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91.
This study was aimed to isolate a mutant strain of porcine epidemic diarrhea virus and prepare a PEDV inactivated vaccine with high valence by suspension culture process for immunizing against PEDV effectively in China.200 small intestines and theirs contents of diarrhea piglets died of diarrhea,collected from many large-scale pig farms in China,were detected by RT-PCR and sequenced,a mutant strain of porcine epidemic diarrhea virus was selected and put on the suspension-cultured Vero cells in a 2 L reactor for virus isolation and continuous cell culture,the harvested virus suspension,which was identified and determined TCID50,was inactivated by formaldehyde and mixed with aluminum hydroxide gel adjuvant to prepare PEDV inactivated vaccine.After its physical behavior,stability viscosity,sterility test were checked out,the safety and immune efficacy were studied by immunizing the pregnant pigs and theirs piglets.The results were as follows:86 samples were detected positive in 200 samples,cytopathy occurred after the mutant strain samples screened were passaged to 5th generation,the virus suspension was harvested in 10th generation and identified as a mutant strain of PEDV,named PEDV-GF10 strain.The virus titer of harvested virus suspension was measured up to 1×108.0 TCID50/mL after concentrated.After the vaccine was checked out,the sows,40 and 25 days before delivery in experimental groups,were injected into Xuehai acupoint with 4 mL vaccine and the pigs in blank group were free of immunifications.The results showed that there were no obvious differences in the production status of the sows in experimental groups and blank group and the temperature of theirs 3-day-old healthy piglets injected different doses of vaccine,and the vaccine was safe to the sows and piglets.Forty 3-day-old piglets producted by pregnant sows in experimental groups and blank group were randomly selected and taken 4 mL 1×108.0TCID50/mL F10 virus culture.The PEDV morbidity of piglets in blank group was 100% after injection and the antibodies were negative;10% piglets in blank group had mild diarrhea symptoms,the protection rate was up to 90%,antibody of passive immunity in piglets lasted for more than 35 days.Virus titer of mutant strain of PEDV-GF10 improved a lot by suspension cell culture,the PEDV-GF10 inactivated vaccine was safe,and could effectively prevent and control the variation strain of PEDV in China.  相似文献   
92.
This study was designed to evaluate the synergistic effect of VA5 immunopotentiator on pigeon ND4416 inactivated vaccine.160 healthy pigeons were randomly divided into four groups,including ND4416 strain inactivated vaccine group (NDV group),ND4416 strain inactivated vaccine and immunopotentiator (VA5) mixed group (NDV+VA5 group),La Sota inactivated vaccine group (La Sota group) and normal saline as the control group (C group),to assess their vaccine efficacy against virulent pigeon NDV by serological analysis and animal testing.Pigeons sera were collected at different time points after immunization and measured the HI antibody titer of each group.The results showed that VA5 immunopotentiator significantly improved the serum antibody level of pigeons immunized with pigeon Newcastle disease inactivated vaccine (P<0.05).In addition,comparative test of spleen lymphocyte transformation was conducted at various time points after immunization.The results indicated that VA5 effectively stimulated the lymphocyte transformation of immune pigeon.Pigeons in each groups were challenged with ND4416 strain at the 30th,90th and 180th d after immunization.The results presented that the NDV+VA5 group had 100% protection rate and higher than La Sota group.The duration of immunization test showed that the antibody titer of NDV+VA5 group reached peak 11.20log2 at the 21st d,remained 7.50log2 at 180th d,and the protection rate remained 100% at 180th d.It indicated that VA5 immunopotentiator sustained the immune duration of pigeon NDV vaccine up to 180 d.Moreover,the in vitro detoxification test results suggested that VA5 immunopotentiator reduced the in vitro detoxification cycle of pigeons after challenge.Overall,this study suggested VA5 immunopotentiator could significantly improve the immune efficacy of pigeon Newcastle disease inactivated vaccine,which provided a basis for further enhancing the efficacy of Newcastle disease vaccine,as well increased experimental data for the application of immunopotentiators.  相似文献   
93.
禽流感(AI)是目前危害世界和我国养禽业最重要疾病之一,并有重要的公共卫生意义,曾给世界各国养禽业生产造成巨大的经济损失,不仅可以造成多种家禽的感染和死亡,还可以直接引起人的感染发病,并致人死亡,是重要的人畜共患病,给人民身体健康带来极大隐患。该病被世界动物卫生组织(OIE)列为A类动物传染病,因此预防禽流感的发生是一个值得十分重视的问题。禽流感的防制,必须坚决贯彻以预防为主的防制策略,推进合理的疫苗免疫计划和实施对禽类的强制免疫。为达到有效的预防效果,为了解二种重组禽流感病毒灭活疫苗(H5N1亚型,Re-1株)免疫效果和…  相似文献   
94.
目前,控制口蹄疫均采用灭活疫苗(killed vaccine)进行免疫。但是,在对猪、牛和羊进行口蹄疫疫苗接种的过程中,经常会出现一些过敏反应。严重的可引起家畜死亡。近年来,笔者针对口蹄疫疫苗过敏反应的临床表现、机理、原因、预防措施进行了调查分析和总结,现浅谈如下。[第一段]  相似文献   
95.
应用H5N2和H5N12种类型禽流感油乳灭活疫苗分别免疫鹅群,观察比较了二者对H5N1型高致病性禽流感病毒的攻毒保护效力。结果表明,在同等剂量免疫条件下,从发病率、死亡率和泄殖腔排毒规律3项指标综合评价来看,H5N1灭活苗水禽免疫组对高致病性禽流感H5N1流行株攻毒的保护效率较H5N2灭活苗理想,且水禽禽流感母源抗体对灭活苗免疫具有一定的干扰作用。  相似文献   
96.
禽流感疫苗HI抗体的免疫力监测   总被引:4,自引:0,他引:4  
禽流感是由A型流感病毒引起的严重影响养禽业生产的烈性病毒性传染病,感染后表现为从轻度的上呼吸道症状、产蛋量下降到全身出血性、高致死率等症状,对AI目前尚无确实有效的药物进行治疗,而AI灭活疫苗对同亚型毒株免疫效果确实,对控制和预防禽流感的暴发有较好的应用前景。  相似文献   
97.
用本实验室分离鉴定的致病性牦牛大肠埃希氏菌,按常规方法制备了4批氢氧化铝胶灭活疫苗。对牦牛大肠埃希氏菌的菌液培养、纯粹检验、活菌计数、灭活等进行了探索,并对用该菌研制成的疫苗进行了常规检验。结果4批灭活疫苗经无菌检验为阴性;经物理性状检验为:静置后上层是淡黄色的澄明液体,下层为灰白色沉淀,振荡后呈均匀混浊液;经牦牛安全检验结果为安全;经牦牛效力试验有效。牦牛大肠埃希氏菌病灭活疫苗为免疫预防该病打下了良好的基础。  相似文献   
98.
为了探讨鸵鸟对H5亚型禽流感灭活疫苗的免疫原性,做好鸵鸟禽流感的防控工作,采用哈尔滨兽医研究所研制的重组H5N1亚型禽流感疫苗,不同剂量免疫鸵鸟,用HI方法检测母源抗体和免疫抗体,根据母源抗体的衰减和免疫抗体的消长规律确定首免和再免日龄.结果表明,雏鸵鸟母源抗体能维持约3周~8周;8周龄时分组首免,C1组产生的免疫反应优于C2组,抗体峰值能达到7.50 log2,维持时间为9周左右;17周龄时C1组以3.0 mL/羽进行二免,2周后抗体达到7.40log2,3周~7周抗体维持在高峰值,最高达8.80log2,以后逐渐下降,有效抗体水平能维持至接种后25周左右.二免后25周进行三免,以5 mL/羽三免后2周抗体可达到9.80log2,2周~4周抗体维持在最高峰,以后缓慢下降,期间抗体时有起伏,但有效抗体水平约可维持1年时间.三免后45周内抗体水平合格率均在70%以上.根据抗体消长规律,初步推荐了鸵鸟的免疫程序.  相似文献   
99.
牲畜口蹄疫疫苗研究进展及其应用   总被引:1,自引:0,他引:1  
口蹄疫(Foot and Mouth Disease,FMD)是由口蹄疫病毒(FMDV)引起的偶蹄动物急性、烈性、接触性传染病,主要危害牛、猪、羊等,发病率极高,传播速度极快,尤其在猪群中能引起大范围流行,造成严重的经济损失.  相似文献   
100.
在基层工作多年发现猪口蹄疫疫苗免疫副反应时有发生,猪注射O型口蹄疫灭活疫苗后,猪的免疫应激反应普遍且比较强烈,严重的导致猪只死亡。对大才乡19个行政村的秋季防疫笔者进行了同步调查,总结如下。  相似文献   
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