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1.
J Biol Chem ; 291(37): 19517-31, 2016 09 09.
Artigo em Inglês | MEDLINE | ID: mdl-27474745

RESUMO

Cerebral malaria is a severe and often fatal complication of Plasmodium falciparum infection. It is characterized by parasite sequestration, a breakdown of the blood-brain barrier, and a strong inflammation in the brain. We investigated the role of the cannabinoid receptor 2 (CB2), an important modulator of neuroinflammatory responses, in experimental cerebral malaria (ECM). Strikingly, mice with a deletion of the CB2-encoding gene (Cnr2(-/-)) inoculated with Plasmodium berghei ANKA erythrocytes exhibited enhanced survival and a diminished blood-brain barrier disruption. Therapeutic application of a specific CB2 antagonist also conferred increased ECM resistance in wild type mice. Hematopoietic derived immune cells were responsible for the enhanced protection in bone marrow (BM) chimeric Cnr2(-/-) mice. Mixed BM chimeras further revealed that CB2-expressing cells contributed to ECM development. A heterogeneous CD11b(+) cell population, containing macrophages and neutrophils, expanded in the Cnr2(-/-) spleen after infection and expressed macrophage mannose receptors, arginase-1 activity, and IL-10. Also in the Cnr2(-/-) brain, CD11b(+) cells that expressed selected anti-inflammatory markers accumulated, and expression of inflammatory mediators IFN-γ and TNF-α was reduced. Finally, the M2 macrophage chemokine CCL17 was identified as an essential factor for enhanced survival in the absence of CB2, because CCL17 × Cnr2 double-deficient mice were fully susceptible to ECM. Thus, targeting CB2 may be promising for the development of alternative treatment regimes of ECM.


Assuntos
Barreira Hematoencefálica/imunologia , Quimiocina CCL17/imunologia , Malária Cerebral/imunologia , Plasmodium berghei/imunologia , Receptor CB2 de Canabinoide/imunologia , Animais , Arginase/genética , Arginase/imunologia , Barreira Hematoencefálica/parasitologia , Barreira Hematoencefálica/patologia , Quimiocina CCL17/genética , Modelos Animais de Doenças , Suscetibilidade a Doenças , Feminino , Interleucina-10/genética , Interleucina-10/imunologia , Lectinas Tipo C/genética , Lectinas Tipo C/imunologia , Macrófagos/imunologia , Macrófagos/patologia , Malária Cerebral/genética , Malária Cerebral/patologia , Masculino , Receptor de Manose , Lectinas de Ligação a Manose/genética , Lectinas de Ligação a Manose/imunologia , Camundongos , Camundongos Knockout , Neutrófilos/imunologia , Neutrófilos/patologia , Receptor CB2 de Canabinoide/genética , Receptores de Superfície Celular/genética , Receptores de Superfície Celular/imunologia
2.
PLoS One ; 13(2): e0192717, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29438386

RESUMO

Malaria ranks among the most important infectious diseases worldwide and affects mostly people living in tropical countries. Mechanisms involved in disease progression are still not fully understood and specific treatments that might interfere with cerebral malaria (CM) are limited. Here we show that administration of doxycycline (DOX) prevented experimental CM (ECM) in Plasmodium berghei ANKA (PbA)-infected C57BL/6 wildtype (WT) mice in an IL-10-independent manner. DOX-treated mice showed an intact blood-brain barrier (BBB) and attenuated brain inflammation. Importantly, if WT mice were infected with a 20-fold increased parasite load, they could be still protected from ECM if they received DOX from day 4-6 post infection, despite similar parasitemia compared to control-infected mice that did not receive DOX and developed ECM. Infiltration of T cells and cytotoxic responses were reduced in brains of DOX-treated mice. Analysis of brain tissue by RNA-array revealed reduced expression of chemokines and tumour necrosis factor (TNF) in brains of DOX-treated mice. Furthermore, DOX-administration resulted in brains of the mice in reduced expression of matrix metalloproteinase 2 (MMP2) and granzyme B, which are both factors associated with ECM pathology. Systemic interferon gamma production was reduced and activated peripheral T cells accumulated in the spleen in DOX-treated mice. Our results suggest that DOX targeted inflammatory processes in the central nervous system (CNS) and prevented ECM by impaired brain access of effector T cells in addition to its anti-parasitic effect, thereby expanding the understanding of molecular events that underlie DOX-mediated therapeutic interventions.


Assuntos
Antimaláricos/farmacologia , Doxiciclina/farmacologia , Malária Cerebral/prevenção & controle , Animais , Barreira Hematoencefálica/efeitos dos fármacos , Barreira Hematoencefálica/imunologia , Quimiocinas/metabolismo , Modelos Animais de Doenças , Feminino , Inflamação/imunologia , Inflamação/prevenção & controle , Mediadores da Inflamação/metabolismo , Interleucina-10/metabolismo , Ativação Linfocitária/efeitos dos fármacos , Malária Cerebral/imunologia , Malária Cerebral/parasitologia , Metaloproteinase 2 da Matriz/metabolismo , Metaloproteinase 9 da Matriz/metabolismo , Camundongos , Camundongos Endogâmicos C57BL , Parasitemia/imunologia , Parasitemia/prevenção & controle , Plasmodium berghei/imunologia , Plasmodium berghei/patogenicidade , Baço/efeitos dos fármacos , Baço/imunologia , Subpopulações de Linfócitos T/efeitos dos fármacos , Subpopulações de Linfócitos T/imunologia
3.
Oncotarget ; 8(4): 6857-6872, 2017 Jan 24.
Artigo em Inglês | MEDLINE | ID: mdl-28036287

RESUMO

N-glycosylation is generally accepted to enhance the immunogenicity of antigens because of two main reasons. First, the attachment of glycans enables recognition by endocytic receptors like the mannose receptor (MR) and hence increased uptake by dendritic cells (DCs). Second, foreign glycans are postulated to be immunostimulatory and their recognition could induce DC activation. However, a direct comparison between the immunogenicity of N-glycosylated vs. de-glycosylated proteins in vivo and a direct effect of N-glycosylated antigens on the intrinsic capacity of DCs to activate T cells have not been assessed so far.To analyze whether enforced N-glycosylation is a suited strategy to enhance the immunogenicity of non-glycosylated antigens for vaccination studies, we targeted non-glycoproteins towards the MR by introduction of artificial N-glycosylation using the methylotrophic yeast Komagataella phaffii (previously termed Pichia pastoris). We could demonstrate that the introduction of a single N-X-S/T motif was sufficient for efficient MR-binding and internalization. However, addition of N-glycosylated proteins neither influenced DC maturation nor their general capacity to activate T cells, pointing out that enforced N-glycosylation does not increase the immunogenicity of the antigen per se. Additionally, increased antigen-specific cytotoxic T cell responses in vivo after injection of N-glycosylated compared to de-glycosylated proteins were observed but this effect strongly depended on the epitope tested. A beneficial effect of N-glycosylation on antibody production could not be detected, which might be due to MR-cross-linking on DCs and to concomitant differences in IL-6 production by CD4+ T cells.These observations point out that the effect of N-glycosylation on antigen immunogenicity can vary between different antigens and therefore might have important implications for the development of vaccines using K. phaffii.


Assuntos
Células Dendríticas/metabolismo , Lectinas Tipo C/metabolismo , Ativação Linfocitária , Lectinas de Ligação a Manose/metabolismo , Processamento de Proteína Pós-Traducional , Receptores de Superfície Celular/metabolismo , Linfócitos T/metabolismo , beta-Galactosidase/metabolismo , Animais , Comunicação Celular , Proliferação de Células , Técnicas de Cocultura , Citocinas/metabolismo , Citotoxicidade Imunológica , Células Dendríticas/imunologia , Epitopos , Glicosilação , Células HEK293 , Humanos , Imunogenicidade da Vacina , Lectinas Tipo C/deficiência , Lectinas Tipo C/genética , Ligantes , Receptor de Manose , Lectinas de Ligação a Manose/deficiência , Lectinas de Ligação a Manose/genética , Camundongos Endogâmicos C57BL , Camundongos Knockout , Ovalbumina/imunologia , Ovalbumina/metabolismo , Pichia/genética , Pichia/metabolismo , Domínios e Motivos de Interação entre Proteínas , Receptores de Superfície Celular/deficiência , Receptores de Superfície Celular/genética , Linfócitos T/imunologia , Fatores de Tempo , Transfecção , Vacinas Sintéticas/imunologia , Vacinas Sintéticas/metabolismo , beta-Galactosidase/genética , beta-Galactosidase/imunologia
4.
PLoS One ; 10(4): e0124080, 2015.
Artigo em Inglês | MEDLINE | ID: mdl-25884830

RESUMO

Plasmodium berghei ANKA (PbA) infection of C57BL/6 mice leads to experimental cerebral malaria (ECM) that is commonly associated with serious T cell mediated damage. In other parasitic infection models, inflammatory monocytes have been shown to regulate Th1 responses but their role in ECM remains poorly defined, whereas neutrophils are reported to contribute to ECM immune pathology. Making use of the recent development of specific monoclonal antibodies (mAb), we depleted in vivo Ly6C(hi) inflammatory monocytes (by anti-CCR2), Ly6G+ neutrophils (by anti-Ly6G) or both cell types (by anti-Gr1) during infection with Ovalbumin-transgenic PbA parasites (PbTg). Notably, the application of anti-Gr1 or anti-CCR2 but not anti-Ly6G antibodies into PbTg-infected mice prevented ECM development. In addition, depletion of Ly6C(hi) inflammatory monocytes but not neutrophils led to decreased IFNγ levels and IFNγ+CD8+ T effector cells in the brain. Importantly, anti-CCR2 mAb injection did not prevent the generation of PbTg-specific T cell responses in the periphery, whereas anti-Gr1 mAb injection strongly diminished T cell frequencies and CTL responses. In conclusion, the specific depletion of Ly6C(hi) inflammatory monocytes attenuated brain inflammation and immune cell recruitment to the CNS, which prevented ECM following Plasmodium infection, pointing out a substantial role of Ly6C+ monocytes in ECM inflammatory processes.


Assuntos
Encéfalo/imunologia , Malária Cerebral/imunologia , Monócitos/imunologia , Plasmodium berghei , Animais , Encéfalo/patologia , Modelos Animais de Doenças , Malária Cerebral/patologia , Camundongos , Camundongos Endogâmicos C57BL , Monócitos/patologia
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