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1.
The present study was designed to investigate the potential application of native (N) and recombinant (truncated modified [tmFliC] and full-length [flFliC]) flagellin proteins along with inactivated Newcastle disease virus (NDV). Fifty six SPF chickens were immunized twice with PBS (control), inactivated NDV (Ag), inactivated NDV/flFliC (AgF), inactivated NDV/tmFliC (AgT), inactivated NDV/N (AgN), commercial vaccine containing Montanide (Vac) and Vac/N (VacN), with a two-week interval. Blood was collected weekly and spleens were harvested after chickens were sacrificed. Interleukin-6 (IL-6) and tumor necrotic factor-α (TNF-α) gene expression in peripheral blood mononuclear cells were analyzed by Real-Time PCR. Antibody response was assessed by haemagglutination inhibition (HI). Cellular activity was quantified by MTT assay. Results showed that the most IL-6 and TNF-α gene expression was observed in AgF group (P < 0.01). The lowest gene expression among vaccinated groups was observed in Ag group for IL-6 and Ag and Vac group for TNF-α. The highest HI titer was observed in Vac, VacN, AgF and AgT groups. The AgF group showed the highest cellular activity (P < 0.01). In conclusion, flagellin-adjuvanted groups showed a pro-inflammatory effect and acted similarly to or better than the Vac group. Hence, flagellin can be proposed as a potential adjuvant for ND vaccine.  相似文献   
2.
张文通  魏凤  李峰  沈志强 《猪业科学》2020,37(7):100-101
文章介绍了5种商品化猪丹毒疫苗的种类、毒株组成、抗原含量及相应免疫程序,为了解各种类型的猪丹毒商品化疫苗提供参考。  相似文献   
3.
Goatpox (GTP), sheeppox (SPP) and lumpy skin disease (LSD) are three severe diseases of goat, sheep and cattle. Their typical clinical symptoms are characterized by vesicles, papules, nodules, pustules and scabs on animal skins. The GTP, SPP and LSD are caused by goatpox virus (GTPV), sheeppox virus (SPPV) and lumpy skin disease virus (LSDV), respectively, all of which belong to the genus Capripoxvirus in the family Poxviridae. Several capripoxvirus (CaPV) isolates have been virulently attenuated through serial passaging in vitro for production of live vaccines. CaPV-based vector systems have been broadly used to construct recombinant vaccines for delivering foreign antigens, many of which have been demonstrated to induce effective immune protections. Homologous recombination is the most commonly used method for constructing recombinant CaPVs. Here, we described a methodology for generation of recombinant CaPVs by the homologous recombination, and further reviewed CaPV-vectored vaccines for delivering foreign antigens.  相似文献   
4.
伪狂犬病毒(pseudorabies virus,PRV)感染能够引起猪的大面积死亡,给养猪业造成巨大损失,减毒活疫苗和灭活疫苗被广泛使用于猪的伪狂犬病防治。PRV的囊膜糖蛋白gC基因(gC)是病毒增殖所非必需的基因,但是缺失gC基因的PRV不能有效地黏附靶细胞表面。通过综述PRV的囊膜糖蛋白gC的结构和功能,以及gC蛋白在疫苗研制中的应用,为伪狂犬病的防控提供依据。  相似文献   
5.
Edwardsiella ictaluri infects several fish species and protection of the all the susceptible fish hosts from the pathogen using a monovalent vaccine is impossible because the species is composed of host-based genotypes that are genetic, serological and antigenic heterogenous. Here, immunoinformatic approach was employed to design a cross-immunogenic chimeric EiCh protein containing multi-epitopes. The chimeric EiCh protein is composed of 11 B-cell epitopes and 7 major histocompatibility complex class II epitopes identified from E. ictaluri immunogenic proteins previously reported. The 49.32 kDa recombinant EiCh protein was expressed in vitro in Escherichia coli BL-21 (DE3) after which inclusion bodies were successfully solubilized and refolded. Ab initio protein modelling revealed secondary and tertiary structures. Secondary structure was confirmed by circular dichroism spectroscopy. Antigenicity of the chimeric EiCh protein was exhibited by strong reactivity with serum from striped catfish and Nile tilapia experimentally infected with E. ictaluri. Furthermore, immunogenicity of the chimeric EiCh protein was investigated in vivo in Nile tilapia juveniles and it was found that the protein could strongly induce production of specific antibodies conferring agglutination activity and partially protected Nile tilapia juveniles with a relative survival percentage (RPS) of 42%. This study explored immunoinformatics as reverse vaccinology approach in vaccine design for aquaculture to manage E. ictaluri infections.  相似文献   
6.
旨在对制备的甘露糖修饰的壳聚糖聚乳酸-羟基乙酸共聚物[poly (D,L-lactide-co-glycolide),PLGA]纳米微球作为口蹄疫病毒(foot-and-mouth disease virus,FMDV)核酸疫苗递送载体进行评价。采用西佛碱反应和元素分析制备具有一定取代度的甘露糖修饰的壳聚糖衍生物(mannose modified chitosan,MCS),然后,经双重乳化挥发法制备得到甘露糖修饰的壳聚糖PLGA纳米微球(MCS-PLGA-NPs)。采用纳米粒径仪检测MCS-PLGA-NPs粒径分布和表面电势(zeta)、扫描电镜考察其形态、琼脂糖凝胶电泳观察其对质粒的吸附和吸附质粒后抵抗核酸酶降解能力、CCK-8法检测MCS-PLGA-NPs的细胞毒性、激光共聚焦观察巨噬细胞对MCS-PLGA-NPs-质粒DNA复合物的摄取、荧光显微镜和Western blot验证MCS-PLGA-NPs加载质粒DNA在细胞中的表达。元素分析结果表明,成功制备了取代度为5%~10%的MCS。纳米粒径测定和扫描电镜结果表明,MCS-PLGA-NPs的zeta为正值、粒径分布均匀且形态规则呈球形。琼脂糖凝胶电泳结果显示,MCS-PLGA-NPs吸附质粒的能力随着其质量的增加而增强并且可以在一定程度上抵抗核酸酶降解质粒DNA。在细胞毒性试验中,不同浓度的MCS-PLGA-NPs与RAW264.7细胞共孵育24 h后,细胞存活率仍在85%以上。在细胞摄取试验中,用激光共聚焦显微镜可以明显观察到质粒DNA结合到纳米微球表面被RAW264.7细胞摄取。荧光显微镜和Western blot试验证明MCS-PLGA-NPs加载质粒DNA可以在细胞中进行表达。综上表明,本研究成功制备了MCS以及具有递送核酸疫苗能力的MCS-PLGA-NPs,为FMDV核酸疫苗的递送研究提供了新的方向和见解,也为该递送载体携带特定抗原靶向抗原递呈细胞表面甘露糖受体以及应用于动物免疫的研究奠定基础。  相似文献   
7.
为了筛选生长快、毒力强、免疫原性好、副反应小的牛源荚膜A型多杀性巴氏杆菌(Pasteurella multocida,Pm)灭活疫苗菌株,本试验选取6株来自不同地区致犊牛肺炎死亡的牛源荚膜A型多杀性巴氏杆菌分离株,测定了培养基生长曲线、小鼠毒力、菌体脂多糖(LPS)含量及各菌株灭活菌苗免疫小鼠和家兔后的抗体效价,并进行了攻毒保护试验。结果显示,分离株Pm2、Pm3、Pm5生长速度较快、毒力较强、LPS含量较多,均含有与毒力和免疫相关的ptfA和fimA基因;免疫小鼠及家兔未发现明显不良反应,在二免后14 d血清抗体达1:64~1:128,强毒攻毒后全部存活,而PBS对照组全部死亡。本试验结果表明,Pm2、Pm3、Pm5均可作为多杀性巴氏杆菌灭活菌苗的候选菌株,其中Pm3作为首选株。  相似文献   
8.
Wild sablefish, Anoplopoma fimbria, are a valuable commercial species whose populations are declining. Fortunately, sablefish are excellent species for commercial aquaculture. Sablefish raised under high‐density conditions in the marine environment require the use of efficacious vaccines to control disease. Sablefish impacted by disease in net pens may have poor flesh quality and high mortality during grow‐out. As a result, disease can cause financial hardship for sablefish aquaculture operators. The efficacy of a multivalent vaccine preparation for sablefish, administered either by intraperitoneal (i.p.) injection or by immersion, against atypical and typical Aeromonas salmonicida, the causative agents of atypical and typical furunculosis, respectively, was examined. A. salmonicida can affect sablefish at any age and size. Consequently, an efficacious vaccine that can be appropriately and optimally administered to all life stages is desirable. Sablefish vaccinated by immersion at ~1.5 or ~4.5 g with a whole‐cell multivalent vaccine were not protected against either typical or atypical A. salmonicida. Factors that may have contributed to the ineffectiveness of the immersion vaccine are discussed. By contrast, the relative per cent survival (RPS) or potency of the whole‐cell multivalent vaccine injected i.p. in juvenile sablefish at ~50 g against typical and atypical A. salmonicida was 94.3% and 81.7% respectively. The high RPS values indicated that the vaccine successfully initiated an immune response in sablefish upon a second encounter with the pathogen.  相似文献   
9.
试验旨在比较分析羊口疮病毒(orf virus,ORFV)VIL-10基因在疫苗株和野毒株之间的差异特征。参照GenBank中公布的ORFV NZ2株的VIL-10基因序列设计并合成1对特异性引物,分别以疫苗株和野毒株提取的基因组DNA为模板,采用PCR方法扩增ORFV的VIL-10基因全序列并进行测序,应用生物信息学相关软件分析基因的核苷酸、氨基酸变异情况及蛋白结构。结果显示,本试验测定的疫苗株和野毒株VIL-10基因核苷酸序列同源性为94.4%,差异主要是单个碱基的突变,其中疫苗株在132~134 bp核苷酸序列出现缺失;氨基酸序列同源性为92.5%,出现了15个氨基酸位点的突变,其中疫苗株第42位氨基酸天冬酰胺出现缺失;蛋白质在一级结构及理化性质、二级结构、三级结构、抗原表位参数及有无信号肽之间均存在一定程度的差异,而疫苗株和野毒株编码的蛋白质均无跨膜结构域。系统进化树分析结果表明,本试验测定的野毒株与疫苗株属于不同分支,遗传关系较远。研究结果提示,野毒株与疫苗株的VIL-10基因发生较明显的变异,这些变异可能与ORFV疫苗株的毒力致弱有关。  相似文献   
10.
1. The avian embryo is an excellent model for studying embryology and the production of pharmaceutical proteins in transgenic chickens. Furthermore, chicken stem cells have the potential for proliferation and differentiation and emerged as an attractive tool for various cell-based technologies.

2. The objective of these studies is the derivation and culture of these stem cells is the production of transgenic birds for recombinant biomaterials and vaccine manufacture, drug and cytotoxicity testing, as well as to gain insight into basic science, including cell tracking.

3. Despite similarities among the established chicken stem cell lines, fundamental differences have been reported between their culture conditions and applications. Recent conventional protocols used for expansion and culture of chicken stem cells mostly depend on feeder cells, serum-containing media and static culture.

4. Utilising chicken stem cells for generation of cell-based transgenic birds and a variety of vaccines requires large-scale cell production. However, scaling up the conventional adherent chicken stem cells is challenging and labour intensive. Development of a suspension cell culture process for chicken embryonic stem cells (cESCs), chicken primordial germ cells (PGCs) and chicken induced pluripotent stem cells (ciPSCs) will be an important advance for increasing the growth kinetics of these cells.

6. This review describes various approaches and suggestions to achieve optimal cell growth for defined chicken stem cells cultures and use in future manufacturing applications.  相似文献   

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