990 resultados para células dendríticas


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The graft-versus-host disease is the major cause of morbidity and mortality in patients who have undergone hematopoietic stem cell transplantation. Aiming at contributing to the understanding of the role of myeloid and plasmacytoid dendritic cells, and natural killer cells in chronic graft-versus-host disease, we examined biopsies of jugal mucosa of 26 patients with acute myeloid leukemia who had undergone allogenic hematopoietic stem cell transplantation. Half of these patients developed oral chronic graft-versus-host disease. Microscopic sections were immunohistochemically stained for anti-CD1a, anti-CD123 and anti-CD56. We calculated the number of immunostained cells in the corium per square millimeter and applied the Mann-Whitney test. Results showed a statistically significant increase of myeloid dendritic cells (CD1a+; p=0,02) and natural killer cells (CD56; p=0,04) in patients with oral chronic graft-versus-host disease. CD123 immunostaining showed no statistical difference between groups. It was concluded that myeloid dendritic cells and natural killer cells participate in the development of oral chronic graft-versus-host disease.

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Activation of the platelet-activating factor receptor (PAFR) in macrophages is associated with suppressor phenotype. Here, we investigated the PAFR in murine dendritic cells (DC). Bone marrow-derived dendritic cells (BALB/c) were cultured with GM-CSF and maturation was induced by LPS. The PAFR antagonists (WEB2086, WEB2170, PCA4248) and the prostaglandin (PG) synthesis inhibitors (indomethacin, nimesulide and NS-398) were added before LPS. Mature and immature DCs expressed PAFR. LPS increased MHCII, CD40, CD80, CD86, CCR7 and induced IL-10, IL-12, COX-2 and PGE2 expression. IL-10, COX-2 and PGE2 levels were reduced by PAFR antagonists and increased by cPAF. The IL-10 production was independent of PGs. Mature DCs induced antigen-specific lymphocyte proliferation. PAFR antagonists or PG-synthesis inhibitors significantly increased lymphocyte proliferation. It is proposed that PAF has a central role in regulatory DC differentiation through potentiation of IL-10 and PGE2 production.

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Exosomes (Exos) are secreted nanovesicles that contain membrane proteins and genetic material, which can be transferred between cells and contribute to their communication in the body. We show that Exos, obtained from mature human dendritic cells (DCs), are incorporated by tumour cells, which after Exos treatment, acquire the expression of HLA‐class I, HLA‐class II, CD86, CD11c, CD54 and CD18. This incorporation reaches its peak eight hours after treatment, can be observed in different cell tumour lines (SK‐BR‐3, U87 and K562) and could be a means to transform non‐immunogenic into immunogenic tumour cells. Interestingly, tetraspanins, which are expressed by the tumour cells, have their surface level decreased after Exo treatment. Furthermore, the intensity of Exo incorporation by the different tumour cell lines was proportional to their CD9 expression levels and pretreatment of Exos with anti‐CD9 decreased their incorporation (by SK‐BR‐3 cells). This modification of tumour cells by DC‐derived Exos may allow their use in new immunotherapeutic approaches to cancer. Furthermore, by showing the involvement of CD9 in this incorporation, we provide a possible selection criterion for tumours to be addressed by this strategy

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NLRP3-inflammasome activation was evaluated in monocyte-derived dendritic cells (DC) obtained through IL-4 (IL4-DC) or IFN-α (IFN-DC) protocols and pulsed with chemically inactivated HIV-1. Inflammasome' genes expression and IL-1β secretion were compared in DC isolated from 15 healthy subjects (HC) and 10 HIV-1 infected individuals (HIV+). FINDINGS: Whether HIV was able to increased NLRP3-inflammasome genes expression and IL-1β secretion in IL4-DC from HC, the induction of inflammasome appeared significantly reduced in IFN-DC from HC, suggesting a different responsive state of IFN-DC compared to IL4-DC. No inflammasome activation was observed in IL4-DC as well as in IFN-DC derived from HIV + subjects, confirming previous findings on "unresponsive" state of DC derived from HIV + possibly due to chronic inflammatory state of these individuals. CONCLUSIONS: Our results showed that IFN-α differently modulates inflammasome expression during monocytes-DC in vitro differentiation. These findings could be of interest considering the on-going research about DC manipulation and therapeutic strategies for HIV + involving DC-based immune-vaccines.

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We describe the interactions between monocyte-derived DCs, in different stages of maturation, with allogeneic T lymphocytes in a 3D system. Maturation of DCs increased their interaction time with T lymphocytes from 43 to 138 minutes. The average motility of T lymphocytes interacting or not with DCs was also affected, varying from 0.21μm-0.37μm/minute to 0.36μm- 0.52μm/minute. These data indicate that this 3D BiotekTM scaffold enables interactions between lymphocytes and DCs at different stages of maturation and may be useful for the characterization of these interactions, the cellular subtypes and patterns of response induced.

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BACKGROUND: Saliva is a key element of interaction between hematophagous mosquitoes and their vertebrate hosts. In addition to allowing a successful blood meal by neutralizing or delaying hemostatic responses, the salivary cocktail is also able to modulate the effector mechanisms of host immune responses facilitating, in turn, the transmission of several types of microorganisms. Understanding how the mosquito uses its salivary components to circumvent host immunity might help to clarify the mechanisms of transmission of such pathogens and disease establishment. METHODS: Flow cytometry was used to evaluate if increasing concentrations of A. aegypti salivary gland extract (SGE) affects bone marrow-derived DC differentiation and maturation. Lymphocyte proliferation in the presence of SGE was estimated by a colorimetric assay. Western blot and Annexin V staining assays were used to assess apoptosis in these cells. Naïve and memory cells from mosquito-bite exposed mice or OVA-immunized mice and their respective controls were analyzed by flow cytometry. RESULTS: Concentration-response curves were employed to evaluate A. aegypti SGE effects on DC and lymphocyte biology. DCs differentiation from bone marrow precursors, their maturation and function were not directly affected by A. aegypti SGE (concentrations ranging from 2.5 to 40 μg/mL). On the other hand, lymphocytes were very sensitive to the salivary components and died in the presence of A. aegypti SGE, even at concentrations as low as 0.1 μg/mL. In addition, A. aegypti SGE was shown to induce apoptosis in all lymphocyte populations evaluated (CD4+ and CD8+ T cells, and B cells) through a mechanism involving caspase-3 and caspase-8, but not Bim. By using different approaches to generate memory cells, we were able to verify that these cells are resistant to SGE effects. CONCLUSION: Our results show that lymphocytes, and not DCs, are the primary target of A. aegypti salivary components. In the presence of A. aegypti SGE, naïve lymphocyte populations die by apoptosis in a caspase-3- and caspase-8-dependent pathway, while memory cells are selectively more resistant to its effects. The present work contributes to elucidate the activities of A. aegypti salivary molecules on the antigen presenting cell-lymphocyte axis and in the biology of these cells.

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Components of high molecular-weight (PI) obtained from Ascaris suum extract down-regulate the Th1/Th2-related immune responses induced by ovalbumin (OVA)-immunization in mice. Furthermore, the PI down-modulates the ability of dendritic cells (DCs) to activate T lymphocytes by an IL-10-mediated mechanism. Here, we evaluated the role of toll like receptors 2 and 4 (TLR2 and 4) in the modulatory effect of PI on OVA-specific immune response and the PI interference on DC full activation. An inhibition of OVA-specific cellular and humoral responses were observed in wild type (WT) or in deficient in TLR2 (TLR2(-/-)) or 4 (TLR4(-/-)) mice immunized with OVA plus PI when compared with OVA-immunized mice. Low expression of class II MHC, CD40, CD80 and CD86 molecules was observed in lymph node (LN) cells from WT, TLR2(-/-) or TLR4(-/-) mice immunized with OVA plus PI compared with OVA-primed cells. We also verified that PI was able to modulate the activation of DCs derived from bone marrow of WT, TLR2(-/-) or TLR4(-/-) mice induced in vitro by agonists of TLRs, as observed by a decreased expression of class II MHC and costimulatory molecules and by low secretion of pro-inflammatory cytokines. Its effect was accompanied by IL-10 synthesis. In this sense, the modulatory effect of PI on specific-immune response and DC activation is independent of TLR2 or TLR4.

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OBJETIVOS El objetivo principal de esta tesis doctoral consiste en determinar la presencia de la proteína HLA-G en la superficie celular de células madre CD34/CD133, células dendríticas mieloides y plasmacitoides, células dendríticas derivadas de células CD34/CD133 y derivadas de monocitos de sangre de cordón umbilical y sangre periférica materna, por técnicas de citometría de flujo y la expresión de la proteína HLA-G soluble en plasma de sangre de cordón umbilical por técnicas de ELISA. MATERIALES Y METODOS Se obtuvo un total de 35 unidades de sangre de cordón umbilical y 35 muestras de sangre periférica de gestantes a término que acudieron al Servicio de Ginecología y Obstetricia del Hospital Clínico Universitario San Carlos con cesáreas programadas, según aprobación de Comité Ético. Se realizaron técnicas de cultivo celular, citometría de flujo, Elisa y anticuerpos monoclonales, según protocolo, para la obtención de las células madre CD34+, células dendríticas mieloides y plasmacitoides del cordón umbilical y células dendríticas derivadas de células madre CD34+, y determinación de la molécula HLA-G, isoformas, nuevos alelos y polimorfismos...

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La mucosa oral ha desarrollado un Sistema inmune único y distinto desde los primeros pasos de vida extrauterina, profundamente inmerso en un entorno nuevo y cambiante. En ese momento se produce la delección de células T autorreactivas en el timo. Se crean células nuevas, llamadas células tolerogénicas o Tregs. Con el fin de evitar la autoinmunidad y la inflamación crónica, moléculas coestimuladoras, interleucinas, factores transformantes y células dendríticas, son marcadores ayudadores a analizar. Actualmente se reconoce la cavidad oral como una región de tolerancia inmunológica. Hoy en día existen muchas definiciones de Pérdida de Tolerancia Inmune, las cuales son consultadas en esta presentación. Han sido seleccionadas las más relevantes, con el fin de asociar y explicar los tres problemas más cruciales de este proceso patológico: las úlceras aftosas recidivantes o RAU. Ellos son: dolor, vulnerabilidad y recurrencia.

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Dissertação para obtenção do grau de Mestre no Instituto Superior de Ciências da Saúde Egas Moniz

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Dissertação de Mestrado, Oncobiologia: Mecanismos Moleculares do Cancro, Departamento de Ciências Biomédicas e Medicina, Universidade do Algarve, 2015

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La Organización Mundial de la Salud declaro que el cáncer es una de las principales causas de muerte en el mundo, para el 2012 se presentó un total de 8.2 millones de defunciones. A pesar de la gran cantidad de recursos invertidos en investigación, la tasa de mortalidad no ha sido disminuida, por lo tanto es necesario el desarrollo de nuevas terapias efectivas contra el cáncer. Desde sus inicios, en el campo de la inmunoterapia se han realizado numerosos ensayos en humanos con cáncer y en modelos animales, obteniendo algunos casos de regresión tumoral completa. En el presente trabajo se evaluó el efecto de la terapia autóloga en perros inoculados experimentalmente con Tumor Venéreo Transmisible (TVT). Se inoculó12 hembras de raza mixta con TVT (1x108 células) intragenital, una vez que el tumor alcanzo un volumen de 10cm 3 , se colectó una biopsia con la cual se extrajo el antígeno tumoral total (300 µg/mL) el cual fue agregado (30µg/mL) en cultivos de células dendríticas inmaduras. Linfocitos totales obtenidos del mismo paciente y CPAs (CD80+ 80.3%, CD83+ 76.4%, DLA II 86.5%) cargadas con antígeno tumoral fueron co-cultivados en presencia de estímulos con IL-21 (50ng/mL) o IL-2 (20ng/mL), posterior a la activación de los linfocitos (746.88 pg/mL IFNȖ), las células T CD8+ específicos de tumor fueron separadas por selección negativa (Dynabeads Untouched) con un 82.6% de pureza para finalmente ser expandidas con OKT3. Se llevó a cabo un ensayo de in vitro de la citotoxicidad de los Linfocitos T CD8+ específicos de tumor contra las células de TVT, obteniendo 100% de lisis de la célula tumoral cultivada en presencia de linfocitos CD8+ específicos de tumor estimulados con IL-21 y un 90% de citotoxicidad tumoral cuando los CD8+ fueron específicos pero estimulados con IL-2, cuando los CD8+ no fueron específicos de tumor el porcentaje de citotoxicidad fue muy poco (10%). In vivo el grupo 1 fue tratado con terapia autóloga, linfocitos T CD8+ (5x107 célulaspor ciclo) específicos de tumor estimulados con IL-21 y aplicados en 3 ciclos en intervalos de 2 semanas. Como grupos control se utilizaron perros con tumor sin tratamiento (grupo 2), perros con tumor tratados con suero glucosado (grupo 3) y perros con tumor tratados con transfusión sanguínea autóloga (grupo 4). Después de la terapia autóloga la inmunidad celular (CD4+ y CD8+ ) e IFNȖ fue incrementada observando regresión tumoral en los perros del grupo 1. Estos resultados indican que la terapia autóloga es eficaz en la destrucción del TVT.

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Resumen: Las células madre tienen dos características naturales únicas, que son su capacidad de división celular indefinida, y de regeneración y reparación de tejidos. Esto genera un gran interés en las áreas de investigación y tratamiento de enfermedades que aún no tienen cura y son motivadoras de una importante fuente de esperanza para los pacientes. Surge, entonces, el dilema ético de definir cuáles serán los recursos para obtenerlas, procesarlas y determinar la seguridad y eficacia de su uso en la aplicación clínica. Un enfoque personalista ontológico considerará la protección de todos los participantes en los procesos de investigación: los donantes de células, los participantes de la investigación y los pacientes que serán beneficiarios de estos tratamientos, de manera de proteger a todos los involucrados sin exponer a riesgos a unos para salvar a otros.

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Declaración pública del Instituto de Bioética. Facultad de Ciencias Médicas. Pontificia Universidad Católica Argentina. Ciudad de Buenos Aires, martes 10 de marzo de 2009.