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1.
Front Immunol ; 15: 1331474, 2024.
Article in English | MEDLINE | ID: mdl-38650939

ABSTRACT

Malaria remains a global health challenge, necessitating the development of effective vaccines. The RTS,S vaccination prevents Plasmodium falciparum (Pf) malaria but is ineffective against Plasmodium vivax (Pv) disease. Herein, we evaluated the murine immunogenicity of a recombinant PvCSP incorporating prevalent polymorphisms, adjuvanted with Alhydrogel or Poly I:C. Both formulations induced prolonged IgG responses, with IgG1 dominance by the Alhydrogel group and high titers of all IgG isotypes by the Poly I:C counterpart. Poly I:C-adjuvanted vaccination increased splenic plasma cells, terminally-differentiated memory cells (MBCs), and precursors relative to the Alhydrogel-combined immunization. Splenic B-cells from Poly I:C-vaccinated mice revealed an antibody-secreting cell- and MBC-differentiating gene expression profile. Biological processes such as antibody folding and secretion were highlighted by the Poly I:C-adjuvanted vaccination. These findings underscore the potential of Poly I:C to strengthen immune responses against Pv malaria.

2.
Clin Nutr ; 42(12): 2381-2394, 2023 Dec.
Article in English | MEDLINE | ID: mdl-37862824

ABSTRACT

BACKGROUND: The search for nutritional intervention strategies against obesity has grown, highlighting the low-carbohydrate diet model. However, little is known about the impact of the quality of fatty acids consumed in this diet. Thus, we aim to investigate the influence of fatty acid quality on dietary strategy on obesity. METHODS: Male Swiss mice were diet-induced to obesity. Afterward, mice consume a low-carb diet with different types of fat: saturated, polyunsaturated ω-3, ω-6, and monounsaturated ω-9 fatty acids. Weight gain and food consumption were monitored weekly. An oral glucose tolerance test was performed and blood and tissue samples were collected for analysis of insulin resistance markers. Protein expression of insulin signaling pathway molecules, lipid metabolism, mitochondrial function, macrophage polarization, and cytokine production were analyzed. RESULTS: The high-fat diet was able to induce obesity and glucose intolerance. The switch to a low-carbohydrate dietary pattern reversed the glucose intolerance, with better results in the ω-3 and ω-9 groups. After the low-carbohydrate diet, groups ω-3 and ω-9 presented improved fasting serum glucose, insulin, and HOMA indexes. The low-carbohydrate diet also increased the activity of insulin pathway proteins such as IR, IRS1, and AKT. Furthermore, the ω-3 diet group showed greater activity of mitochondrial complexes and AMPK signaling pathway proteins. The ω-6 and ω-9 -rich diet induced M2-type macrophage polarization, as well as cytokine production modulation by the low-carbohydrate diet in the ω-3 and ω-9 groups. CONCLUSIONS: Consuming a low-carbohydrate diet pattern promotes weight loss and improves glucose intolerance in obesity. Also, the quality of lipids has a direct influence, demonstrating that the consumption of ω-3 polyunsaturated and ω-9 monounsaturated lipids can lead to more favorable outcomes for the improvement of glucose intolerance, lipid metabolism, and anti-inflammatory effects.


Subject(s)
Fatty Acids, Omega-3 , Glucose Intolerance , Insulin Resistance , Male , Mice , Animals , Fatty Acids/analysis , Adipogenesis , Obesity/metabolism , Fatty Acids, Omega-3/pharmacology , Insulin , Diet, High-Fat/adverse effects , Fatty Acids, Monounsaturated , Diet, Carbohydrate-Restricted , Cytokines , Blood Glucose/metabolism
4.
Cell Death Dis ; 12(7): 692, 2021 07 10.
Article in English | MEDLINE | ID: mdl-34247195

ABSTRACT

Chagas disease is a life-threatening disorder caused by the protozoan parasite Trypanosoma cruzi. Parasite-specific antibodies, CD8+ T cells, as well as IFN-γ and nitric oxide (NO) are key elements of the adaptive and innate immunity against the extracellular and intracellular forms of the parasite. Bim is a potent pro-apoptotic member of the Bcl-2 family implicated in different aspects of the immune regulation, such as negative selection of self-reactive thymocytes and elimination of antigen-specific T cells at the end of an immune response. Interestingly, the role of Bim during infections remains largely unidentified. To explore the role of Bim in Chagas disease, we infected WT, Bim+/-, Bim-/- mice with trypomastigotes forms of the Y strain of T. cruzi. Strikingly, our data revealed that Bim-/- mice exhibit a delay in the development of parasitemia followed by a deficiency in the control of parasite load in the bloodstream and a decreased survival compared to WT and Bim+/- mice. At the peak of parasitemia, peritoneal macrophages of Bim-/- mice exhibit decreased NO production, which correlated with a decrease in the pro-inflammatory Small Peritoneal Macrophage (SPM) subset. A similar reduction in NO secretion, as well as in the pro-inflammatory cytokines IFN-γ and IL-6, was also observed in Bim-/- splenocytes. Moreover, an impaired anti-T. cruzi CD8+ T-cell response was found in Bim-/- mice at this time point. Taken together, our results suggest that these alterations may contribute to the establishment of a delayed yet enlarged parasitic load observed at day 9 after infection of Bim-/- mice and place Bim as an important protein in the control of T. cruzi infections.


Subject(s)
Bcl-2-Like Protein 11/deficiency , Chagas Disease/parasitology , Trypanosoma cruzi/pathogenicity , Animals , Bcl-2-Like Protein 11/genetics , CD8-Positive T-Lymphocytes/immunology , CD8-Positive T-Lymphocytes/metabolism , CD8-Positive T-Lymphocytes/parasitology , Cells, Cultured , Chagas Disease/genetics , Chagas Disease/immunology , Chagas Disease/metabolism , Disease Models, Animal , Female , Host-Parasite Interactions , Interferon-gamma/metabolism , Interleukin-6/metabolism , Macrophages, Peritoneal/immunology , Macrophages, Peritoneal/metabolism , Macrophages, Peritoneal/parasitology , Mice, Inbred C57BL , Mice, Knockout , Nitric Oxide/metabolism , Parasite Load , Spleen/immunology , Spleen/metabolism , Spleen/parasitology , Time Factors , Trypanosoma cruzi/immunology
5.
Front Cell Infect Microbiol ; 11: 676183, 2021.
Article in English | MEDLINE | ID: mdl-34123875

ABSTRACT

Deficiency in memory formation and increased immunosenescence are pivotal features of Trypanosoma cruzi infection proposed to play a role in parasite persistence and disease development. The vaccination protocol that consists in a prime with plasmid DNA followed by the boost with a deficient recombinant human adenovirus type 5, both carrying the ASP2 gene of T. cruzi, is a powerful strategy to elicit effector memory CD8+ T-cells against this parasite. In virus infections, the inhibition of mTOR, a kinase involved in several biological processes, improves the response of memory CD8+ T-cells. Therefore, our aim was to assess the role of rapamycin, the pharmacological inhibitor of mTOR, in CD8+ T response against T. cruzi induced by heterologous prime-boost vaccine. For this purpose, C57BL/6 or A/Sn mice were immunized and daily treated with rapamycin for 34 days. CD8+ T-cells response was evaluated by immunophenotyping, intracellular staining, ELISpot assay and in vivo cytotoxicity. In comparison with vehicle-injection, rapamycin administration during immunization enhanced the frequency of ASP2-specific CD8+ T-cells and the percentage of the polyfunctional population, which degranulated (CD107a+) and secreted both interferon gamma (IFNγ) and tumor necrosis factor (TNF). The beneficial effects were long-lasting and could be detected 95 days after priming. Moreover, the effects were detected in mice immunized with ten-fold lower doses of plasmid/adenovirus. Additionally, the highly susceptible to T. cruzi infection A/Sn mice, when immunized with low vaccine doses, treated with rapamycin, and challenged with trypomastigote forms of the Y strain showed a survival rate of 100%, compared with 42% in vehicle-injected group. Trying to shed light on the biological mechanisms involved in these beneficial effects on CD8+ T-cells by mTOR inhibition after immunization, we showed that in vivo proliferation was higher after rapamycin treatment compared with vehicle-injected group. Taken together, our data provide a new approach to vaccine development against intracellular parasites, placing the mTOR inhibitor rapamycin as an adjuvant to improve effective CD8+ T-cell response.


Subject(s)
Protozoan Vaccines , Trypanosoma cruzi , Animals , CD8-Positive T-Lymphocytes , Mice , Mice, Inbred C57BL , Sirolimus/pharmacology , Vaccination
6.
Vaccine ; 30(18): 2882-91, 2012 Apr 16.
Article in English | MEDLINE | ID: mdl-22381075

ABSTRACT

T-cell mediated immune responses are critical for acquired immunity against infection by the intracellular protozoan parasite Trypanosoma cruzi. Despite its importance, it is currently unknown where protective T cells are primed and whether they need to re-circulate in order to exert their anti-parasitic effector functions. Here, we show that after subcutaneous challenge, CD11c(+)-dependent specific CD8(+) T-cell immune response to immunodominant parasite epitopes arises almost simultaneously in the draining lymph node (LN) and the spleen. However, until day 10 after infection, we observed a clear upregulation of activation markers only on the surface of CD11C(+)PDCA1(+) cells present in the LN and not in the spleen. Therefore, we hypothesized that CD8(+) T cells re-circulated rapidly from the LN to the spleen. We investigated this phenomenon by administering FTY720 to T. cruzi-infected mice to prevent egress of T cells from the LN by interfering specifically with signalling through sphingosine-1-phosphate receptor-1. In T. cruzi-infected mice receiving FTY720, CD8 T-cell immune responses were higher in the draining LN and significantly reduced in their spleen. Most importantly, FTY720 increased susceptibility to infection, as indicated by elevated parasitemia and accelerated mortality. Similarly, administration of FTY720 to mice genetically vaccinated with an immunodominant parasite antigen significantly reduced their protective immunity, as observed by the parasitemia and survival of vaccinated mice. We concluded that re-circulation of lymphocytes mediated by sphingosine-1-phosphate receptor-1 greatly contributes to acquired and vaccine-induced protective immunity against experimental infection with a human protozoan parasite.


Subject(s)
CD8-Positive T-Lymphocytes/immunology , Receptors, Lysosphingolipid/metabolism , Trypanosoma cruzi/immunology , Animals , CD11c Antigen/analysis , CD8-Positive T-Lymphocytes/chemistry , Female , Lymph Nodes/immunology , Mice , Mice, Inbred C57BL , Sphingosine-1-Phosphate Receptors , Spleen/immunology
7.
PLoS One ; 6(7): e22011, 2011.
Article in English | MEDLINE | ID: mdl-21779365

ABSTRACT

During adaptive immune response, pathogen-specific CD8(+) T cells recognize preferentially a small number of epitopes, a phenomenon known as immunodominance. Its biological implications during natural or vaccine-induced immune responses are still unclear. Earlier, we have shown that during experimental infection, the human intracellular pathogen Trypanosoma cruzi restricts the repertoire of CD8(+) T cells generating strong immunodominance. We hypothesized that this phenomenon could be a mechanism used by the parasite to reduce the breath and magnitude of the immune response, favoring parasitism, and thus that artificially broadening the T cell repertoire could favor the host. Here, we confirmed our previous observation by showing that CD8(+) T cells of H-2(a) infected mice recognized a single epitope of an immunodominant antigen of the trans-sialidase super-family. In sharp contrast, CD8(+) T cells from mice immunized with recombinant genetic vaccines (plasmid DNA and adenovirus) expressing this same T. cruzi antigen recognized, in addition to the immunodominant epitope, two other subdominant epitopes. This unexpected observation allowed us to test the protective role of the immune response to subdominant epitopes. This was accomplished by genetic vaccination of mice with mutated genes that did not express a functional immunodominant epitope. We found that these mice developed immune responses directed solely to the subdominant/cryptic CD8 T cell epitopes and a significant degree of protective immunity against infection mediated by CD8(+) T cells. We concluded that artificially broadening the T cell repertoire contributes to host resistance against infection, a finding that has implications for the host-parasite relationship and vaccine development.


Subject(s)
CD8-Positive T-Lymphocytes/immunology , CD8-Positive T-Lymphocytes/metabolism , Epitopes, T-Lymphocyte/immunology , Immunodominant Epitopes/immunology , Trypanosoma cruzi/microbiology , Animals , Epitopes, T-Lymphocyte/chemistry , Epitopes, T-Lymphocyte/genetics , Female , Humans , Immunodominant Epitopes/chemistry , Immunodominant Epitopes/genetics , Interferon-gamma/metabolism , Interleukin-10/metabolism , Interleukin-2/metabolism , Mice , Peptides/chemistry , Peptides/immunology , Tumor Necrosis Factor-alpha/metabolism
8.
Infect Immun ; 79(5): 2120-30, 2011 May.
Article in English | MEDLINE | ID: mdl-21357719

ABSTRACT

Recently, we described a heterologous prime-boost strategy using plasmid DNA followed by replication-defective human recombinant adenovirus type 5 as a powerful strategy to elicit long-lived CD8(+) T-cell-mediated protective immunity against experimental systemic infection of mice with a human intracellular protozoan parasite, Trypanosoma cruzi. In the present study, we further characterized the protective long-lived CD8(+) T cells. We compared several functional and phenotypic aspects of specific CD8(+) T cells present 14 or 98 days after the last immunizing dose and found the following: (i) the numbers of specific cells were similar, as determined by multimer staining or by determining the number of gamma interferon (IFN-γ)-secreting cells by enzyme-linked immunospot (ELISPOT) assay; (ii) these cells were equally cytotoxic in vivo; (iii) following in vitro stimulation, a slight decline in the frequency of multifunctional cells (CD107a(+) IFN-γ(+) or CD107a(+) IFN-γ(+) tumor necrosis factor alpha positive [TNF-α(+)]) was paralleled by a significant increase of CD107a singly positive cells after 98 days; (iv) the expression of several surface markers was identical, except for the reexpression of CD127 after 98 days; (v) the use of genetically deficient mice revealed a role for interleukin-12 (IL-12)/IL-23, but not IFN-γ, in the maintenance of these memory cells; and (vi) subsequent immunizations with an unrelated virus or a plasmid vaccine or the depletion of CD4(+) T cells did not significantly erode the number or function of these CD8(+) T cells during the 15-week period. From these results, we concluded that heterologous plasmid DNA prime-adenovirus boost vaccination generated a stable pool of functional protective long-lived CD8(+) T cells with an effector memory phenotype.


Subject(s)
CD8-Positive T-Lymphocytes/immunology , Chagas Disease/immunology , Chagas Disease/prevention & control , Immunologic Memory/immunology , Protozoan Vaccines/immunology , Trypanosoma cruzi/immunology , Vaccination/methods , Adenoviridae/genetics , Animals , Cell Separation , Female , Flow Cytometry , Genetic Vectors , Immunization, Secondary/methods , Mice , Mice, Inbred C57BL , Plasmids/immunology , Vaccines, DNA/immunology , Vaccines, Synthetic/immunology
9.
Microbiol Immunol ; 50(4): 253-63, 2006.
Article in English | MEDLINE | ID: mdl-16625047

ABSTRACT

In the present work we investigated the role of killed Propionibacterium acnes or a soluble polysaccharide extracted from bacterium cell wall in modulated experimental immunization with plasmidial DNA. We used a plasmid, p154/13, containing a gene-encoding catalytic domain of Trypanosoma cruzi (T. cruzi) trans-sialidase. As previously described, immunization of BALB/c mice with p154/13 elicited humoral, cell-mediated and protective immune responses against T. cruzi infection. In this study we describe that both P. acnes and its soluble polysaccharide fraction have the ability to modulate the immune response elicited by p154/13. Treatment with these adjuvants enhanced specific trans-sialidase Th1 immune response, as revealed by a lower IgG1/IgG2a ratio and stronger in vitro IFN-gamma synthesis by CD4+ T cells. The most important fact was that treatment with P. acnes or its soluble polysaccharide fraction in the presence of p154/13 significantly reduced the peak of parasitemia observed 7 to 8 days after T. cruzi challenge. These data suggest that P. acnes or its soluble polysaccharide fraction may improve the protective potential of a DNA vaccine against experimental T. cruzi infection.


Subject(s)
Chagas Disease/prevention & control , Propionibacterium acnes/immunology , Protozoan Vaccines/immunology , Th1 Cells/immunology , Trypanosoma cruzi/genetics , Trypanosoma cruzi/immunology , Vaccines, DNA/immunology , Animals , Antibody Specificity , Chagas Disease/immunology , Female , Immunoglobulin G/blood , Immunoglobulin G/immunology , Immunoglobulin Isotypes/blood , Immunoglobulin Isotypes/immunology , Interferon-gamma/biosynthesis , Interferon-gamma/immunology , Lymphocyte Activation , Male , Mice , Mice, Inbred BALB C , Neuraminidase/genetics , Neuraminidase/immunology , Parasitemia/immunology , Parasitemia/parasitology , Parasitemia/prevention & control , Plasmids/genetics , Plasmids/immunology , Polysaccharides/immunology , Polysaccharides/isolation & purification , Propionibacterium acnes/chemistry , Protozoan Vaccines/genetics , Spleen/immunology , Th1 Cells/cytology , Th2 Cells/cytology , Th2 Cells/immunology , Vaccines, DNA/genetics
10.
Infect Immun ; 73(9): 6017-25, 2005 Sep.
Article in English | MEDLINE | ID: mdl-16113322

ABSTRACT

We previously described that DNA vaccination with the gene encoding amastigote surface protein 2 (ASP-2) protects approximately 65% of highly susceptible A/Sn mice against the lethal Trypanosoma cruzi infection. Here, we explored the possibility that bacterial recombinant proteins of ASP-2 could be used to improve the efficacy of vaccinations. Initially, we compared the protective efficacy of vaccination regimens using either a plasmid DNA, a recombinant protein, or both sequentially (DNA priming and protein boosting). Survival after the challenge was not statistically different among the three mouse groups and ranged from 53.5 to 75%. The fact that immunization with a recombinant protein alone induced protective immunity revealed the possibility that this strategy could be pursued for vaccination. We investigated this possibility by using six different recombinant proteins representing distinct portions of ASP-2. The vaccination of mice with glutathione S-transferase fusion proteins representing amino acids 261 to 500 or 261 to 380 of ASP-2 in the presence of the adjuvants alum and CpG oligodeoxynucleotide 1826 provided remarkable immunity, consistently protecting 100% of the A/Sn mice. Immunity was completely reversed by the in vivo depletion of CD8(+) T cells, but not CD4(+) T cells, and was associated with the presence of CD8(+) T cells specific for an epitope located between amino acids 320 and 327 of ASP-2. We concluded that a relatively simple formulation consisting of a recombinant protein with a selected portion of ASP-2, alum, and CpG oligodeoxynucleotide 1826 might be used to cross-prime strong CD8(+)-T-cell-dependent protective immunity against T. cruzi infection.


Subject(s)
Adjuvants, Immunologic/administration & dosage , CD8-Positive T-Lymphocytes/immunology , Chagas Disease/immunology , Neuraminidase/immunology , Protozoan Vaccines/immunology , Trypanosoma cruzi/immunology , Adjuvants, Immunologic/genetics , Animals , Chagas Disease/genetics , Chagas Disease/mortality , Chagas Disease/prevention & control , Disease Susceptibility , Female , Mice , Mice, Inbred A , Neuraminidase/administration & dosage , Neuraminidase/genetics , Protozoan Vaccines/administration & dosage , Protozoan Vaccines/genetics , Trypanosoma cruzi/enzymology , Vaccines, Synthetic/administration & dosage , Vaccines, Synthetic/genetics , Vaccines, Synthetic/immunology
11.
Immunol Cell Biol ; 81(2): 121-9, 2003 Apr.
Article in English | MEDLINE | ID: mdl-12631235

ABSTRACT

BALB/c or C57Bl/6 mice immunized with plasmids containing Trypanosoma cruzi genes developed specific immune responses and protective immunity against lethal parasitic infection. In contrast, in the highly susceptible mouse strain A/Sn, DNA vaccination reduced the peak parasitemia but promoted limited mouse survival after challenge. In the present study, we tested whether the immunogenicity and protective efficacy of vaccination could be improved by combining DNA and recombinant protein immunization regimens. A/Sn mice immunized with plasmid p154/13 which harbours the gene encoding Trypanosoma cruzi trans-sialidase developed a predominant type 1 immune response. In contrast, immunization with the recombinant Trypanosoma cruzi trans-sialidase protein adsorbed to alum generated a typical type 2 immune response. Simultaneous administration of both p154/13 and recombinant Trypanosoma cruzi trans-sialidase protein also led to a predominant type 2 immune response. Sequential immunization consisting of two priming doses of p154/13 followed by booster injections with recombinant Trypanosoma cruzi trans-sialidase protein significantly improved specific type 1 immune response, as revealed by a drastic reduction of the serum IgG1/IgG2a ratio and by an increase in the in vitro interferon-gamma secretion by CD4 T cells. Our observations confirm and extend previous data showing that a DNA-priming protein-boosting regimen might be a general strategy to enhance type 1 immune response to DNA vaccines. Upon challenge with Trypanosoma cruzi, no improvement in protective immunity was observed in mice immunized with the DNA-priming protein-boosting regimen when compared to animals that received DNA only. Therefore, our results suggest that in this experimental model there is no correlation between the magnitude of type 1 immune response and protective immunity against Trypanosoma cruzi infection.


Subject(s)
Chagas Disease/therapy , Immunization/methods , Recombinant Proteins/administration & dosage , Vaccines, DNA/administration & dosage , Animals , Antibody Formation/drug effects , Chagas Disease/prevention & control , DNA, Protozoan/therapeutic use , Disease Susceptibility , Glycoproteins , Immunity, Cellular/drug effects , Mice , Mice, Inbred Strains , Neuraminidase/administration & dosage , Neuraminidase/genetics , Neuraminidase/therapeutic use , Recombinant Proteins/therapeutic use , Survival Rate , Trypanosoma cruzi/chemistry , Trypanosoma cruzi/genetics
12.
J Interferon Cytokine Res ; 22(11): 1137-41, 2002 Nov.
Article in English | MEDLINE | ID: mdl-12513913

ABSTRACT

Intramuscular (i.m.) administration of eukaryotic plasmid vectors containing foreign genes is a general immunization strategy capable of inducing protective type 1 immune responses against viral, bacterial, fungal, and parasitic infections. We have described that immunization with a plasmid containing a gene encoding a parasite antigen elicits specific type 1 protective immune responses against experimental infection with the human protozoan parasite Trypanosoma cruzi. However, we had evidence suggesting that DNA immunization concomitantly activated specific type 2 immune responses. To determine precisely the influence of the type 2 cytokine interleukin-4 (IL-4) during DNA immunization, we compared the immune responses of genetically modified IL-4-deficient or wild-type (wt) BALB/c mice. IL-4-deficient mice had a significantly lower ratio of specific serum IgG1/IgG2a, and on in vitro restimulation with antigen, their spleen cells secreted significantly higher amounts of interferon-gamma (IFN-gamma). In contrast, absence of IL-4 did not affect total serum antibody response, T cell proliferative responses, or activation of IFN-gamma-producing CD8(+) T cells. Our results suggested that in contrast to conventional adjuvants, such as alum and complete Freund's adjuvant, specific IgG1 in DNA-immunized BALB/c mice was highly dependent on IL-4. To our knowledge, our study provides the first evidence that endogenous IL-4 selectively downregulates the type 1 CD4(+) T cell-mediated immune response induced by i.m. genetic immunization, a fact that may have implications for the design of certain DNA vaccines.


Subject(s)
CD4-Positive T-Lymphocytes/immunology , Interleukin-4/immunology , Vaccines, DNA/pharmacology , Animals , CD4-Positive T-Lymphocytes/drug effects , Immunity, Cellular/drug effects , Immunoglobulin G/blood , Injections, Intramuscular , Interleukin-4/deficiency , Interleukin-4/genetics , Mice , Mice, Inbred BALB C , Mice, Knockout , Spleen/immunology , Vaccines, DNA/administration & dosage
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