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Da-Cruz, A. M.

Publications and source records attributed to Da-Cruz, A. M..

2 recordsLinked to original sources

Mice Mucosal Leishmaniasis model shown high parasite load, increased cytotoxicity and impaired IL-10+ cells response

Mucosal Leishmaniasis is one of the most aggressive clinical manifestations of Leishmania infection disease, characterized by the destruction of nasal and oral tissues. The mechanisms by which this disease occurs are still not well understood due to the lack of effective experimental models. Mucosal leishmaniasis is associated with inflammatory response, especially Th17 response. Based on that, in this work, the immunopathological aspects of the experimental infection of BALB/c mice by Leishmania amazonensis in the mucosa site were evaluated due to high susceptibility and the disease been associated with Th17 response. Three infection modes were performed and compared according to the injection site. Six weeks post infection, mice presented edema in the nasal and premaxillary region, with progressive growth until twelve weeks. The micro-Computerized Tomography and the histology images demonstrated that the parasite inoculation led to destruction of squamous and transitional tissues in NC and NB groups, with several cells harboring amastigotes. Mice infected in the mucosa tissues had higher parasite load and IgG, IgM antibody levels and increased production of cytotoxic mediators such as CD107, granzyme b and perforin, inflammatory cytokines as IFN-{gamma} and IL-17, but lower frequencies of CD4+ IL-10+ cells compared to ear dermis. Taken together, our data shows that L. amazonensis parasites are more proliferative in nasal mucosa and the infection leads to an increased inflammatory response compared to ear dermis, pointing to this model as an interesting approach to understand some features of MCL immunopathology.

immunology↗

A cytokine network balance influences the fate of Leishmania (Viannia) braziliensis infection in a cutaneous leishmaniasis hamster model

The golden hamster is a suitable model for studying cutaneous leishmaniasis (CL) due to Leishmania (Viannia) braziliensis. Immunopathological mechanismsare wellstablished inthe L. (L.) major-mouse model, in which IL-4 instructs a Th2 response towards progressive infection. In the present study, we evaluatedthe natural history of L. braziliensis infection from its first stagesup to lesion establishment, with the aim ofidentifyingimmunological parameters associated with the disease outcome and parasitismfate. To this end, hamsters infected with 104, 105,or 106 promastigoteswere monitored duringthe first hours (4h, 24h), early (15, 30 days) and late (50 days) post-infection (pi) phases. Cytokines, iNOS and arginasegene expression were quantified in the established lesions by RT-PCR. Compared to the 105 or 106 groups, 104animals presented lower lesions sizes, less tissue damage,and lower IgG levels. Basal gene expression in normal skin was high for TGF-{beta}, and intermediary for TNF, IL-6, and IL-4.At 4hpi, no cytokine induction was observed in the 104 group, while an upregulation of IL-6, IL-10, and IL-4 was observed in the 106 group. At 15dpi, lesion appearance was accompanied byan increasedexpression of all assessed cytokines, markedly in the 105 and 106 groups. Upregulation of all investigated cytokines was observed in the late phase, although less expressive in the 104 group. IFN-{gamma} was the depending variable influencing tissue damage, while IL-6 was associatedto parasite load. The network correlating gene expression and clinical and laboratorial parameters indicated inoculum-independent associations at 15 and 30dpi.A strong positive network correlation was observed in the 104 group, but not in the105 or 106 groups. In conclusion, IL-4, IL-6, IL-10, and TGF-{beta} are linkedto L. braziliensisprogression. However, a balanced cytokine network is the key for an immune response able to reduce the ongoing infection and reduce pathological damage.

immunology↗