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1.
H9N2亚型禽流感病毒HA基因的克隆及其DNA疫苗的动物免疫试验   总被引:11,自引:1,他引:10  
血凝素(HA)是决定禽流感病毒的毒力强弱和免疫原性的主要蛋白质.根据已发表的H9亚型AIV的HA基因序列,设计合成了1对H9 HA特异引物,以AIV A/Chicken/Henan/1/1999/(H9N2)核酸为模板,通过RT-PCR扩增出1条1.6 kb cDNA片段.将HA基因插入pVAX1中,构建了真核表达质粒pVAX-H9.采用活体电击法免疫3周龄SPF鸡10只,剂量为50 μg/只,3周后加强免疫一次,5周后以100倍鸡胚感染剂量(EID)的HA基因同源病毒对所有鸡进行攻毒.其间每周检测抗体水平变化,6周后以棉拭子进行泄殖腔病毒分离.结果为攻毒后免疫组鸡HI效价为9log2~10log2,对照组为2log2~4log2;免疫组病毒分离数为0/10,对照组为10/10.表明所构建的HA基因表达质粒可作为基因疫苗诱导鸡产生免疫保护反应.  相似文献   

2.
血凝素(HA)是决定禽流感病毒的毒力强弱和免疫原性的主要蛋白质.根据已发表的149亚型AIV的HA基因序列,设计合成了1对H9HA特异引物,以AIV A/Chicken/Henan/1/1999/(H9N2)核酸为模板,通过RT-PCR扩增出1条1.6kb cDNA片段。将HA基因插入pVAXI中,构建了真核表达质粒pVAX-H9,采用活体电击法免疫3周龄SPF鸡10只,剂量为50μg/只,3周后加强免疫一次,5周后以100倍鸡胚感染剂量(EID)的HA基因同源病毒对所有鸡进行攻毒,其间每周检测抗体水平变化,6周后以棉拭子进行泄殖腔病毒分离,结果为攻毒后免疫组鸡HI效价为9log2-10log2,对照组为2log2-4log2;免疫组病毒分离数为0/10。对照组为10/10,表明所构建的HA基因表达质粒可作为基因疫苗诱导鸡产生免疫保护反应。  相似文献   

3.
抗禽流感病毒多表位DNA疫苗的构建及其免疫效力研究   总被引:17,自引:1,他引:17  
多表位DNA疫苗是建立在常规DNA疫苗基础上的一种新型疫苗。它是用表位作免疫原,这样就比较容易在一个表达载体上克隆病原体的多个抗原基因中具有免疫活性的部分。本试验以H5N1亚型禽流感病毒的HA和NP基因及其表位为基础构建了4个重组质粒:1 pIRES/HA(表达全长的HA基因);2 pIRES/tHA(只表达HA基因的主要抗原表位区);3 pIRES/tHANpep(融合表达HA基因的抗原表位区和NP基因的3个CTL表位);4 pIRES/tHANpep-IFN-γ(用鸡的IFN-γ基因取代质粒pIRES/tHANpep中的neo基因)。分别用这4个重组质粒和空载体质粒pIRES1neo肌注免疫30日龄SPF鸡。免疫3次,间隔为2周,每次每只鸡的剂量为200μg。第3次免疫后两周以高致病性禽流感病毒H5N1强毒攻击,免疫及攻毒前后均采血检测HI抗体效价和外周血CD4+、CD8+T细胞的变化。结果发现,攻毒前各质粒免疫组均检测不到HI抗体,攻毒后1周存活鸡HI抗体效价迅速升高到64~256。流式细胞仪检测显示外周血CD4+、CD8+T细胞在疫苗免疫后都有不同程度的升高。空载体质粒对照组鸡(10只)在攻毒后3~8 d内全部死亡,其他各重组质粒免疫组鸡都获得了部分保护,保护率分别是:pIRES/HA组为545%(6/11),pIRES/tHA组为30%(3/10),pIRES/tHANPep组为36.3%(4/11), pIRES/tHANPepIFNγ组为50%(5/10)。这些结果表明我们构建的多表位DNA疫苗能够诱导机体产生特异性免疫应答,并在同型禽流感强毒攻击时对鸡只提供了一定的保护。  相似文献   

4.
对河北省新城疫分离株HeB02的生物学特性进行了鉴定 ,根据国外已发表的新城疫病毒F基因序列 ,设计了一对引物并以RT PCR特异性扩增出HeB02分离株的F基因 ,基因产物大小为 1.63kb ,与设计相符 ,对其进行序列测定后 ,与其它标准毒株F48E9、LaSota和Clone30的F基因进行同源性比较 ,结果表明 ,HeB02株与国内标准强毒株F48E9及目前广泛应用的弱毒疫苗LaSota和Clone30的F基因核苷酸序列的同源性分别为 88.1 %、84.9%和 83.8%,由此可以看出HeB0  相似文献   

5.
将禽流感病毒M2基因克隆于真核表达质粒pIRES-EGFP中,使其位于pCMV启动子的调控下,并与绿色荧光蛋白基因(EGFP)串联后,将上述串联基因插入到含MDV CVI988的非必需区US基因的重组质粒pUS2中,构建带标记的重组质粒,然后将此重组质粒转染感染了MDV CVI988的鸡胚成纤维细胞,利用同源重组的方法,筛选了表达禽流感病毒M2基因的重组病毒MDV1。经PCR、Dot-blotting,Western-blotting等实验的结果表明,禽流感病毒M2基因的确插入到MDV1(CVI988)基因组中并获得表达。重组MDV1免疫1日龄SPF鸡21天后,用ELISA可检测到M2蛋白的特异性抗体。接种了重组病毒rMDV的鸡体内针对H9N2疫苗血凝素的抗体滴度(p<0.05)明显提高,以禽流感病毒AIV A/Chicken/Guangdong/00(H9N2)攻毒后进行病毒重分离试验的结果发现,重组病毒能有效地降低病毒的排出量(p<0.01),说明该重组病毒可以用于防制禽流感的免疫。  相似文献   

6.
采用PCR技术从重组质粒pVAX1-F中扩增出新城疫病毒JS5株的融合蛋白(F)基因,将其克隆入真核表达质粒pmcDNA3.1 中,获得重组表达质粒pmcDNA3.1-F.通过电穿孔转化法将重组质粒转入减毒鼠伤寒沙门氏菌SL7207,构建成功携带DNA疫苗的重组沙门氏菌SL7207(pmcDNA3.1-F).体内、体外试验结果表明,重组质粒pmcDNA3.1-F在沙门氏菌中的稳定性显著高于pcDNA3.1-F.将重组菌SL7207(pmcDNA3.1-F)和SL7207(pcDNA3.1-F)分别以1×109 CFU剂量两次口服免疫BALB/c小鼠,免疫小鼠可产生针对新城疫病毒F蛋白的血清抗体和黏膜抗体.重组菌以5×109 CFU剂量两次口服免疫4日龄SPF鸡,免疫鸡产生的针对新城疫病毒F蛋白的血清抗体和小肠黏膜抗体效价水平与空载体组之间存在显著性差异(P<0.05).免疫保护试验结果显示,SL7207(pmcDNA3.1-F)和SL7207(pcDNA3.1-F)免疫组的免疫保护率均与空载体组之间存在显著性差异(P<0.05),且SL7207(pmcDNA3.1-F)免疫组的保护率较SL7207(pcDNA3.1-F)免疫组提高了20.0%,说明稳定携带新城疫病毒DNA疫苗的减毒沙门氏菌具有良好的免疫原性和免疫保护性.  相似文献   

7.
研究去除重组鸡痘病毒中的报告基因,构建一株只含目的基因的重组毒。将H5亚型AIV的HA基因作为靶基因,两侧含loxP序列的GFP表达盒插入鸡痘病毒重组臂基因构建了转移质粒载体,将其与脂质体混合转染CEF细胞,获得了表达H5和GFP的鸡痘病毒重组体。通过二次转染,利用Cre酶自动敲除重组病毒中的GFP基因,最终获得了只含H5血凝素基因表达盒的重组鸡痘病毒。免疫荧光和病毒滴度测定结果表明,经过连续传代后重组病毒仍然稳定复制并表达H5血凝素。用105PFU和2×105PFU rFPV H5免疫SPF鸡,28d后,免疫组鸡抗体平均滴度(HI)分别达到4log 2和4.5log 2,结果表明,H5HA基因重组病毒能刺激鸡群产生较高特异抗体。  相似文献   

8.
NDV HeB02分离株的生物学特性及其F基因的克隆与序列测定   总被引:2,自引:0,他引:2  
对河北省新城疫分离株HeB0 2的生物学特性进行了鉴定 ,根据国外已发表的新城疫病毒F基因序列 ,设计了一对引物并以RT PCR特异性扩增出HeB0 2分离株的F基因 ,基因产物大小为 1 63kb ,与设计相符 ,对其进行序列测定后 ,与其它标准毒株F48E9、LaSota和Clone30的F基因进行同源性比较 ,结果表明 ,HeB0 2株与国内标准强毒株F48E9及目前广泛应用的弱毒疫苗LaSota和Clone30的F基因核苷酸序列的同源性分别为 88 1 %、84 9%和 83 8%,由此可以看出HeB0 2分离株与标准毒株和疫苗株在F基因上发生了变异。  相似文献   

9.
化学合成H5N1亚型禽流感病毒M2蛋白N端胞外域基因序列3拷贝基因(3M2e),与人结核杆菌hsp70蛋白基因融合,克隆至原核表达载体pET-32a(+),构建表达载体pET-3M2e 与pET-3M2e-hsp70。重组质粒转化大肠杆菌BL21,经IPTG诱导重组蛋白获得表达,通过镍亲和层析获得纯化的融合蛋白,利用Western blot鉴定重组蛋白免疫原性。将纯化的重组蛋白免疫20日龄的禽流感非免鸡,以人工合成的M2e与KLH偶联后免疫鸡作为阳性对照,以pET-32a(+)载体蛋白注射组作为阴性对照,初免后2周加强免疫。通过抗M2e抗体检测、 细胞病变抑制试验与间接免疫荧光试验评价重组蛋白免疫后产生的体液免疫反应; 利用流式细胞分群及细胞因子产量检测评价重组蛋白免疫后产生的细胞免疫反应。加强免疫后4周用100EID50的H9N2亚型AIV攻毒,通过Real-time PCR检测攻毒后3、5、7天免疫鸡泄殖腔棉拭子中病毒的含量。结果表明,重组蛋白3M2e hsp70免疫组能够刺激免疫鸡产生较高的抗体水平及细胞免疫应答,并且攻毒后泄殖腔棉拭子中病毒含量明显降低。  相似文献   

10.
新城疫壳聚糖微球疫苗免疫效果的研究   总被引:1,自引:0,他引:1  
鸡新城疫是由新城疫病毒引起的鸡的一种急性、烈性、高度接触性传染病,是危害养禽业的最严重疫病之一。控制新城疫最根本的措施是进行有效的疫苗接种,目前常用的疫苗是弱毒活疫苗和灭活疫苗,但二者在实际应用中均存在一定的局限性。口服微球疫苗可以诱导较强的粘膜免疫;同时还能够诱导产生系统的体液免疫和细胞免疫,已成为ND疫苗研究的热点。以壳聚糖为囊材,新城疫La Sota抗原液为芯材,戊二醛为交联剂,制备出新城疫壳聚糖微球疫苗,通过了实验室安全检验和效力检验。将新城疫壳聚糖微球疫苗与LaSota活疫苗和新城疫油乳剂灭活苗分别免疫SPF鸡,利用MTT、血凝抑制法(HI)和ELISA等分别检测不同疫苗免疫后的细胞免疫、体液免疫和粘膜免疫抗体IgA,并在当免疫鸡HI抗体降到23的情况下进行了攻毒试验。结果表明,新城疫壳聚糖微球疫苗安全性好,免疫后可刺激机体产生较强的细胞免疫、体液免疫和局粘膜免疫,具有较好的保护作用。  相似文献   

11.
根据GenBank中发表的新城疫病毒(NDV)融合蛋白(F)基因序列,设计一对引物,通过RTPCR扩增出鹅源新城疫病毒分离株JS5F基因,测序确认后,将其克隆入真核表达载体pVAX1,获得重组真核表达质粒pVAX1F。将pVAX1F转化减毒鼠伤寒沙门氏菌SL7207,构建成携带DNA疫苗的重组沙门氏菌SL7207(pVAX1F)。重组菌以不同剂量口服免疫1日龄雏鸡,结果表明,细菌对雏鸡具有良好的安全性,且不影响鸡的增重。将SL7207(pVAX1F)分别以108CFU和109CFU的剂量3次口服免疫1日龄商品代伊莎褐蛋鸡,抗体检测结果显示,在三免后1周,SL7207(pVAX1F)109CFU剂量组的血清抗体效价与空载体组之间存在显著性差异(p<0.05)。重组菌两个剂量组在首免后2周开始出现粘膜抗体,并于二免后2周和3周达到较高水平。免疫保护试验结果显示,SL7207(pVAX1F)109CFU剂量组的保护率为77.27%,与空载体组之间存在显著性差异(p<0.05)。  相似文献   

12.

Background

Newcastle disease (ND) is a highly contagious viral disease of poultry caused by pathogenic strains of the Newcastle disease virus (NDV). Live NDV vaccines are administered by drinking water, eyedrops or coarse aerosol spray. To further enhance mucosal immune responses, chitosan nanoparticles were developed for the mucosal delivery of a live NDV vaccine.

Methodology/Principal Findings

A lentogenic live-virus vaccine (strain LaSota) against NDV encapsulated in chitosan nanoparticles were developed using an ionic crosslinking method. Chitosan nanoparticles containing the lentogenic live-virus vaccine against NDV (NDV-CS-NPs) were produced with good morphology, high stability, a mean diameter of 371.1 nm, an encapsulation rate of 77% and a zeta potential of +2.84 mV. The Western blotting analysis showed that NDV structural proteins were detected in NDV-CS-NPs. The virus release assay results of NDV-CS-NPs indicated that NDV was released from NDV-CS-NPs. Chickens immunized orally or intranasally with NDV-CS-NPs were fully protected whereas one out of five chickens immunized with the LaSota live NDV vaccine and three out of five chickens immunized with the inactivated NDV vaccine were dead after challenge with the highly virulent NDV strain F48E9.

Conclusions/Significance

NDV-CS-NPs induced better protection of immunized specific pathogen free chickens compared to the live NDV vaccine strain LaSota and the inactivated NDV vaccine. This study lays a foundation for the further development of mucosal vaccines and drugs encapsulated in chitosan nanoparticles.  相似文献   

13.
The R2B strain of virus of new castle disease virus (NDV) was propagated in 9-11 day old embryonated chicken eggs via allantoic cavity route and after seven serial passages virus was purified from allantoic fluid. Purified virus was analyzed by sodium dodecyl sulfate polyacrylamide gel electrophoresis which yielded six major polypeptides ranging from 38-200 kDa. Protein fractions, corresponding to 75 and 56kDa, resembling haemagglutinin-neuraminidase (HN) and fusion (F) proteins were used to ascertain their immunization potential. Immunization of viral proteins was compared with the whole virus vaccine. Among different group of birds, highest haemagglutination inhibition (HI) and enzyme linked immunosorbent assay (ELISA) titers were obtained in birds immunized with whole virus vaccine followed by viral proteins, 75 and 56kDa in combination which was comparable with birds immunized with 56kDa protein alone. Despite lower values of HI and ELISA titers elicited by viral subunits in immunized birds, when challenged with virulent NDV strain, protection accorded by viral proteins in combination (75 +56kDa) or 56kDa alone was comparable with whole virus vaccine.  相似文献   

14.
本研究旨在构建重组干酪乳杆菌pLA-Newcastlediseasevirus (NDV)-F/Lactobacillus casei,获得表达产物,并探讨其免疫效果。利用PCR扩增携带部分主要抗原表位的NDV F基因,与穿梭质粒pLA连接转化至大肠杆菌BL21 (DE3)中,筛选阳性重组质粒,将其电转化至干酪乳杆菌中,构建重组干酪乳杆菌pLA-NDV-F/L. casei,应用PCR鉴定阳性菌株,Western blotting鉴定重组菌反应原性,间接免疫荧光、流式细胞术和激光共聚焦检测蛋白表达情况。试验选用14日龄雏鸡,各组免疫方式为口服+滴鼻。设立pLA-NDV-F/L. casei两次免疫组和三次免疫组、弱毒疫苗组、 pLA/L.casei、未攻毒PBS组和攻毒PBS组。间接ELISA方法检测雏鸡血清IgG、肠道、鼻腔、肺脏中sIgA抗体效价,评价试验组雏鸡攻毒保护率。结果表明,有94.10%的重组菌表达了F蛋白,且高效表达在干酪乳杆菌细胞表面,蛋白大小为62kDa,并能与抗NDV阳性血清特异性结合。各免疫组anti-F IgG和s Ig A抗体水平显著高于对照组,p LA-NDV-F/L. casei三次免疫组抗体持续时间比两次免疫组延长28 d,抗体峰值没有显著差异。免疫pLA-NDV-F/L. casei三次、两次、弱毒疫苗、pLA/L. casei和PBS的攻击保护率分别为80%、80%、90%、0%和0%。因此,利用干酪乳杆菌表达体系成功表达了携带部分抗原表位的NDVF基因,具备良好的反应原性和免疫原性,可诱导机体产生保护性免疫应答。  相似文献   

15.
研究LY株禽呼肠孤病毒(ARV)感染1日龄SPF鸡后对法氏囊发育影响,对传染性法氏囊病毒(IBDV)、禽流感病毒(AIV)、新城疫病毒(NDV)疫苗免疫诱发的抗体的影响,及对强毒株IBDV致病作用的影响。结果表明,LY株ARV感染1日龄SPF鸡可引起法氏囊萎缩和部分淋巴细胞减少,但对增重及AIV和NDV疫苗免疫后抗体滴度却没有显著影响。ARV感染可降低弱毒IBDV疫苗免疫后的抗体反应,但对随后IBDV强毒株攻毒的抵抗力却与对照鸡无显著差异。经IBDV弱毒疫苗免疫后,再接种强毒株IBDV,不会引起死亡,但却仍能显著抑制对AIV、NDV疫苗免疫后的抗体滴度。然而,对于1~7日龄经ARV感染的鸡,IBDV强毒的这种免疫抑制作用又显著低于未经ARV感染的对照鸡。  相似文献   

16.
利用真核表达载体 pVAX1 构建 HIV-2 gag-gp105 嵌合基因的重组质粒 pVAX1gag-gp105,将其转入 BHK21细胞中,利用间接免疫荧光方法检测其表达情况。进一步分别将核酸疫苗质粒 pVAX1gag-gp105、对照组质粒pVAX1 和 PBS 溶液经肌肉注射免疫 BALB/c 小鼠,检测免疫小鼠脾 CD4 、CD8 T 细胞亚群的数量,脾特异性 CTL杀伤活性和血清抗体滴度。结果显示,重组核酸疫苗质粒 pVAX1gag-gp105 疫组小鼠脾 CD4 、CD8 T 细胞亚群的数值均比对照组高( P<0.01),脾特异性 CTL 杀伤活性与对照组相比差异极显著(P<0.01),血清抗体滴度显著高于对照组(P<0.01) 。以上结果表明,HIV-2 gag-gp105 嵌合基因 DNA 疫苗对 BALB/c 小鼠具有良好的体液和细胞免疫原性。  相似文献   

17.
鸡新城疫口服DNA疫苗的安全性、稳定性与免疫效力   总被引:12,自引:0,他引:12  
将含新城疫病毒(NDV)F48E9株融合蛋白(F)基因的真核表达质粒pcDNA3-F的减毒鼠伤寒沙门氏菌ZJ111株(ZJ111/pcDAN3-F)口服接种小鼠和雏鸡。结果表明:利用该减毒株作为载体传递DNA疫苗具有相对安全性。用酶切和PCR鉴定法证实在体内外无抗生素存在的条件下重组质粒在受体菌ZJ111菌株内比较稳定。ZJ111/pcDAN3-F以每羽108cfu免疫雏鸡,2周后二免,二免后4周攻击致死剂量的强毒株F48E9,观察其免疫效力。结果表明:重组ZJ111/pcDNA3-F菌株不仅能诱导雏鸡产生抗NDV抗体,而且能诱导法氏囊B淋巴细胞和胸腺T淋巴细胞的增殖反应,对强毒株攻击的保护率为66.7%,高于pcDNA3-F裸质粒DNA疫苗注射免疫组(50%)。上述结果初步提示减毒沙门氏菌为载体传递DNA疫苗具有良好的安全性、稳定性和免疫原性,为研制低成本、实用化的口服禽类DNA疫苗奠定了基础。  相似文献   

18.

Background

Although the Newcastle disease virus (NDV) inactivated vaccines and attenuated live vaccines have been used to prevent and control Newcastle disease (ND) for years, there are some disadvantages. Recently, newly developed DNA vaccines have the potential to overcome these disadvantages. The low delivery efficiency, however, hindered the application of DNA vaccines for ND in practice.

Methodology/Principal Findings

The eukaryotic expression plasmid pVAX1-F (o) DNA that expressed the F gene of NDV encapsulated in PLGA nanoparticles (pFNDV-PLGA-NPs) were prepared by a double emulsion-solvent evaporation method and optimal preparation conditions of the pFNDV-PLGA-NPs were determined. Under the optimal conditions, the pFNDV-PLGA-NPs were produced in good morphology and had high stability with a mean diameter of 433.5±7.5 nm, with encapsulation efficiency of 91.8±0.3% and a Zeta potential of +2.7 mV. Release assay in vitro showed that the fusion gene plasmid DNA could be sustainably released from the pFNDV-PLGA-NPs up to 93.14% of the total amount. Cell transfection test indicated that the vaccine expressed and maintained its bioactivity. Immunization results showed that better immune responses of SPF chickens immunized with the pFNDV-PLGA-NPs were induced compared to the chickens immunized with the DNA vaccine alone. In addition, the safety of mucosal immunity delivery system of the pFNDV-PLGA-NPs was also tested in an in vitro cytotoxicity assay.

Conclusions/Significance

The pFNDV-PLGA-NPs could induce stronger cellular, humoral, and mucosal immune responses and reached the sustained release effect. These results laid a foundation for further development of vaccines and drugs in PLGA nanoparticles.  相似文献   

19.
Virulent strains of Newcastle disease virus (NDV) can cause devastating disease in chickens worldwide. Although the current vaccines are substantially effective, they do not completely prevent infection, virus shedding and disease. To produce genotype-matched vaccines, a full-genome reverse genetics system has been used to generate a recombinant virus in which the F protein cleavage site has been changed to that of avirulent vaccine virus. In the other strategy, the vaccines have been generated by replacing the F and HN genes of a commercial vaccine strain with those from a genotype-matched virus. However, the protective efficacy of a chimeric virus vaccine has not been directly compared with that of a full-genome virus vaccine developed by reverse genetics. Therefore, in this study, we evaluated the protective efficacy of genotype VII matched chimeric vaccines by generating three recombinant viruses based on avirulent LaSota (genotype II) strain in which the open reading frames (ORFs) encoding the F and HN proteins were replaced, individually or together, with those of the circulating and highly virulent Indonesian NDV strain Ban/010. The cleavage site of the Ban/010 F protein was mutated to the avirulent motif found in strain LaSota. In vitro growth characteristics and a pathogenicity test indicated that all three chimeric viruses retained the highly attenuated phenotype of the parental viruses. Immunization of chickens with chimeric and full-length genome VII vaccines followed by challenge with virulent Ban/010 or Texas GB (genotype II) virus demonstrated protection against clinical disease and death. However, only those chickens immunized with chimeric rLaSota expressing the F or F plus HN proteins of the Indonesian strain were efficiently protected against shedding of Ban/010 virus. Our findings showed that genotype-matched vaccines can provide protection to chickens by efficiently preventing spread of virus, primarily due to the F protein.  相似文献   

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