1.A study of experimental autoimmune encephalomyelitis in dogs as a disease model for canine necrotizing encephalitis.
Jong Hyun MOON ; Hae Won JUNG ; Hee Chun LEE ; Joon Hyeok JEON ; Na Hyun KIM ; Jung Hyang SUR ; Jeongim HA ; Dong In JUNG
Journal of Veterinary Science 2015;16(2):203-211
In the present study, the use of dogs with experimental autoimmune encephalomyelitis (EAE) as a disease model for necrotizing encephalitis (NE) was assessed. Twelve healthy dogs were included in this study. Canine forebrain tissues (8 g), including white and grey matter, were homogenized with 4 mL of phosphate-buffered saline for 5 min in an ice bath. The suspension was emulsified with the same volume of Freund's complete adjuvant containing 1 mg/mL of killed Mycobacterium tuberculosis H37Ra. Under sedation, each dog was injected subcutaneously with canine brain homogenate at four sites: two in the inguinal and two in the axillary regions. A second injection (booster) was administered to all the dogs using the same procedure 7 days after the first injection. Clinical assessment, magnetic resonance imaging, cerebrospinal fluid analyses, necropsies, and histopathological and immunohistochemical examinations were performed for the dogs with EAE. Out of the 12 animals, seven (58%) developed clinically manifest EAE at various times after immunization. Characteristics of canine EAE models were very similar to canine NE, suggesting that canine EAE can be a disease model for NE in dogs.
Animals
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Brain/*pathology
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Disease Models, Animal
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Dog Diseases/*immunology
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Dogs
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Encephalitis/immunology/*veterinary
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Encephalomyelitis, Autoimmune, Experimental/immunology/*veterinary
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Female
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Fluorescent Antibody Technique/veterinary
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Immunization/veterinary
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Immunohistochemistry/veterinary
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Magnetic Resonance Imaging/veterinary
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Male
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Necrosis/immunology/*veterinary
2.Sensitization rates of causative allergens for dogs with atopic dermatitis: detection of canine allergen-specific IgE.
Min Hee KANG ; Ha Jung KIM ; Hye Jin JANG ; Hee Myung PARK
Journal of Veterinary Science 2014;15(4):545-550
Allergen-specific IgE serology tests became commercially available in the 1980s. Since then these tests have been widely used to diagnose and treat allergic skin diseases. However, the relationship between a positive reaction and disease occurrence has been controversial. The purpose of this study was to evaluate allergens using a serologic allergy test in dogs with atopic dermatitis (AD). Dogs clinically diagnosed with AD (n=101) were tested using an allergen-specific IgE immunoassay. Among the total 92 environmental and food allergens, house dust and house dust mites were the most common. Several allergens including airborne pollens and molds produced positive reactions, and which was considered increasing allergens relating to the climate changes. The presence of antibodies against staphylococci and Malassezia in cases of canine AD was warranted in this study. Additionally, strong (chicken, turkey, brown rice, brewer's yeast, and soybean) and weakly (rabbit, vension, duck, and tuna) positive reactions to food allergens could be used for avoidance and limited-allergen trials.
Allergens/*blood
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Animals
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Dermatitis, Atopic/etiology/*veterinary
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Dog Diseases/*etiology
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Dogs
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Enzyme-Linked Immunosorbent Assay/veterinary
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Female
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Immunization/*veterinary
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Immunoglobulin E/*blood
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Male
3.Immunization against porcine epidemic diarrhea virus and vaccine development.
Shijuan DONG ; Chunfang XIE ; Fusheng SI ; Bingqing CHEN ; Ruisong YU ; Zhen LI
Chinese Journal of Biotechnology 2021;37(8):2603-2613
Porcine epidemic diarrhea (PED) is a major disease of pigs that inflicts heavy losses on the global pig industry. The etiologic agent is the porcine epidemic diarrhea virus (PEDV), which is assigned to the genus Alphacoronavirus in the family Coronaviridae. This review consists of five parts, the first of which provides a brief introduction to PEDV and its epidemiology. Part two outlines the passive immunity in new born piglets and the important role of colostrum, while the third part summarizes the characteristics of the immune systems of pregnant sows, discusses the concept of the "gut-mammary gland-secretory IgA(sIgA) axis" and the possible underpinning mechanisms, and proposes issues to be addressed when designing a PEDV live vaccine. The final two parts summarizes the advances in the R&D of PEDV vaccines and prospects future perspectives on prevention and control of PEDV, respectively.
Animals
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Antibodies, Viral
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Coronavirus Infections/veterinary*
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Female
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Immunization
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Porcine epidemic diarrhea virus
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Pregnancy
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Swine
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Swine Diseases/prevention & control*
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Viral Vaccines
4.Passive immunization using purified IgYs against infectious bursal disease of chickens in Pakistan.
Muhammad Wasif MALIK ; Najma AYUB ; Irfan Zia QURESHI
Journal of Veterinary Science 2006;7(1):43-46
Infectious bursal disease (IBD) is an acute and highly contagious disease of young chickens caused by Birnavirus. Mortality of infected birds can be best prevented if injected with antibodies. The present study was an attempt to raise specific hyper-immune polyclonal antibodies against IBD virus in Pakistan. Commercial layers divided into four groups were injected with IBD vaccine subcutaneously according to four different treatment regimens. Eggs were collected daily and antibodies were purified from yolk with dextran sulphate. Titers of antibodies in serum and yolk were evaluated with enzyme linked immunosorbant assay and agar gel precipitation test. Antibody titers were significantly higher in yolk than serum. Eggs collected at 28 days post-vaccination had maximum antibody titers. Of treatment regimens, T3 was found to be most effective for hyperimmunization. Lyophilized antibodies stored at 4oC did not lose their activity till the end of experiment. IBD virus infected birds were injected with purified antibodies which induced 92% recovery as compared to control birds. The study implicates that the purified antibodies may be useful as a therapeutic agent to cure IBD infected birds.
Animals
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Antibodies, Viral/blood
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Birnaviridae Infections/immunology/*therapy/*veterinary/virology
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*Chickens
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Egg Yolk/immunology/virology
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Enzyme-Linked Immunosorbent Assay/veterinary
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Female
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Immunization/methods/*veterinary
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Immunoglobulins/*immunology
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Immunotherapy/methods/veterinary
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Infectious bursal disease virus/*immunology
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Poultry Diseases/immunology/*therapy/*virology
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Precipitin Tests/veterinary
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Viral Vaccines/*immunology/therapeutic use
5.Protection of chickens against infectious bronchitis virus with a multivalent DNA vaccine and boosting with an inactivated vaccine.
Fang YAN ; Yujun ZHAO ; Yongting HU ; Jianyang QIU ; Wenxin LEI ; Wenhui JI ; Xuying LI ; Qian WU ; Xiumin SHI ; Zhong LI
Journal of Veterinary Science 2013;14(1):53-60
The protective efficacy of DNA plasmids encoding avian infectious bronchitis virus (IBV) S1, N, or M protein was investigated in chickens. Chickens were inoculated monovalently (with plasmid pVAX1-16S1, pVAX1-16M, or pVAX1-16N alone) or multivalently (combination of the three different plasmids, pVAX1-16S1/M/N). A prime-boost immunization protocol against IBV was developed. Chickens were immunized with the multivalent DNA vaccine twice and then boosted with an inactivated vaccine once. Antibody titers of the chickens immunized with pVAX1-16S1/M/N were much higher than those of the monovalent groups (p < 0.01). A protective rate up to 90% was observed in the pVAX1-16S1/M/N group. The serum antibody titers in the prime-boost birds were significantly higher than those of the multivalent DNA vaccine group (p < 0.01) but not significantly different compared to the inactivated vaccine group at 49 days of age. Additionally, the prime-boost group also showed the highest level of IBV-specific cellular proliferation compared to the monovalent groups (p < 0.01) but no significant difference was found compared to the multivalent DNA vaccine group, and the prime-boost group completely protected from followed viral challenge.
Aging
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Animals
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Antibodies, Viral/blood
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Cell Proliferation
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Chickens
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Coronavirus Infections/prevention & control/*veterinary/virology
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Immunization, Secondary/veterinary
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Infectious bronchitis virus/*immunology
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Poultry Diseases/*prevention & control/virology
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T-Lymphocyte Subsets/cytology/physiology
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Vaccines, DNA/immunology
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Vaccines, Inactivated/immunology
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Viral Vaccines/*immunology
6.Protective effects of recombinant Brucella abortus Omp28 against infection with a virulent strain of Brucella abortus 544 in mice.
Jeong Ju LIM ; Dong Hyeok KIM ; Jin Ju LEE ; Dae Geun KIM ; Wongi MIN ; Hu Jang LEE ; Man Hee RHEE ; Suk KIM
Journal of Veterinary Science 2012;13(3):287-292
The outer membrane proteins (OMPs) of Brucella (B.) abortus have been extensively studied, but their immunogenicity and protective ability against B. abortus infection are still unclear. In the present study, B. abortus Omp28, a group 3 antigen, was amplified by PCR and cloned into a maltose fusion protein expression system. Recombinant Omp28 (rOmp28) was expressed in Escherichia coli and was then purified. Immunogenicity of rOmp28 was confirmed by Western blot analysis with Brucella-positive mouse serum. Furthermore, humoral- or cell-mediated immune responses measured by the production of IgG1 or IgG2a in rOmp28-immunized mice and the ability of rOmp28 immunization to protect against B. abortus infection were evaluated in a mouse model. In the immunogenicity analysis, the mean titers of IgG1 and IgG2a produced by rOmp28-immunized mice were 20-fold higher than those of PBS-treated mice throughout the entire experimental period. Furthermore, spleen proliferation and bacterial burden in the spleen of rOmp28-immunized mice were approximately 1.5-fold lower than those of PBS-treated mice when challenged with virulent B. abortus. These findings suggest that rOmp28 from B. abortus is a good candidate for manufacturing an effective subunit vaccine against B. abortus infection in animals.
Animals
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Antibodies, Bacterial/blood
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Blotting, Western/veterinary
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Brucella Vaccine/*immunology
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Brucella abortus/*immunology
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Brucellosis, Bovine/*immunology/microbiology/*prevention & control
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Cattle
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Cloning, Molecular
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Electrophoresis, Polyacrylamide Gel/veterinary
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Enzyme-Linked Immunosorbent Assay/veterinary
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Female
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Immunization/veterinary
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Immunoglobulin G/blood
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Immunoglobulin Isotypes/blood
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Membrane Proteins/genetics/*immunology
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Mice
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Mice, Inbred BALB C
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Models, Animal
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Recombinant Proteins/genetics/immunology
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Vaccines, Subunit/immunology
7.Association of the time that elapsed from last vaccination with protective effectiveness against foot-and-mouth disease in small ruminants.
Ehud ELNEKAVE ; Boris EVEN-TOV ; Boris GELMAN ; Beni SHARIR ; Eyal KLEMENT
Journal of Veterinary Science 2015;16(1):87-92
Routine and emergency vaccination of small ruminants against foot-and-mouth disease (FMD) is mandatory in many endemic countries, yet data on the field effectiveness of the vaccines used is scarce. We conducted an investigation of a serotype O FMD outbreak that took place in a sheep and goat pen, and estimated the effectiveness of various routine vaccination statuses. We also evaluated the protection provided by colostrum administration and emergency vaccination. Animals which were routinely vaccinated twice were not clinically affected while disease incidence was observed among animals routinely vaccinated only once (p = 0.004 according to a two-sided Fisher's exact test). In groups vaccinated only once, there was a significant association between the average time that elapsed since last vaccination and the disease incidence (n = 5; Spearman correlation coefficient: r(s) = 1.0, p < 0.01). In addition, non-vaccinated lambs fed colostrum from dams vaccinated more than 2 months before parturition had a mortality rate of 33%. Administration of emergency vaccination 2 days after the occurrence of the index case was the probable reason for the rapid blocking of the FMD spread within 6 days from its onset in the pen.
Animals
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Colostrum
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Disease Outbreaks/veterinary
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Foot-and-Mouth Disease/*prevention & control
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Goat Diseases/*prevention & control
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Goats
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Immunization Schedule
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Sheep
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Sheep Diseases/*prevention & control
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Viral Vaccines/administration & dosage/*immunology
8.Efficacy of VP2 protein expressed in E. coli for protection against highly virulent infectious bursal disease virus.
Abdul Rahman OMAR ; Chong Lee KIM ; Mohd Hair BEJO ; Aini IDERIS
Journal of Veterinary Science 2006;7(3):241-247
The ability of a heat-inactivated whole virus from a highly virulent infectious bursal disease virus (hvIBDV) and VP2 protein from hvIBDV expressed in E. coli provided protection against a hvIBDV challenge in specificpathogen- free (SPF) chickens. Six out of seven chickens that were injected three times with crude VP2 protein developed significant antibody titer against IBDV. However, only four out of the seven chickens survived the hvIBDV challenge. Despite showing low antibody titer profiles, all chickens immunized with the heat-inactivated whole virus also survived the challenged with hvIBDV. However, all of these chickens had bursal atrophy and mild to moderate depletion of lymphocytes. Thus, antibodies raised against IBDV VP2 protein expressed in E. coli and denatured IBDV proteins induced some degree of protection against mortality but not against bursal damage following challenge with hvIBDV.
Animals
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Antibodies, Viral/blood
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Birnaviridae Infections/immunology/prevention & control/*veterinary/virology
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Chickens
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Enzyme-Linked Immunosorbent Assay/veterinary
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Escherichia coli/genetics
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Immunization/standards/*veterinary
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Infectious bursal disease virus/genetics/*immunology/pathogenicity
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Poultry Diseases/*immunology/prevention&control/virology
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Recombinant Proteins/genetics/*immunology
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Specific Pathogen-Free Organisms
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Vaccines, Attenuated/immunology/pharmacology
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Vaccines, Synthetic/immunology/pharmacology
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Viral Structural Proteins/biosynthesis/genetics/*immunology
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Viral Vaccines/*immunology/pharmacology
9.Establishment and characterization of an infectious cDNA clone of a classical swine fever virus LOM strain.
Gil Soon PARK ; Seong In LIM ; Seung Ho HONG ; Jae Young SONG
Journal of Veterinary Science 2012;13(1):81-91
Classical swine fever virus (CSFV) causes a highly contagious disease among swine that has an important economic impact worldwide. CSFV strain LOM is an attenuated virus of low virulent strain of Miyagi isolated from Japan in 1956. Eight DNA fragments representing the genome of the CSFV strain LOM were obtained by RT-PCR. These were used to determine the complete nucleotide sequence and construct a full-length cDNA clone which was called Flc-LOM. Sequence analysis of the recombinant clone (Flc-LOM) revealed the presence of eight mutations, resulting in two amino acid substitutions, when compared to the parental sequence. RNA transcripts of both LOM and Flc-LOM were directly infectious in PK-15 cells. The rescued Flc-LOM virus grew more slowly than the parental virus, LOM, in the cells. Intramuscular immunization with Flc-LOM was safe and highly immunogenic in pigs; no clinical signs or virus transmission to sentinel animals were observed after 35 days. CSFV-specific neutralizing antibodies were detected 14 days post-infection. After challenge with the virulent CSFV strain SW03, pigs immunized with Flc-LOM were shown to be fully protected. Thus, our newly established infectious clone of CSFV, Flc-LOM, could serve as a vaccine candidate.
Animals
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Antibodies, Viral/blood
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Base Sequence
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Cell Line
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Classical Swine Fever/immunology/*virology
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Classical swine fever virus/*genetics/immunology/pathogenicity
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Cloning, Molecular
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DNA, Complementary/genetics/immunology
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Immunization/methods/standards/veterinary
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Molecular Sequence Data
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Neutralization Tests/veterinary
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RNA, Viral/chemistry/genetics
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Recombinant Proteins/immunology
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Reverse Transcriptase Polymerase Chain Reaction/veterinary
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Sequence Analysis, DNA
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Specific Pathogen-Free Organisms
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Swine
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Virulence
10.Induction of humoral responses to BHV-1 glycoprotein D expressed by HSV-1 amplicon vectors.
Andrea Maria BLANC ; Mabel Beatriz BEROIS ; Lorena Magali TOME ; Alberto L EPSTEIN ; Juan Ramon ARBIZA
Journal of Veterinary Science 2012;13(1):59-65
Herpes simplex virus type-1 (HSV-1) amplicon vectors are versatile and useful tools for transferring genes into cells that are capable of stimulating a specific immune response to their expressed antigens. In this work, two HSV-1-derived amplicon vectors were generated. One of these expressed the full-length glycoprotein D (gD) of bovine herpesvirus 1 while the second expressed the truncated form of gD (gDtr) which lacked the trans-membrane region. After evaluating gD expression in the infected cells, the ability of both vectors to induce a specific gD immune response was tested in BALB/c mice that were intramuscularly immunized. Specific serum antibody responses were detected in mice inoculated with both vectors, and the response against truncated gD was higher than the response against full-length gD. These results reinforce previous findings that HSV-1 amplicon vectors can potentially deliver antigens to animals and highlight the prospective use of these vectors for treating infectious bovine rhinotracheitis disease.
Animals
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Antibodies, Viral/blood
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Blotting, Western/veterinary
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Cattle
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Female
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Genetic Vectors/*immunology
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Herpesvirus 1, Bovine/genetics/*immunology
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Herpesvirus 1, Human/genetics/*immunology
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Immunity, Humoral/immunology
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Immunization/methods/veterinary
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Infectious Bovine Rhinotracheitis/*immunology/prevention & control/virology
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Mice
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Mice, Inbred BALB C
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Neutralization Tests/veterinary
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Specific Pathogen-Free Organisms
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Viral Proteins/genetics/*immunology
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Viral Vaccines/immunology