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1.
Porcine reproductive and respiratory syndrome (PRRS) virus (PRRSV) impairs local pulmonary immune responses by damaging the mucociliary transport system, impairing the function of porcine alveolar macrophages and inducing apoptosis of immune cells. An imbalance between pro- and anti-inflammatory cytokines, including tumour necrosis factor-α and interleukin-10, in PRRS may impair the immune response of the lung. Pulmonary macrophage subpopulations have a range of susceptibilities to different PRRSV strains and different capacities to express cytokines. Infection with PRRSV decreases the bactericidal activity of macrophages, which increases susceptibility to secondary bacterial infections. PRRSV infection is associated with an increase in concentrations of haptoglobin, which may interact with the virus receptor (CD163) and induce the synthesis of anti-inflammatory mediators. The balance between pro- and anti-inflammatory cytokines modulates the expression of CD163, which may affect the pathogenicity and replication of the virus in different tissues. With the emergence of highly pathogenic PRRSV, there is a need for more information on the immunopathogenesis of different strains of PRRS, particularly to develop more effective vaccines.  相似文献   

2.
Vaccination is a useful option to control infection with porcine reproductive and respiratory syndrome virus (PRRSV), and several modified live-PRRSV vaccines have been developed. These vaccines have shown some efficacy in reducing the incidence and severity of clinical disease as well as the duration of viremia and virus shedding but have failed to provide sterilizing immunity. The efficacy of modified live-virus (MLV) vaccines is greater against a homologous strain compared with heterologous PRRSV strains. The objective of this study was to evaluate the efficacy of Fostera PRRS MLV vaccine in protecting against challenge with a heterologous field strain widely circulating in the swine herds of eastern Canada. Forty-six piglets were divided into 4 groups: nonvaccinated-nonchallenged; nonvaccinated-challenged; vaccinated-challenged; and vaccinated-nonchallenged. The animals were vaccinated at 23 d of age with Fostera PRRS and challenged 23 d later with a heterologous field strain of PRRSV (FMV12-1425619). Overall, the vaccine showed some beneficial effects in the challenged animals by reducing the severity of clinical signs and the viral load. A significant difference between nonvaccinated and vaccinated animals was detected for some parameters starting 11 to 13 d after challenge, which suggested that the cell-mediated immune response or other delayed responses could be more important than pre-existing PRRSV antibodies in vaccinated animals within the context of protection against heterologous strains.  相似文献   

3.
The objectives of this study was to investigate the role of DNA vaccines in the generation of an immune response and that elicited against individually encoded proteins of PRRSV. The genomic regions encoding ORF s 4, 5, 6 and 7 of the PRRS virus vaccine strain were cloned into the mammalian expression vector pc DNA 3.1 (+). Inoculations with the recombinant plasmids resulted in detection of PRRS virus-specific antibodies in 71 per cent of the immunized animals by ELISA, virus neutralization and/or Western blotting assays. In addition, cellular immune responses were detected in 86 per cent of the immunized pigs by interferon gamma assay and/or proliferation assay. Pigs in the control group had no detectable immune response to PRRS virus. The results obtained demonstrated that DNA immunization against PRRS virus results in the production of both humoral and cell mediated immune responses in pigs. The results also indicate that neutralization epitopes for PRRS virus are present on the viral envelope glycoproteins encoded by ORF 4 and ORF 5.  相似文献   

4.
猪繁殖与呼吸综合征(porcine reproductive and respiratory syndrome,PRRS)是猪的一种严重的传染性疾病,其长年流行给养猪业造成重大经济损失。接种弱毒疫苗或灭活疫苗是控制PRRS的首选策略,但在现有技术水平下,由于疫苗毒株存在免疫抑制等因素,预防效果不理想。因而,深入研究PRRSV感染和/或接种疫苗后的免疫学应答机理是研究开发新型高效疫苗的必然基础。作者回顾性地综述感染PRRSV或接种PRRSV疫苗后宿主产生细胞因子的动态规律,探讨猪体防御PRRS的机制及开发新型高效疫苗的新思路。  相似文献   

5.
猪繁殖与呼吸综合征病毒对动物机体免疫机制的挑战   总被引:2,自引:0,他引:2  
猪繁殖与呼吸综合征(PRRS)是猪繁殖与呼吸综合征病毒(PRRSV)引起的一种病毒性传染病,对养猪业造成严重威胁.对PRRSV的研究是兽医免疫学中最具挑战性的课题之一,至今人们对PRRSV所引起的免疫应答过程仍不十分了解.通过对PRRS的研究中获得的知识及存在问题的回顾,会对今后研究PRRS疫苗起到一定的推动作用.论文对PRRSV的获得性免疫反应、PRRSV的免疫调节及免疫逃逸、PRRSV的遗传多样性及其对疫苗开发的影响、现有疫苗防控措施、PRRSV疫苗的发展前景等方面的研究进展做了简要概述.  相似文献   

6.
The purpose of this study was to evaluate the time-course of the immune response to a field Porcine Respiratory and Reproductive Syndrome virus (PRRSV) strain in PRRS-naïve, untreated pigs, as well as in four groups of age and breed-matched pigs injected with a live attenuated PRRS vaccine, its adjuvant, an inactivated PRRS vaccine and an irrelevant, inactivated Porcine Circovirus type 2 (PCV2) vaccine, respectively. PRRSV infection was confirmed in all groups by PCR and antibody assays. The antibody response measured by ELISA took place earlier in pigs injected with the live attenuated vaccine, which also developed a much stronger serum-neutralizing antibody response to the vaccine strain. Yet, no clear protection was evidenced in terms of viremia against the field virus strain, which showed 11.1% nucleotide divergence in ORF7 from the vaccine strain. In vitro, the interferon (IFN)-γ response to PRRSV was almost absent on PVD 60 in all groups under study, whereas the prevalence of interleukin (IL)-10 responses to PRRSV was fairly high in PCV2-vaccinated animals, only. Results indicate that distinct patterns of immune response to a field PRRSV strain can be recognized in PRRS-vaccinated and naïve pigs, which probably underlies fundamental differences in the development and differentiation of PRRSV-specific immune effector cells.  相似文献   

7.
猪繁殖与呼吸综合征病毒感染抑制猪瘟疫苗的免疫应答   总被引:23,自引:3,他引:23  
对20日龄SPF猪和20日龄猪繁殖与呼吸综合征(PRRS)血清阳性猪,人工感染猪繁殖与呼吸综合征病毒(PRRSV)北京分离株(BJ-4)后48h接种猪瘟疫苗,利用ELISA方法检测仔猪针对PRRSV和猪瘟疫苗的体液免疫,利用MTS法检测仔猪外周血单核细胞对有丝分裂原ConA的刺激反应。结果表明,不论是SPF仔猪还是带有PRRSV抗体的仔猪,在鼻内接种PRRSV后48h接种猪瘟疫苗,其对猪瘟疫苗的抗体反应显著低于对照组,对有丝分裂原ConA的刺激反应也下降。由此说明,PRRSV感染使仔猪对猪瘟疫苗的免疫应答受到抑制。  相似文献   

8.
Porcine reproductive and respiratory syndrome (PRRS) is a chronic viral disease of pigs caused by PRRS virus (PRRSV). The PRRSV VR2332 is the prototype North American parental strain commonly used in the preparation of vaccines. Goal of this study was to understand missing information on VR2332 induced immune modulation at the lungs and lymphoid tissues, the sites of PRRSV replication. Pigs were infected intranasally and samples collected at post-infection day (PID) 15, 30, and 60. Microscopically, lungs had moderate interstitial pneumonia, and the virus was detected in all the tested tissues. Peak antibody response and the cytokine IFN-γ secretion were detected at PID 30, with increased TGF-β until PID 60. Population of CD8+, CD4+, and CD4+CD8+T cells, Natural killer (NK) cells, and γδ T cells in the lungs and lymphoid tissues were significantly modulated favoring PRRSV persistence. The NK cell-mediated cytotoxicity was significantly reduced in infected pigs. In addition, increased population of immunosuppressive T-regulatory cells (Tregs) and associated cytokines were also observed in VR2332 strain infected pigs.  相似文献   

9.
Porcine reproductive and respiratory syndrome virus (PRRSV) continues to be a major problem to the pork industry worldwide. Increasing data indicate that PRRSV strains differ in virulence in infected pigs and are biologically, antigenically, and genetically heterogeneous. It is evident that the current vaccines, based on a single PRRSV strain, are not effective in protecting against infections with the genetically diverse field strains of PRRSV. The recent outbreaks of atypical or acute PRRS in vaccinated pigs have raised a serious concern about the efficacy of the current vaccines and provided the impetus for developing more effective vaccines. Special attention in this review is given to published work on antigenic, pathogenic and genetic variations of PRRSV and its potential implications for vaccine efficacy and development. Although there are ample data documenting the heterogeneous nature of PRRSV strains, information regarding how the heterogeneity is generated and what clinical impact it may have is very scarce. The observed heterogeneity will likely pose a major obstacle for effective prevention and control of PRRS. There remains an urgent need for fundamental research on this virus to understand the basic biology and the mechanism of heterogeneity and pathogenesis of PRRSV.  相似文献   

10.
猪繁殖与呼吸综合征(porcine reproductive and respiratory syndrome,PRRS)是一种主要表现为母猪繁殖障碍与仔猪呼吸道症状的传染病。近年来,猪繁殖与呼吸综合征病毒(porcine reproductive and respiratory syndrome virus,PRRSV)变异株不断出现,免疫逃避及持续性感染使得猪群发病率或复发率均相继增高,给养猪业带来了巨大的损失。目前所采用的胃肠道途径接种活疫苗或灭活疫苗的方法无法诱导对猪群的全面保护作用。为减少养猪业的经济损失,亟需研制新防制方法和新疫苗接种途径。作者主要从黏膜免疫的免疫部位、呼吸道保护性黏膜免疫反应诱导、黏膜免疫途径、佐剂的选择及病毒的免疫抑制反应等方面简要论述了有效防制PRRSV的黏膜免疫方法的研究进展,为进一步了解黏膜免疫抵御PRRSV突变株感染及黏膜疫苗研制等方面提供有用的信息。  相似文献   

11.
猪繁殖与呼吸综合征(PRRS)严重危害养猪业的健康发展,每年给养猪业带来巨大的经济损失。猪繁殖与呼吸综合征病毒(PRRSV)是PRRS的致病因子,其可引起孕猪在妊娠后期出现早产、流产或死产等繁殖障碍,并可在新生仔猪引起呼吸系统症状。目前虽然已有商业化的灭活疫苗及减毒活疫苗,但它们的保护效果仍不理想。因此深入研究PRRSV的基因结构、蛋白功能、病毒的生物学性状及致病机制将有助于研发安全、有效的PRRS疫苗。作者对PRRSV及其疫苗的研究进展作一综述。  相似文献   

12.
猪繁殖与呼吸综合征疫苗研究现状   总被引:2,自引:0,他引:2  
猪繁殖与呼吸综合征(PRRS)是一种对养猪业危害严重的传染病,猪繁殖与呼吸综合征病毒(PRRSV)为有囊膜的单股正链RNA病毒,且具有高度的变异性,有美洲型和欧洲型两个血清型。猪肺泡巨噬细胞(PAM)、恒河猴胎肾细胞系MA-104及源于MA-104的传代细胞系(如Marc-145、CL-2621、HS.2H和CRL-1171)对PRRSV敏感。预防该病的常规疫苗有灭活疫苗和弱毒疫苗两种。通常以特定种毒在适当细胞系中培养增殖,经灭活或致弱,加入佐剂制得相应疫苗。灭活疫苗交叉保护性差,但使用安全;弱毒疫苗抗体产生快、持续时间长、保护力强,但源毒能在猪群中持续存在而有安全隐患。  相似文献   

13.
To develop a new type vaccine for porcine reproductive and respiratory syndrome (PRRS) prevention by using canine adenovirus 2(CAV-2) as vector, the Glycoprotein 5(GP5) gene from PRRSV strain JL was amplified by RT-PCR, and the expression cassette of GP5 was constructed using the human cytomegalovirus (HCMV) promoter and the simian virus 40 (SV40) early mRNA polyadenylation signal. The expression cassette of Glycoprotein 5 was cloned into the CAV-2 genome in which E3 region had been partly deleted, and the recombinant virus (CAV-2-GP5) was obtained by transfecting the recombinant CAV-2-GP5 genome into MDCK cells together with Lipofectamine™ 2000. Immunization trial in pigs with the recombinant virus CAV-2-GP5 showed that CAV-2-GP5 could stimulate a specific immune response to PRRSV. Immune response to the GP5 and PRRSV was confirmed by ELISA, neutralization test and lymphocyte proliferative responses, and western blotting confirmed expression of GP5 by the vector in cells. These results indicated that CAV-2 may serve as a vector for development of PRRSV vaccine in pigs, and the CAV-2-GP5 might be a candidate vaccine to be tested for preventing PRRSV infection.  相似文献   

14.
为研制用于治疗和预防猪繁殖与呼吸综合征的高免血清,选取健康育肥猪作为免疫接种对象,用猪繁殖与呼吸综合征灭活苗和弱毒苗作基础免疫和强化免疫,通过优化免疫程序,制备出抗猪繁殖与呼吸综合征高免血清,并进行了临床治疗试验,结果总有效率为86.67%。表明采用这种方法制备猪繁殖与呼吸综合征高免血清是安全有效、切实可行的。  相似文献   

15.
疫苗免疫是预防和控制传染病的主要措施,但对于猪繁殖与呼吸综合征,疫苗免疫存在免疫效率低与安全性差的问题,效果并不理想。因此,如何在安全剂量下提高动物机体的免疫力,成为疫苗研究的热点之一。试验证明细胞因子、化学试剂和微生物产物等几种免疫佐剂可以增强猪繁殖与呼吸综合征疫苗的免疫效果。在研究的9个疫苗佐剂中,IL-2、IL-12、IFN-α、poly IC和poly ICLC、CpG ODN等能增强猪繁殖与呼吸综合征疫苗的细胞免疫效应;CpG ODN和霍乱毒素能显著提高猪繁殖与呼吸综合征疫苗的抗体产生水平;IL-2和CpG ODN在临床实验中能增强疫苗对实验动物的保护,是最具潜力的免疫佐剂。  相似文献   

16.
为建立快速、敏感、特异的评价猪繁殖与呼吸综合征(PRRS)活疫苗中病毒含量的方法,根据GenBank中登录的猪繁殖与呼吸综合征病毒(PRRSV)基因序列设计合成了标准品引物和定量引物,RT-PCR扩增PRRSV基因片段并连接到pMD19-T载体上,构建标准品质粒pMD19-T-PRRSV。采用SYBR GreenⅠ染料法进行荧光定量PCR检测,分析标准曲线并进行特异性、稳定性、重复性试验。结果显示,该方法检测病毒含量为7.43×100~7.43×108拷贝/μL,标准品各稀释度质粒拷贝数与Ct值之间相关系数高(R2=0.9989),引物特异性强。应用该方法对6个厂家PRRS活疫苗中的病毒含量进行测定,发现不同厂家生产的疫苗中病毒含量差异较大,最高差异可达47.9倍。本试验建立的检测PRRS活疫苗病毒含量的荧光定量PCR方法可用于疫苗生产过程中及免疫动物前疫苗质量的评价。  相似文献   

17.
The purpose of this study was to determine whether intranasal/oral administration of probiotics can assist vaccination efficacy against an important swine pathogen, porcine reproductive and respiratory syndrome (PRRS) virus (PRRSV). A controlled challenge trial was performed employing: (a) pigs vaccinated against PRRS and treated with a Lactobacillus casei, (b) pigs vaccinated against PRRS only, (c) pigs treated with L. casei only, and (d) pigs neither vaccinated against PRRS nor treated with L. casei. All pigs were challenged intranasally with a wild PRRSV strain. There was no difference in clinical signs or rectal temperature among the four groups. However, pigs that received L. casei gained significantly more weight than pigs that did not. Vaccinated pigs did not gain more weight than nonvaccinated pigs. Vaccinated groups had significantly fewer viraemic pigs on days post-challenge 4, 11 and 17 than nonvaccinated groups of pigs. There was no effect of probiotic on prevalence or duration of viraemia. Among viraemic pigs, there was no significant difference in mean log base(10) titer of PRRS virus among groups. These results suggest that orally administered L. casei does not affect immune response in such a way as to affect PRRS viraemia or nasal shedding. However, it still appears to provide significant benefit when administered during vaccination as indicated by the higher bodyweight gain following PRRS virus infection.  相似文献   

18.
19.
Porcine reproductive and respiratory syndrome (PRRS) is characterized by a delayed and defective adaptive immune response. The viral nonstructural protein 1 (NSP1) of the PRRS virus (PRRSV) is able to suppress the type I interferon (IFN) response in vitro. In this study, recombinant adenoviruses (rAds) expressing NSP1 (rAd-NSP1), glycoprotein 5 (GP5) (rAd-GP5), and the NSP1-GP5 fusion protein (rAd-NSP1-GP5) were constructed, and the effect of NSP1 on immune responses was investigated in pigs. Pigs inoculated with rAd-NSP1 or rAd-NSP1-GP5 had significantly lower levels of IFN-γ and higher levels of the immunosuppressive cytokine IL-10 than pigs inoculated with rAd-GP5, wild-type adenovirus, or cell culture medium alone. The antibody response to vaccination against classic swine fever virus (CSFV) was significantly decreased by inoculation of NSP1 7 d after CSFV vaccination in pigs. Thus, NSP1-mediated immune suppression may play an important role in PRRSV pathogenesis.  相似文献   

20.
怀孕后期感染PRRS病毒母猪所产新生仔猪的免疫反应   总被引:5,自引:0,他引:5  
将PRRS病毒BJ-4株感染怀孕后期(约90天)的抗体阴性和阳性母猪,待自然分娩后,观察新生仔猪的免疫应答。结果显示,接种PRRS病毒BJ-4的母猪没有表现出明显的临床症状,没有出现流产死产。新生仔猪浦被子前血清中PRRS病毒核酸TR-PCR检测和ELISA抗体阴性,哺乳后特异性抗体出现,5-6周母源抗体逐渐下降;20日龄猪瘟疫苗免疫后疫苗抗体维持时间短,仔猪在40日龄后进入野毒感染的危险期。RT-nested PCR检测血清中PRRS病毒核酸和易感仔猪病毒特异性抗体监测的结果提示仔猪群内可能存在水平传播。流式细胞术检测外周血淋巴细胞亚群发现CD3^ 细胞减少,CD4^ 细胞显著下降,CD8^ ,CD4^ CD8^ 和SLA-DR^ 表达细胞升高。以上结果表明在感染后病毒能够长期持续性存在,猪场内新生仔猪母源抗体逐渐下降后,通过水平传播受到感染,感染后免疫应答受到不利影响。  相似文献   

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