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Passive Administration of Monoclonal Antibodies Against H. capsulatum and Others Fungal Pathogens
Published on: February 14, 2011
Passive immunization does not provide protection against experimental infection with Mycoplasma haemofelis
Sarah Sugiarto1,2, Andrea M Spiri1,2, Barbara Riond1,2
1Clinical Laboratory, Vetsuisse Faculty, University of Zurich, Winterthurerstr. 260, 8057, Zurich, Switzerland.
Abstract:
Mycoplasma haemofelis (Mhf) is the most pathogenic feline hemotropic mycoplasma. Cats infected with Mhf that clear bacteremia are protected from Mhf reinfection, but the mechanisms of protective immunity are unresolved. In the present study we investigated whether the passive transfer of antibodies from Mhf-recovered cats to naïve recipient cats provided protection against bacteremia and clinical disease following homologous challenge with Mhf; moreover, we characterized the immune response in the recipient cats. Ten specified pathogen-free (SPF) cats were transfused with pooled plasma from cats that had cleared Mhf bacteremia; five control cats received plasma from naïve SPF cats. After homologous challenge with Mhf, cats were monitored for 100 days using quantitative PCR, hematology, blood biochemistry, Coombs testing, flow cytometry, DnaK ELISA, and red blood cell (RBC) osmotic fragility (OF) measurement. Passively immunized cats were not protected against Mhf infection but, compared to control cats, showed significantly higher RBC OF and B lymphocyte (CD45R/B220(+)) counts and occasionally higher lymphocyte, monocyte and activated CD4(+) T lymphocyte (CD4(+)CD25(+)) counts; they also showed higher bilirubin, total protein and globulin levels compared to those of control cats. At times of peak bacteremia, a decrease in eosinophils and lymphocytes, as well as subsets thereof (B lymphocytes and CD5(+), CD4(+) and CD8(+) T lymphocytes), and an increase in monocytes were particularly significant in the passively immunized cats. In conclusion, passive immunization does not prevent bacteremia and clinical disease following homologous challenge with Mhf, but enhances RBC osmotic fragility and induces a pronounced immune response.
Insights
Passive antibody transfer from recovered cats did not prevent Mycoplasma haemofelis (Mhf) infection in new cats. However, it increased red blood cell fragility and stimulated a significant immune response, suggesting a complex immunity to Mhf.
Area of Science:
- Veterinary Immunology
- Feline Infectious Diseases
Background:
- Mycoplasma haemofelis (Mhf) is a significant feline pathogen.
- Immunity following Mhf infection and clearance is not fully understood.
- Protective mechanisms against Mhf reinfection require further investigation.
Purpose of the Study:
- To determine if passive antibody transfer protects cats against Mhf.
- To characterize the immune response in passively immunized cats challenged with Mhf.
Main Methods:
- Plasma from Mhf-recovered cats was transferred to naïve cats.
- Cats were challenged with Mhf and monitored for 100 days.
- Quantitative PCR, hematology, flow cytometry, and other assays were used.
Main Results:
- Passive immunization did not prevent Mhf bacteremia or clinical signs.
- Passively immunized cats exhibited increased red blood cell osmotic fragility.
- Elevated B lymphocyte counts and altered lymphocyte/monocyte profiles were observed.
Conclusions:
- Passive antibody transfer is insufficient to prevent Mhf infection.
- Mhf infection elicits complex immune responses, including changes in RBC fragility and immune cell populations.
- Further research is needed to elucidate protective immunity against Mhf.
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