护。  相似文献   

7.
H9N2亚型禽流感流行株灭活疫苗种毒的筛选   总被引:1,自引:0,他引:1  
为筛选出具有良好免疫原性的禽流感病毒(AIV)H9N2亚型灭活流行株种毒,选择2008年中国大陆8个省份15株H9N2亚型AIV分离株进行抗原性分析,选取代表流行株进行鉴定并制备灭活疫苗,进行免疫效力评估。实验结果显示,2008年分离株之间抗原性比较接近,与2000年前分离株的抗原性相差较大;2008年分离的8株病毒HA基因核苷酸同源率在93.2%~98.6%之间,而CK/SH/10/01毒株与这8株病毒的同源率仅在91.9%~93.5%之间;CK/ZJ/17/08、CK/SD/2CZ/08、DK/FJ/560/08、CK/FJ/521/08、CK/HuN/174/08和CK/HuN/33/08候选株病毒在SPF鸡胚上连续传15代HA价及致病性等均未改变,SPF鸡鼻腔感染106EID50各毒株后均无任何症状和死亡出现;候选株灭活疫苗免疫SPF鸡3周时,产生针对疫苗株抗原检测的HI抗体介于10.35log2~11.811log2,以106EID50剂量鼻腔感染途径攻毒后,只有CK/HuN/174/08和CK/HuN/33/08株灭活疫苗免疫鸡不仅可以对同源毒株的攻击提供良好的免疫保护,而且对2008年分离的异源毒株的攻击也能提供比较理想的免疫保护,可作为适合我国大部分地区应用的H9N2亚型禽流感灭活疫苗种毒株。  相似文献   

8.
为了监测鸡新城疫、传染性支气管炎、禽流感(H9亚型)三联灭活疫苗(LaSota株+M41株+SS/94株)对H9亚型禽流感病毒流行毒株的免疫保护效果,采用H9亚型禽流感病毒SS/94株及2009—2010年现地分离的3株H9亚型禽流感病毒对已免疫上述三联灭活苗的SPF鸡进行攻毒试验。结果显示,试验鸡以0.3 mL/只的剂量免疫三联灭活苗后21 d,其H9亚型禽流感病毒的HI抗体效价可达8~11log2,此抗体水平可抵抗2×106EID50的H9亚型禽流感病毒SS/94株、BLCN09株、WDZ09株、YT10株的攻击,攻毒保护率均达90%(9/10)以上。可见,以SS/94株作为禽流感疫苗抗原制备的三联灭活苗具有良好的免疫原性,能使免疫鸡抵抗2009—2010年期间现地分离的多株H9亚型禽流感病毒的攻击。  相似文献   

9.
禽流感H9亚型流行毒株交叉免疫保护试验   总被引:3,自引:0,他引:3  
采用北京市农林科学院畜牧兽医研究所1998年-2008年在北京及河北省分离的4株禽流感病毒H9亚型流行毒株,分别制备不同分离毒株灭活疫苗,免疫SPF鸡,进行交叉免疫保护试验。结果表明,用4个不同时期的分离毒株所制备出的灭活疫苗免疫鸡后,各免疫组鸡禽流感(H9亚型)的HI抗体效价均明显上升,所诱导产生的HI抗体效价基本相同;不同时期分离毒株大多产生了较好的交叉保护力。用1998年、2004年及2006年分离的流行毒株制备出的灭活疫苗能够保护2008年流行毒株的攻击。  相似文献   

10.
禽流感病毒(Avian Influenza Virus,AIV)是禽流行性感冒(简称禽流感,Avian Influenza,AI)的病原。其中高致病性的H5N1亚型AIV可以造成鸡群的大批死亡,对家禽养殖业影响严重,并可引起人的感染和死亡。通过接种疫苗能有效地控制禽流感的传播,在禽流感疫苗免疫效力的评价过程中,监测免疫鸡血清抗体是最常用、最可行的方法。2009年农业部批准重组禽流感病毒灭活疫苗(H5N1亚型,Re-5株)和重组禽流感病毒H5亚型二价灭活疫苗(H5N1,Re-5株+Re-4株)制造,2012年重组禽流感病毒灭活疫苗(H5N1亚型,Re-6株)及重组禽流感病毒H5亚型二价灭活疫苗(H5N1,Re-6株+Re-4株)取代以上两个产品,2014年,北方出现了新的7.2分支毒株,而禽流感Re-4株疫苗和Re-6株疫苗对这种新型流行株的保护效力并不佳。2014年4月11日,农业部发布“中华人民共和国农业部公告第2093号”,制定了重组禽流感病毒灭活疫苗(H5N1亚型,Re-7株)和重组禽流感病毒H5亚型二价灭活疫苗(Re-6株+Re-7株)2种兽药产品制造及检验规程,全国将主要以Re-6与Re-7两种疫苗联合免疫为新的趋势。本试验分别用不同毒株的禽流感试验抗原与不同毒株禽流感疫苗免疫鸡的血清通过HI试验相互检测,对抗体效价进行分析,从而得出不同毒株的相关性。  相似文献   

11.
In 2015,an H9N2 subtype avian influenza virus (AIV) strain was isolated from a chicken farm in Hefei,Anhui,and named HF strain.The results of the chicken embryo proliferation characteristics study showed that the half infection rate of chicken embryo (EID50) was 109.17/0.1 mL,and the mean time to death for minimum lethal dose(MDT) was 87 h.The analysis result of HA gene showed that its amino acid cleavage site was located in RSSR↓GLF,which accorded with the characteristics of low pathogenic avian influenza.The genetic evolution analysis of HA gene revealed that the isolate belonged to the h9.4.2.5 lineage,which accorded with the current virus strain epidemic characteristics.The HF strain was prepared with 10 H9N2 subtype AIV isolates which isolated from all over the country from 2006 to 2018 to prepare inactivated vaccines,immunize SPF chickens,prepare positive sera,and analyze the virus antigenicity by cross hemagglutination inhibition test.The results showed that the correlation between the HF strain and the virus antigens before 2014 and was between 0.50-0.56,and the virus antigen correlation after 2014 was 0.89-1.00.This showed that the isolate had good antigenic correlation with epidemic strains in recent years.Inactivate HF strain virus solution with 0.2% formaldehydel,and its HA titer did not change before and after inactivation.After the inactivated virus solution was prepared into an oil emulsion inactivated vaccine to immunize SPF chickens,21 days after immunization,the average value of the HI antibody titer reached 9.0log2.It could make immune chicken completely resistant to H9 subtype AIV infection and provide 100% protection from challenge.The above research results showed that the HF strain had good immunogenicity and could be used as a vaccine candidate strain for the prevention of H9N2 subtype AIV.  相似文献   

12.
采用免疫荧光法、使用流式细胞检测仪对经H9亚型禽流感病毒人工感染SPF鸡、H9亚型禽流感油乳剂灭活苗免疫SPF鸡以及经免疫后使用H9亚型禽流感病毒攻毒后的SPF鸡外周血、脾脏、胸腺中T细胞表型亚类(CD4+、CD8+、TCR1+)的变化规律进行了监测,结果表明,H9亚型禽流感油乳剂灭活苗免疫后抗原的缓慢释放可在一定程度上激发机体的细胞免疫应答,使免疫活性T淋巴细胞得到活化,免疫后鸡体外周血中CD4+、CD8+和TCR1+T细胞的数量呈现出一明显升高的过程;同时,人工感染免疫鸡后,脾脏和胸腺TCR1+T细胞的数量上升,外周血CD4+、CD8+和TCR1+T细胞的数量少量降低或维持不变,随后短期即恢复正常;而人工感染SPF对照鸡后,外周血CD4+、CD8+和TCR1+T细胞的数量呈现下降趋势.  相似文献   

13.
In 2013,one case of suspected H9 subtype avian influenza occurred in a chicken farm of Jilin povince.Clinical samples were collected from the diseased farm,inoculated into the allantoic cavity of 9-day-old SPF chicken embryo,and then one strain of virus was isolated.The results of HA test,HI test and molecular biology test all showed that the isolate belonged to H9 subtype avian influenza virus (AIV).The HA cleavage site of the isolate was RSSR↓GLF,which was consisted with the molecular characteristic of low pathogenic AIV.The HA peptide chain had 9 potential glycosylation sites which were same as other isolates of recent years.The isolate had 8 receptor binding sites,including 234 receptor binding site by glutamine (Q) mutating into threonine (T).The phylogenetic tree revealed the isolate belonged to Eurasian lineages and it had far genetic relationship with the earliest domestic isolate (A/Chicken/Beijing/1/94(H9N2)),but had close genetic relationship with the representative strain (A/Chicken/Guangxi/55/2005(H9N2)) of major epidemic branch since 2007.We prepared an inactivated oil-emulsion vaccine of the isolate,and then vaccinated SPF chicken.21 days after vaccination,the HI titer of chicken serum antibody reached up to 10log2.The result suggested the isolate had good immunogenicity.  相似文献   

14.
Zhao S  Jin M  Li H  Tan Y  Wang G  Zhang R  Chen H 《Avian diseases》2005,49(4):488-493
To differentiate avian influenza virus (AIV)-infected chickens vs. chickens immunized with inactivated avian influenza virus, an enzyme-linked immunosorbent assay (ELISA) was developed using a recombinant nonstructural protein (NS1) as the diagnostic antigen, which was cloned from an AIV H9N2 subtype strain isolated during the avian influenza outbreak of 2003-04 and expressed in Escherichia coli. Antibodies to the AIV NS1 protein was only detected in the sera of chickens experimentally infected with AIV but not in the sera of chickens immunized with inactivated vaccine. This ELISA is useful for serological diagnosis to distinguish chickens infected with influenza viruses from those immunized with inactivated vaccine.  相似文献   

15.
To prepare the mono-specific serum to diagnose H9N2 avian influenza virus (AIV),this test extracted H9N2 subtype AIV RNA and then amplified the upper HA1 gene,the middle HA2 gene and the lower HA3 gene by RT-PCR,respectively.Then they were inserted into expression vector pET-32a(+) and transformed into BL21(Rosetta) expression strain.The expressed proteins were used to immune Kunming White mice to prepare antiserum.Recombinant fusion proteins of HA1 HA2 and HA3 were obtained successfully and they showed good immunogenicity.Indirect immunofluorescence assay (IFA) showed that the two serums obtained by the upper HA1 and the middle HA2 could react with the H9N2 subtype AIV,while that of the lower HA3 could not.Recombinant Marek's disease virus (MDV) MZC12 HA/NA also proved that the serums prepared by HA1 and HA2 could recognize the expression of HA gene.The mono-specific serum of H9N2 subtype AIV was prepared successfully,which could lay the foundation for the diagnosis and research of H9N2 subtype AIV.  相似文献   

16.
禽流感油乳剂灭活疫苗的研究   总被引:36,自引:3,他引:33  
将6种不同亚型的禽流感病毒(AIVH2N9、H3N8、H5N1、H5N2、H7N1、H9N2)分别接种鸡胚,收获尿囊液,经甲醛灭活,以矿物油为佐剂制成油乳剂灭活疫苗。疫苗接种4和8周龄SPF鸡,注苗后均无不良反应。每种亚型疫苗免疫后14天和21天攻毒保护率均达90%-100%。分别用H5N1和H9N2亚型灭活疫苗免疫8周龄SPF鸡、25和28周龄健康商品蛋鸡,免疫后7天产生免疫力,14天保护率达100%,21天后抗体达高峰,仔鸡接苗后最高血凝抑制(HI)几何平均滴度(GMT)为7.3-8.0log2,蛋鸡为8.0-10.5log2。免疫后180天,抗体效价不低于6.5log2。免疫后180天分别以AIV攻击,H5亚型疫苗组,用强毒攻击无一发病和死亡,对照鸡全部发病死亡;H9亚型疫苗组,对照鸡在攻毒后72小时停产,免疫鸡无一发病且产蛋正常,对同源攻毒的保护率达100%。  相似文献   

17.
为了制备特异性识别H9N2亚型禽流感病毒(AIV)的单因子血清,本试验提取H9N2亚型AIV RNA,RT-PCR后,分别扩增上段HA1、中段HA2和下段HA33段基因。将他们插入原核表达载体pET-32a(+)中,转化BL21(Rosetta)菌株中表达。将表达的蛋白常规免疫昆明白小鼠,以制备抗血清。结果显示,成功获得3段重组融合蛋白,且均具有良好的免疫原性。间接免疫荧光试验(IFA)结果显示,上段HA1、中段HA2制备的单因子血清均可与H9N2亚型AIV反应,而下段HA3则不能。重组马立克氏病病毒(MDV)MZC12 HA/NA同样证明HA1、HA2两段制备的单因子血清能识别HA基因的表达。本试验成功制备了识别H9N2亚型AIV HA的单因子血清,为H9N2亚型AIV的鉴别诊断及研究奠定了基础。  相似文献   

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