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1.
PLoS One ; 10(10): e0141141, 2015.
Article de Anglais | MEDLINE | ID: mdl-26505634

RÉSUMÉ

Malaria remains a major global public health problem with an estimated 200 million cases detected in 2012. Although the most advanced candidate malaria vaccine (RTS,S) has shown promise in clinical trials, its modest efficacy and durability have created uncertainty about the impact of RTS,S immunization (when used alone) on global malaria transmission. Here we describe the development and characterization of a novel modified vaccinia virus Ankara (MVA)-based malaria vaccine which co-expresses the Plasmodium yoelii circumsporozoite protein (CSP) and IL-15. Vaccination/challenge studies showed that C57BL/6 mice immunized with the MVA-CSP/IL15 vaccine were protected significantly better against a P. yoelii 17XNL sporozoite challenge than either mice immunized with an MVA vaccine expressing only CSP or naïve controls. Importantly, the levels of total anti-CSP IgG were elevated about 100-fold for the MVA-CSP/IL15 immunized group compared to mice immunized with the MVA-CSP construct that does not express IL-15. Among the IgG subtypes, the IL-15 expressing MVA-CSP vaccine induced levels of IgG1 (8 fold) and IgG2b (80 fold) higher than the MVA-CSP construct. The significantly enhanced humoral responses and protection detected after immunization with the MVA-CSP/IL15 vaccine suggest that this IL-15 expressing MVA construct could be considered in the development of future malaria immunization strategies.


Sujet(s)
Immunité innée/génétique , Interleukine-15/biosynthèse , Vaccins contre le paludisme/immunologie , Paludisme/immunologie , Animaux , Femelle , Humains , Interleukine-15/génétique , Paludisme/parasitologie , Paludisme/prévention et contrôle , Vaccins contre le paludisme/administration et posologie , Vaccins contre le paludisme/génétique , Souris , Plasmodium yoelii/effets des médicaments et des substances chimiques , Plasmodium yoelii/immunologie , Plasmodium yoelii/pathogénicité , Protéines de protozoaire/génétique , Protéines de protozoaire/immunologie , Vaccination , Virus de la vaccine/génétique , Virus de la vaccine/immunologie
2.
Eur J Immunol ; 44(9): 2680-91, 2014 Sep.
Article de Anglais | MEDLINE | ID: mdl-25047384

RÉSUMÉ

CD4(+) T-cell subtypes govern the synthesis of different Ab isotypes and other immune functions. The influence of CD4(+) T-cell differentiation programs on isotype switching and other aspects of host immunological networks during malaria infection are currently poorly understood. Here, we used Tbx21(-/-) mice deficient for T-bet, a regulator of Th1 CD4(+) T-cell differentiation, to examine the effect of Th1 CD4(+) T cells on the immune protection to nonlethal murine malaria Plasmodium yoelii 17XNL. We found that Tbx21(-/-) mice exhibited significantly lower parasite burden that correlated with elevated levels of IgG1, indicating that T-bet-dependent Ab isotype switching may be responsible for lower parasite burden. Absence of T-bet was also associated with a transient but significant loss of T cells during the infection, suggesting that T-bet may suppress malaria-induced apoptosis or induce proliferation of T cells. However, Tbx21(-/-) mice produced greater numbers of Foxp3(+) CD25(+) regulatory CD4(+) T cells, which may contribute to the early contraction of T cells. Lastly, Tbx21(-/-) mice exhibited unimpaired production of IFN-γ by a diverse repertoire of immune cell subsets and a selective expansion of IFN-γ-producing T cells. These observations may have implications in malaria vaccine design.


Sujet(s)
Production d'anticorps , Commutation de classe des immunoglobulines , Paludisme/immunologie , Plasmodium yoelii/immunologie , Protéines à domaine boîte-T/immunologie , Animaux , Interféron gamma/génétique , Interféron gamma/immunologie , Paludisme/génétique , Souris , Souris knockout , Protéines à domaine boîte-T/génétique , Lymphocytes T régulateurs/immunologie , Lymphocytes auxiliaires Th1/immunologie
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