156 resultados para Immunomodulation


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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Estudos experimentais evidenciam o potencial promissor das células da fração mononuclear da medula óssea (CMN-MO) no tratamento de modelos de isquemia cerebral. Sabe-se que as CMN-MOs são sensíveis à modificações microambientais, tal qual aquelas induzidas por uma isquemia, como eventos associados à inflamação. Contudo, pouco se conhece a respeito da biodistribuição e sobrevida dessas células no tecido nervoso pós-lesão. Objetiva-se investigar se a sobrevivência e a disseminação das CMN-MOs são influenciadas pela resposta inflamatória após isquemia estriatal. Parecer CEPAE, protocolo nº 073/12. Transplante heterólogo (5x105 de CMN-MOs) no estriado de ratos Wistar, agrupados entre controles não-tratados (IST) e falso-operado (FO) e tratados (ITCM), perfundidos em 1, 3, 7 e 28 dias. CMN-MO foram impregnadas com Nanocristais Qdot para posterior identificação por microscopia de fluorescência no tecido do receptor. Coloração, por violeta de cresila, e imunoistoquímica básica (IBA1 e ED1) foram aplicadas para análise histopatológica do tecido em microscopia de luz. Testes neurocomportamentais (teste de remoção do adesivo e teste do cilindro) foram realizados para aferir a resposta dos grupos às intervenções. Os achados histopatológicos evidenciam a eficiência do modelo experimental de indução isquêmica em reproduzir a lesão no estriado dorsolateral. O infiltrado celular no grupo IST marca a resposta inflamatória, posteriormente confirmada por imunoistoquímica para ED1 e IBA1; o infiltrado celular no grupo ITCM, evidencia a permanência das CMN-MO em todas as sobrevidas estudadas. O perfil de perda por morte das CMN-MO transplantadas no sítio de lesão é semelhante entre os grupos ITCM e FO, contudo, evidencia que resposta inflamatória do receptor causa maior decaimento do montante celular no grupo ITCM. Procedimentos de infusão celular mais refinados ou automatizados podem melhorar a sensibilidade dos testes comportamentais para discriminar a evolução entre os grupos estudados. Conclui-se que a alteração do microambiente pós-isquemia cria condições que determina a dispersão e a sobrevivência das CMN-MO. Outras análises de imunoistoquímicas podem apontar resultados quanto ao perfil microglial presentes nas sobrevidas estudadas e o grau de imunomodulação pelo estudo da dinâmica das citocinas inflamatórias produzidas.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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An experiment was conducted to evaluate the effects of two levels of the β-(1→3,1→6)-d-glucan (0 and 500ppm) from yeast Saccharomyces cerevisiae and two levels of energy (3300 and 3450kcalMEkg(-1)) on the hematological, immunological and, biochemical profiles of thirty-six 21-days-old weaned piglets, challenged with 150μgkg(-1) of BW lipopolysaccharide (LPS) from Escherichia coli serotype 055:B5. The experimental design was a randomized complete block design in a 2×2 factorial arrangement with nine replicates per treatment and, one animal per experimental unit. The data were analyzed in accordance with the multivariate analysis procedure of SAS and, the treatment means of parametric and non-parametric data were compared by Bonferroni's test (P<0.05) and, by Dunn's test (P<0.05), respectively. The data of the blood profiles of alanine aminotransferase, alkaline phosphatase and, creatinine showed that LPS did not cause kidney or liver damage in the animals. The addition of beta-glucan in the diets did not prove the robustness of its effect and biological relevance when provided with low nutrient-density. However, its addition combined with the high-nutrient-density diets showed less marked hypoglobulinemia in piglets, which may have contributed to the decreasing of the synthesis of inflammatory mediators.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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The ingestion of probiotic lactic acid bacteria has been evaluated and noted that it has an effect on the balance of desirable microbiota in the gastrointestinal tract. Lactobacillus gasseri demonstrates good survival in the gastrointestinal tract, and it has been associated with a variety of probiotic activities and roles, including the reduction of fecal mutagenic enzymes, the production of bacteriocins and the stimulation of macrophages immunomodulation. The aim of the study was to evaluate the effects of a pool of L. gasseri strains isolated from the feces of breastfed infants added in the human milk of healthy women. The milk was both pasteurized and unpasteurized, to verify the cell cytotoxicity of macrophages and to quantify the production of immunologic mediators such as IL-4, IL-6, IFN-g, TNF-a, NO and oxygen intermediary compounds (H2O2). The administration of raw human milk and pasteurized human milk to infants is a regular, encouraged practice in units of intensive therapy (UITs) and our present investigation verified the beneficial effect of addition of a pool of L. gasseri to pasteurized human milk (PHML). Our results show that probiotic supplementation helped to maintain cell viability, reduced IL-6 and IFN-γ production and stimulated TNF-α, NO, H2O2, IL-4 production. Nevertheless, the results indicate that the addition of lactobacillus to human milk was not a determinant in the production of TNF-α. L. gasseri added to breast milk did not present a cytotoxic risk, and the addition of L. gasseri to pasteurized milk of human milk bank would benefit newborns that depend on milk banks for the colonization of more desirable microbiota.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Lactic acid bacteria (LAB) are an attractive and safe alternative for the expression of heterologous proteins, as they are nonpathogenic and endotoxin-free organisms. Lactococcus lactis, the LAB model organism, has been extensively employed in the biotechnology field for large-scale production of heterologous proteins, and its use as a "cell factory" has been widely studied. We have been particularly interested in the use of L. lactis for production of heat shock proteins (HSPs), which reportedly play important roles in the initiation of innate and adaptive immune responses. However, this activity has been questioned, as LPS contamination appears to be responsible for most, if not all, immunostimulatory activity of HSPs. In order to study the effect of pure HSPs on the immune system, we constructed recombinant L. lactis strains able to produce and properly address the Mycobacterium leprae 65-kDa HSP (Hsp65) to the cytoplasm or to the extracellular medium, using a xylose-induced expression system. Approximately 7 mg/L recombinant Hsp65 was secreted. Degradation products related to lactococcal HtrA activity were not observed, and the Limulus amebocyte lysate assay demonstrated that the amount of LPS in the recombinant Hsp65 preparations was 10-100 times lower than the permitted levels established by the U. S. Food and Drug Administration. These new L. lactis strains will allow investigation of the effects of M. leprae Hsp65 without the interference of LPS; consequently, they have potential for a variety of biotechnological, medical and therapeutic applications.