1.Enhancement of protective immune responses by oral vaccination with Saccharomyces cerevisiae expressing recombinant Actinobacillus pleuropneumoniae ApxIA or ApxIIA in mice.
Sung Jae SHIN ; Seung Won SHIN ; Mi Lan KANG ; Deog Yong LEE ; Moon Sik YANG ; Yong Suk JANG ; Han Sang YOO
Journal of Veterinary Science 2007;8(4):383-392
We previously induced protective immune response by oral immunization with yeast expressing the ApxIIA antigen. The ApxI antigen is also an important factor in the protection against Actinobacillus pleuropneumoniae serotype 5 infection; therefore, the protective immunity in mice following oral immunization with Saccharomyces cerevisiae expressing either ApxIA (group C) or ApxIIA (group D) alone or both (group E) was compared with that in two control groups (group A and B). The immunogenicity of the rApxIA antigen derived from the yeast was confirmed by a high survival rate and an ApxIA-specific IgG antibody response (p < 0.01). The highest systemic (IgG) and local (IgA) humoral immune responses to ApxIA and ApxIIA were detected in group E after the third immunization (p < 0.05). The levels of IL-1beta and IL-6 after challenge with an A. pleuropneumoniae field isolate did not change significantly in the vaccinated groups. The level of TNF-alpha increased in a time-dependent manner in group E but was not significantly different after the challenge. After the challenge, the mice in group E had a significantly lower infectious burden and a higher level of protection than the mice in the other groups (p < 0.05). The survival rate in each group was closely correlated to the immune response and histopathological observations in the lung following the challenge. These results suggested that immunity to the ApxIA antigen is required for optimal protection.
Actinobacillus Infections/prevention & control
;
Actinobacillus pleuropneumoniae/genetics/*immunology
;
Animals
;
Antibodies, Bacterial/blood
;
Bacterial Proteins/analysis/*immunology
;
Cytokines/analysis/blood
;
Disease Models, Animal
;
Female
;
Hemolysin Proteins/analysis/*immunology
;
Immunoglobulin A/blood/immunology
;
Intestines/immunology
;
Lung/cytology/immunology
;
Mice
;
Mice, Inbred BALB C
;
Recombinant Proteins/*immunology
;
Saccharomyces cerevisiae/*genetics/immunology
;
Survival Analysis
;
Time Factors
;
Vaccination
;
Vaccines, Synthetic/administration & dosage/*immunology
2.A predictive model for the level of sIgA based on IgG levels following the oral administration of antigens expressed in Sacchromyces cerevisiae.
Sung Jae SHIN ; Seung Won SHIN ; Eun Jin CHOI ; Deog Yong LEE ; Jeong Min AHN ; Moon Sik YANG ; Yong Suk JANG ; Han Sang YOO
Journal of Veterinary Science 2005;6(4):305-309
Oral vaccination may be the most efficient way of inducing an immune response at the remote mucosal site through the common mucosal immune network. Antigenspecific secretory IgA (sIgA) is the major immunoglobulin type generally detected in the secretions of experimental animals following an effective oral immunization. Actinobacillus pleuropneumoniae causing disease in the lung of pig initially interacts, colonizes, and infects the host tissues at the mucosal surface of the respiratory tract. Also, importantly for A. pleuropneumoniae protection, the quantity of sIgA in the lung had merits associated with the mucosal immunity. However, there is no simple method to monitor the level of sIgA as an indicator for the induction of local immune responses by an oral vaccination in the target tissue. Therefore, the relationship between sIgA and IgG was analyzed to evaluate the induction of local immune responses by an oral immunization with Saccharomyces cerevisiae expressing the apxIA and apxIIA genes of A. pleuropneumoniae in this study. The correlation coefficient of determination (r2 x 100) for paired samples in both vaccinated and control groups showed a significant positive-relationship between IgG in sera and sIgA in the lung or intestine. These results indicated that IgG antibody titers in sera could be useful to indirectly predict local immune response, and sIgA, in the lung or intestine to evaluate the efficacy of an oral vaccination.
Actinobacillus pleuropneumoniae
;
Administration, Oral
;
Animals
;
Antigens, Fungal/*immunology
;
Bacterial Proteins/genetics/immunology
;
Bacterial Vaccines/*immunology
;
Disease Models, Animal
;
Female
;
Hemolysin Proteins
;
Immunity, Mucosal/*immunology
;
Immunoglobulin A, Secretory/*analysis
;
Immunoglobulin G/*blood
;
Intestine, Small/immunology
;
Lung/immunology
;
Mice
;
Mice, Inbred BALB C
;
Saccharomyces cerevisiae/*immunology