1.Nucleocapsid protein from porcine epidemic diarrhea virus isolates can antagonize interferon-λ production by blocking the nuclear factor-κB nuclear translocation.
Ying SHAN ; Zi-Qi LIU ; Guo-Wei LI ; Cong CHEN ; Hao LUO ; Ya-Jie LIU ; Xun-Hui ZHUO ; Xing-Fen SHI ; Wei-Huan FANG ; Xiao-Liang LI
Journal of Zhejiang University. Science. B 2018;19(7):570-580
Porcine epidemic diarrhea virus (PEDV) is a highly infectious pathogen that can cause severe diseases in pigs and result in enormous economic losses in the worldwide swine industry. Previous studies revealed that PEDV exhibits an obvious capacity for modulating interferon (IFN) signaling or expression. The newly discovered type III IFN, which plays a crucial role in antiviral immunity, has strong antiviral activity against PEDV proliferation in IPEC-J2 cells. In this study, we aimed to investigate the effect of PEDV nucleocapsid (N) protein on type III IFN-λ. We found that the N proteins of ten PEDV strains isolated between 2013 and 2017 from different local farms shared high nucleotide identities, while the N protein of the CV777 vaccine strain formed a monophyletic branch in the phylogenetic tree. The N protein of the epidemic strain could antagonize type III IFN, but not type I or type II IFN expression induced by polyinosinic-polycytidylic acid (poly(I:C)) in IPEC-J2 cells. Subsequently, we demonstrated that the inhibition of poly(I:C)-induced IFN-λ3 production by PEDV N protein was dependent on the blocking of nuclear factor-κB (NF-κB) nuclear translocation. These findings might help increase understanding of the pathogenesis of PEDV and its mechanisms for evading the host immune response.
Active Transport, Cell Nucleus
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Animals
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Coronavirus Infections
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immunology
;
veterinary
;
virology
;
Genes, Viral
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Host-Pathogen Interactions
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immunology
;
Interferons
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antagonists & inhibitors
;
biosynthesis
;
genetics
;
Interleukins
;
antagonists & inhibitors
;
biosynthesis
;
genetics
;
NF-kappa B
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metabolism
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Nucleocapsid Proteins
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genetics
;
immunology
;
physiology
;
Porcine epidemic diarrhea virus
;
genetics
;
pathogenicity
;
physiology
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Promoter Regions, Genetic
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Swine
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Swine Diseases
;
immunology
;
virology
2.Immune Response of Recombinant Pseudorabies Virus rPRV-VP2 Expressing VP2 Gene of Porcine Parvovirus in Mice.
Pengfei FU ; Xinlong PAN ; Qiao HAN ; Xingwu YANG ; Qianlei ZHU ; Xiaoqing GUO ; Yu ZHANG ; Hongying CHEN
Chinese Journal of Virology 2016;32(2):195-202
In order to develop a combined live vaccine that will be used to prevent against porcine parvovirus (PPV) and Pseudorabies virus (PRV) infection, the VP2 gene of PPV was inserted into the transfer vector plasmid pG to produce the recombinant plasmid pGVP2. The plasmid pGVP2 and the genome of PRV HB98 attenuated vaccine were transfected by using lipofectamine into swine testis cells for the homologous recombination. The recombinant virus rPRV-VP2 was purified by selection of green fluorescence plaques for five cycles. 6-week-old female Kunming mice were immunized intramuscularly with attenuated PRV parent HB98 strain, commercial inactivated vaccine against PPV, recombinant virus, DMEM culture solution. The injections were repeated with an equivalent dose after 2 weeks in all of the groups, and then challenged with the virulent PRV NY strain at 7 weeks after the first immunization. The recombinant virus rPRV-VP2 was successfully generated, and the recombinant virus could effectively elicite anti-PPV and PRV antibody and significant cellular immune response as indicated by anti-PPV ELISA and HI, PRV-neutralizing assay and flow cytometry. The challenge assay indicated that recombinant virus could protect the mice against the virulent PRV challenge. These results demonstrated that the recombinant virus can be a candidate recombinant vaccine strain for the prevention of PRV and PPV.
Animals
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Antibodies, Viral
;
immunology
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Antigens, Viral
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administration & dosage
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genetics
;
immunology
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Capsid Proteins
;
administration & dosage
;
genetics
;
immunology
;
Female
;
Gene Expression
;
Genetic Vectors
;
genetics
;
metabolism
;
Herpesvirus 1, Suid
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genetics
;
metabolism
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Mice
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Parvovirus, Porcine
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genetics
;
immunology
;
Swine
;
Swine Diseases
;
immunology
;
prevention & control
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virology
;
Viral Vaccines
;
administration & dosage
;
genetics
;
immunology
3.Assessing PCV2 antibodies in field pigs vaccinated with different porcine circovirus 2 vaccines using two commercial ELISA systems.
Min Kyoung SHIN ; Seung Hyun YOON ; Myung Hwui KIM ; Young Soo LYOO ; Seung Won SUH ; Han Sang YOO
Journal of Veterinary Science 2015;16(1):25-29
Porcine circovirus type 2 (PCV2) is the primary causative agent for post-weaning, multisystemic, wasting syndrome. Consequently, serologic detection of and vaccination against PCV2 are important for the swine industry. Among several serological tests, the enzyme-linked immunosorbent assay (ELISA) is commonly used to measure anti-PCV2 antibody levels. In the present study, we used two commercial ELISA systems to comparatively evaluate anti-PCV2 antibodies in field pigs treated with three different PCV2 vaccines. Among a total of 517 serum samples, the results of the two ELISAs were fully concordant for 365 positive and 42 negative samples, indicating 78.7% agreement. In addition, the Pearson coefficient (0.636) indicated a moderate correlation between data from the two ELISAs. Results from the farms with pigs vaccinated with the three different PCV2 vaccines demonstrated that most of the vaccinated animals underwent seroconversion. However, the increase and duration of antibody titers varied depending on the vaccine, the presence of maternal antibodies, and the vaccination program. PCV2 serologic status and anti-PCV2 antibody levels of herds from this study could be utilized to determine the best timing for vaccination and assessing vaccination compliance.
Aging
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Animals
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Antibodies, Viral/*blood
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Circovirus/*classification/immunology
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Enzyme-Linked Immunosorbent Assay/methods/*veterinary
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Female
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Porcine Postweaning Multisystemic Wasting Syndrome/blood/immunology/*prevention & control
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Republic of Korea/epidemiology
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Swine
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Swine Diseases/*prevention & control/virology
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Viral Vaccines/*immunology
4.Construction and identification of a recombinant PRRSV expressing ORF2 of porcine circovirus type 2.
Tingjie ZHANG ; Xing LIU ; Tao SUN ; Xuejiao ZHU ; Baochao FAN ; Juan BAI ; Ping JIANG
Chinese Journal of Virology 2015;31(1):65-73
Porcine reproductive and respiratory syndrome virus (PRRSV) and porcine circovirus type 2 (PCV2) are very two important pathogens that have coursed huge economic losses in swine production in worldwide. In this study,a vector pCMV-TJM containing the full-length cDNA clone of PRRSV attenuated strain TJM-F92 was firstly constructed by PCR method. Then a gene sequence containing Afl II/Mlu I e restriction enzyme sites and a transcription regulatory sequence for ORF6 (TRS6) was inserted be- tween ORF7 and 3'UTR, yielding a expression vector pCMV-TJM-TRS. Subsequently, a plasmid pCMV-TJM-Cap was constructed by cloning of PCV2 ORF2 gene into the unique sites Afl II /Mlu I of pCMV- TJM-TRS plasmid DNA. Then three recombinant PRRSV, rTJM, rTJM/TRS and rTJM/Cap, were rescued by transfection of pCMV-TJM, pCMV-TJM-TRS and pCMV-TJM-Cap into Marc-145 cells, respectively,and confirmed by the genome sequence, restriction enzyme digestion, Western Blot and IFA. They all had the molecular markers which was different from the parent virus. The growth characteristics of the rescued viruses were similar to that of parent virus. rTJM/Cap could also express efficiently PCV2 Cap protein in Marc-145 cells. At passage 8, it still had PCV2 ORF2 gene which examined by RT-PCR. It indicated that the full-length cDNA clone of PRRSV attenuated strain TJM-F92 and recombinant PRRSV rTJM/Cap expressing PCV2 Cap protein were successfully constructed. It made an important foundation for studying on the pathogenic mechanisms of PRRSV and PRRSV-PCV2 vaccine in the future.
Animals
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Capsid Proteins
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genetics
;
immunology
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Cell Line
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Circoviridae Infections
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veterinary
;
virology
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Circovirus
;
classification
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genetics
;
metabolism
;
Gene Expression
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Open Reading Frames
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Porcine Reproductive and Respiratory Syndrome
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virology
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Porcine respiratory and reproductive syndrome virus
;
genetics
;
metabolism
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Recombination, Genetic
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Swine
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Swine Diseases
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virology
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Viral Vaccines
;
genetics
;
immunology
5.Induction of antibody and interferon-gamma production in mice immunized with virus-like particles of swine hepatitis E virus.
Young Jo SONG ; Woo Jung PARK ; Seul Kee LEE ; Joong Bok LEE ; Seung Yong PARK ; Chang Seon SONG ; Sang Won LEE ; Kun Ho SEO ; Young Sun KANG ; Jae Young SONG ; In Soo CHOI
Journal of Veterinary Science 2014;15(4):575-578
Virus-like particles (VLPs) composed of the truncated capsid protein of swine hepatitis E virus (HEV) were developed and immune responses of mice immunized with the VLPs were evaluated. IgG titers specific for the capsid protein of swine HEV were significantly higher for all groups of mice immunized with the VLPs than those of the negative control mice. Splenocytes from mice immunized with the VLPs also produced significantly greater quantities of interferon (IFN)-gamma than interleukin (IL)-4 and IL-10. These newly developed swine HEV VLPs have the capacity to induce antigen-specific antibody and IFN-gamma production in immunized mice.
Animals
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Antibodies, Viral/blood
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Capsid Proteins/immunology
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Female
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Hepatitis E/immunology/*veterinary/virology
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Hepatitis E virus/*immunology
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Immunization/*veterinary
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Interferon-gamma/blood
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Mice
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Mice, Inbred BALB C
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Swine
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Swine Diseases/*immunology/virology
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Vaccines, Virus-Like Particle/immunology
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Viral Hepatitis Vaccines/*immunology
6.Protective efficacy of a high-growth reassortant swine H3N2 inactivated vaccine constructed by reverse genetic manipulation.
Feng WEN ; Ji Hong MA ; Hai YU ; Fu Ru YANG ; Meng HUANG ; Yan Jun ZHOU ; Ze Jun LI ; Guang Zhi TONG
Journal of Veterinary Science 2014;15(3):381-388
Novel reassortant H3N2 swine influenza viruses (SwIV) with the matrix gene from the 2009 H1N1 pandemic virus have been isolated in many countries as well as during outbreaks in multiple states in the United States, indicating that H3N2 SwIV might be a potential threat to public health. Since southern China is the world's largest producer of pigs, efficient vaccines should be developed to prevent pigs from acquiring H3N2 subtype SwIV infections, and thus limit the possibility of SwIV infection at agricultural fairs. In this study, a high-growth reassortant virus (GD/PR8) was generated by plasmid-based reverse genetics and tested as a candidate inactivated vaccine. The protective efficacy of this vaccine was evaluated in mice by challenging them with another H3N2 SwIV isolate [A/Swine/Heilongjiang/1/05 (H3N2) (HLJ/05)]. Prime and booster inoculation with GD/PR8 vaccine yielded high-titer serum hemagglutination inhibiting antibodies and IgG antibodies. Complete protection of mice against H3N2 SwIV was observed, with significantly reduced lung lesion and viral loads in vaccine-inoculated mice relative to mock-vaccinated controls. These results suggest that the GD/PR8 vaccine may serve as a promising candidate for rapid intervention of H3N2 SwIV outbreaks in China.
Animals
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Female
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Influenza A Virus, H3N2 Subtype/*genetics/immunology
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Influenza Vaccines/genetics/immunology/*therapeutic use
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Mice
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Mice, Inbred BALB C
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Orthomyxoviridae Infections/immunology/*prevention & control/virology
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Reassortant Viruses/genetics/immunology
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Reverse Genetics/methods/*veterinary
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Swine
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Swine Diseases/immunology/*prevention & control/virology
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Vaccines, Inactivated
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Virus Replication
7.Dietary germanium biotite supplementation enhances the induction of antibody responses to foot-and-mouth disease virus vaccine in pigs.
Jin A LEE ; Bock Gie JUNG ; Myunghwan JUNG ; Tae Hoon KIM ; Han Sang YOO ; Bong Joo LEE
Journal of Veterinary Science 2014;15(3):443-447
We evaluated the potential ability of germanium biotite (GB) to stimulate the production of antibodies specific for foot-and-mouth disease virus (FMDV). To this aim, we measured the total FMDV-specific antibody responses and IgM production after vaccination against FMD both experimentally and in the field. GB supplementation with FMDV vaccination stimulated the production of anti-FMDV antibodies, and effectively increased IFN-gamma and TNF-alpha levels. These results suggest that GB may be a novel alternative feed supplement that can serve as a boosting agent and an immunostimulator for increasing the efficacy of FMDV vaccination in pigs.
Adjuvants, Immunologic/therapeutic use
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Aluminum Silicates/*therapeutic use
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Animals
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Antibodies, Viral/*immunology
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Antibody Formation/drug effects
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*Dietary Supplements
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Ferrous Compounds/*therapeutic use
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Foot-and-Mouth Disease/*immunology/prevention & control
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Foot-and-Mouth Disease Virus/immunology
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Germanium/*therapeutic use
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Swine
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Swine Diseases/immunology/prevention & control/*virology
8.Prokaryotic expression and purification of the capsid protein of porcine getah virus and preparation of its polyclonal antibody.
Yan JIANG ; Dan-Ni HE ; Xiao-Min ZHANG ; Bin ZHOU ; Pu-Yan CHEN
Chinese Journal of Virology 2013;29(4):371-375
Based on a pair of specific primers, a 804-bp fragment was amplified from the plasmid pT-Cap containing Cap gene of Porcine Getah Virus(PGETV) and cloned into the prokaryotic expression vector pCold I which carried the His tag, this recombinant plasmid was then determined by enzyme digestion, PCR and DNA sequencing. This recombinant plasmid pCold-Cap was transformed into E. coli Rosetta 2, and PGETV Cap fusion protein was expressed through IPTG induction. The results showed that the Cap gene obtained efficient and soluble expression in Rosetta 2 induced by 0. Immol/L IPTG under 15"C for 24h, the expression quantity was 40. 2%. The product had a molecular mass about 32. 3kD as expected. The target protein was separated in gel slices and used to immunize Balb/c mice. The polyclonal antibody with high titer against Cap protein specifically analyzed by Western blot was obtained. The successful preparation of the polyclonal antibody laid the foundation for the further study on the detection and identification of PGETV.
Alphavirus
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genetics
;
immunology
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metabolism
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Alphavirus Infections
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immunology
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veterinary
;
virology
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Animals
;
Antibodies, Viral
;
blood
;
immunology
;
Blotting, Western
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Capsid Proteins
;
genetics
;
immunology
;
isolation & purification
;
metabolism
;
DNA Primers
;
genetics
;
Electrophoresis, Polyacrylamide Gel
;
Escherichia coli
;
genetics
;
metabolism
;
Gene Expression
;
Genetic Vectors
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Humans
;
Male
;
Mice
;
Mice, Inbred BALB C
;
Plasmids
;
genetics
;
Polymerase Chain Reaction
;
Recombinant Fusion Proteins
;
Swine
;
Swine Diseases
;
immunology
;
virology
;
Zoonoses
9.Development of a novel enzyme-linked immunosorbent assay to detect anti-IgG against swine hepatitis E virus.
Won Jung LEE ; Min Kyoung SHIN ; Seung Bin CHA ; Han Sang YOO
Journal of Veterinary Science 2013;14(4):467-472
Swine hepatitis E virus (HEV) is widespread throughout pigs in both developing and industrialized countries. This virus is an important zoonotic agent and a public concern worldwide. Infected pigs are asymptomatic, so diagnosing swine HEV relies on detection of the virus or antibodies against the virus. However, several obstacles need to be overcome for effective and practical serological diagnosis. In this study, we developed an enzyme-linked immunosorbent assay (ELISA) that used a purified recombinant capsid protein of swine HEV. The potential clinical use of this assay was evaluated by comparing it with a commercial kit (Genelabs Technologies, Diagnostics, Singapore). Results of the ELISA were highly correlated with those of the commercial kit with a sensitivity of 97% and specificity of 95%. ROC (receiving operator characteristic) analysis of the ELISA data produced a value of 0.987 (95% CI, 0.977~0.998, p < 0.01). The cut-off value for the ELISA was also determined using negative pig sera. In summary, the HEV-specific ELISA developed in the present study appears to be both practical and economical.
Animals
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Antibodies, Anti-Idiotypic/*analysis/blood/genetics
;
Capsid Proteins/*genetics/metabolism
;
Enzyme-Linked Immunosorbent Assay/*methods/veterinary
;
Hepatitis E/diagnosis/immunology/*veterinary/virology
;
Hepatitis E virus/genetics/*isolation & purification/metabolism
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Immunoglobulin G/blood/genetics
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ROC Curve
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Recombinant Proteins/genetics/metabolism
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Swine
;
Swine Diseases/*diagnosis/immunology/virology
10.Eukaryotic expression of NS1 major antigen region of PPV and development of an indirect ELISA based on the expressed protein.
Hui MA ; Xu-Yong ZHAO ; Chuan-Zhou BIAN
Chinese Journal of Virology 2012;28(6):628-632
To construct secretory expression vector of PPV NS1 gene, the fragment of PPV NS1 gene coding for major antigen region of the NS1 protein was amplified by PCR and inserted into multiple clone site of eukaryotic expression vector pPICZalpha-A. The recombinant pPICZalpha-A-NS1 plasmid was transferred into P. pastoris strain GS115 mediated by electro transform. Recombinant P. pastoris strain GS115 was induced to express the fusion protein by methanol. The expressed and purified protein was analyzed by SDS-PAGE and Western Blot. The recombinant protein was highly-expressed and showed a good immunoreactivity. The indirect ELISA method was developed for detecting antibodies against PPV by checkerboard titration assay. The result showed that the optimal concentration of coated antigen was 3.2 microg/mL and the best dilution of serum was 1 : 80. The positive cut-off value of the ELISA assay was OD450 > 0.4 and OD450 positive serum/OD450 negative serum > 2.0. Compared with HI and commercial ELISA kits, the assay revealed 94.2% and 92.1% agreement respectively. The assay demonstrates good specificity and sensitivity, and can be applied in the detection of porcine parvovirus.
Animals
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Antibodies, Viral
;
immunology
;
Antigens, Viral
;
genetics
;
immunology
;
Enzyme-Linked Immunosorbent Assay
;
methods
;
Escherichia coli
;
genetics
;
metabolism
;
Gene Expression
;
Parvoviridae Infections
;
diagnosis
;
immunology
;
veterinary
;
virology
;
Parvovirus, Porcine
;
genetics
;
immunology
;
isolation & purification
;
Recombinant Proteins
;
genetics
;
immunology
;
Swine
;
Swine Diseases
;
diagnosis
;
immunology
;
virology
;
Viral Nonstructural Proteins
;
genetics
;
immunology

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