Title
A Leishmania hypothetical protein-containing liposome-based formulation is highly immunogenic and induces protection against visceral leishmaniasis
Date Issued
01 November 2018
Access level
metadata only access
Resource Type
journal article
Author(s)
Ribeiro P.A.F.
Dias D.S.
Novais M.V.M.
Lage D.P.
Tavares G.S.V.
Mendonça D.V.C.
Oliveira J.S.
Roatt B.M.
Duarte M.C.
Menezes-Souza D.
Ludolf F.
Tavares C.A.P.
Oliveira M.C.
Coelho E.A.F.
Publisher(s)
Academic Press
Abstract
Leishmania proteins have been evaluated as vaccine candidates against leishmaniasis; however, most antigens present low immunogenicity and need to be added with immune adjuvants. A low number of licensed adjuvants exist on the market today; therefore, research conducted to produce new products is desirable. The present study sought to evaluate the immunogenicity and protective efficacy of a recombinant Leishmania hypothetical protein, namely LiHyR, administered with saponin or liposomes in BALB/c mice. Immunological and parasitological parameters were evaluated, and results showed significant protection against Leishmania infantum infection produced by both compositions in the immunized animals; however, this was not identified when the antigen was used alone. In addition, the liposomal formulation was more effective in inducing a polarized Th1 response in the vaccinated animals, which was maintained after challenge and reflected by lower parasitism found in all evaluated organs when the limiting dilution technique and RT-PCR assay were employed. The protected animals showed higher levels of protein and parasite-specific IFN-γ IL-2, IL-12, GM-CSF, and TNF-α which were evaluated by capture ELISA and flow cytometry, in addition to a higher production of anti-protein and anti-parasite IgG2a antibodies, both before and after challenge. The Lip/rLiHyR combination induced higher IFN-γ production through both CD4+ and CD8+ T cell subtypes. Results indicate the possibility of using the LiHyR, containing a liposomal formulation, as a vaccine candidate against visceral leishmaniasis.
Start page
131
End page
139
Volume
111
Language
English
OCDE Knowledge area
Inmunología Tecnología para la identificación y funcionamiento del ADN, proteínas y enzimas y como influencian la enfermedad) Biología celular, Microbiología
Scopus EID
2-s2.0-85051773714
PubMed ID
Source
Cytokine
ISSN of the container
10434666
Sponsor(s)
The authors thank the Program for Technological Development in Tools for Health-PDTIS-FIOCRUZ for use of its facilities. This work was supported by grants from FAPEMIG ( CBB-APQ-00819-12 and CBB-APQ-01778-2014 ) and CNPq ( APQ-482976/2012-8 , APQ-488237/2013-0 , and APQ-467640/2014-9 ). MACF is a grant recipient of FAPEMIG/CAPES. EAFC and DMS are grants recipient of CNPq.
Sources of information: Directorio de Producción Científica Scopus