Title of article :
Immunogenicity and protection effects of cationic liposome containing imiquimod adjuvant on leishmaniasis in BALB/c mice
Author/Authors :
Mehravaran, Ahmad Infectious Diseases and Tropical Medicine Research Center - Resistant Tuberculosis Institute - Zahedan University of Medical Sciences - Department of Parasitology and Mycology - Faculty of Medicine - Zahedan University of Medical Sciences , Rezaei Nasab, Maryam Department of Parasitology and Mycology - Faculty of Medicine - Zahedan University of Medical Sciences , Mirahmadi, Hadi Infectious Diseases and Tropical Medicine Research Center - Resistant Tuberculosis Institute - Zahedan University of Medical Sciences - Department of Parasitology and Mycology - Faculty of Medicine - Zahedan University of Medical Sciences , Sharifi, Iraj Leishmaniasis Research Center - Kerman University of Medical Sciences , Alijani, Ebrahim Clinical Immunology Research Center - Zahedan University of Medical Sciences , Nikpoor, Amin Reza Immunogenetic and Cell Culture Department - Immunology Research Center - School of Medicine - Mashhad University of Medical Sciences , Akhtari, Javad Immunogenetics Research Center - Department of Medical Nanotechnology - Faculty of Medicine - Mazandaran University of Medical Sciences, Sari , Hojatizade, Mansure Department of Basic Medical Sciences - Neyshabur University of Medical Sciences
Abstract :
Objective(s): Protection against leishmaniasis, in the murine model, is dependent on developing a
potent CD4+ mediated Th1 type response. Liposomes can be applied as immunoadjuvants to stimulate
immune responses to different antigens. In the present study, it was investigated whether DOTAP
liposomes having SLA and imiquimod adjuvant, can induce a Th1 response and protect against
Leishmania major challenge in BALB/c mice.
Materials and Methods: Liposomes were provided applying the lipid film procedure. BALB/C mice
were subcutaneously immunized, three times with 2-week intervals, with various formulations.
Assessment of lesion development and parasite burden in the foot and spleen after challenge with L.
major, assessment of Th1 cytokine (IFN-γ), and titration of IgG isotypes assessed the type of generated
immune reaction and the protection extent.
Results: The mice immunized with Liposome DOTAP+imiquimod+SLA showed smaller footpad
swelling which was meaningfully different (P<0.05) compared with other groups. The highest level
of IgG2a was observed with Lip DOTAP+imiquimod+SLA more than the control (P<0.001). Mice
immunized with Lip DOTAP+SLA+imiquimod demonstrated the least number of live parasites in
the footpad and spleen. Cytokine assay showed that the greatest IFN- γ secretion was seen in the
splenocytes of mice immunized with all formulations as compared to the control group (P<0.0001).
In contrast, the lowest IL-4 production was detectable in Lip+imiquimod+SLA spleen, which was not
significantly different compared with other groups.
Conclusion: The results of this study show that liposome DOTAP+SLA+imiquimod formulation
generates a cellular immune response that is protective against challenge against L. major.
Keywords :
Cationic liposome , Leishmania major , Imiquimod , Immune response , Vaccine
Journal title :
Astroparticle Physics