24 research outputs found

    Operação cappuccino: os galegos, os cromos, os saldos, as vitaminas e os bacocos!...

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    Já vem sendo sina, de há uns anos a esta parte! É o que dá quando a palavra avião nos faz disparar a adrenalina! É o que dá fugir dele como o diabo da cruz!... É o que dá quando se recorre ao andante de quatro rodas... Nem sempre se vai para onde se deseja! Mas, entre ficar em casa e ir laurear a pevide, ou, simplesmente para o banho de cultura anual, mil vezes a segunda… Este ano voltámos a tripartir o périplo

    Co-Stimulation of PAFR and CD36 Is Required for oxLDL-Induced Human Macrophages Activation

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    The oxidative process of LDL particles generates molecules which are structurally similar to platelet-activating factor (PAF), and some effects of oxidized LDL (oxLDL) have been shown to be dependent on PAF receptor (PAFR) activation. In a previous study, we showed that PAFR is required for upregulation of CD36 and oxLDL uptake. In the present study we analyzed the molecular mechanisms activated by oxLDL in human macrophages and the contribution of PAFR to this response. Human adherent monocytes/macrophages were stimulated with oxLDL. Uptake of oxLDL and CD36 expression were determined by flow cytometry; MAP kinases and Akt phosphorylation by Western blot; IL-8 and MCP-1 concentration by ELISA and mRNA expression by real-time PCR. To investigate the participation of the PI3K/Akt pathway, Gαi-coupled protein or PAFR, macrophages were treated with LY294002, pertussis toxin or with the PAFR antagonists WEB2170 and CV3988, respectively before addition of oxLDL. It was found that the addition of oxLDL to human monocytes/macrophages activates the PI3K/Akt pathway which in turn activates the MAPK (p38 and JNK). Phosphorylation of Akt requires the engagement of PAFR and a Gαi-coupled protein. The upregulation of CD36 protein and the uptake of oxLDL as well as the IL-8 production are dependent on PI3K/Akt pathway activation. The increased CD36 protein expression is dependent on PAFR and Gαi-coupled protein. Transfection studies using HEK 293t cells showed that oxLDL uptake occurs with either PAFR or CD36, but IL-8 production requires the co-transfection of both PAFR and CD36. These findings show that PAFR has a pivotal role in macrophages response to oxLDL and suggest that pharmacological intervention at the level of PAFR activation might be beneficial in atherosclerosis

    Crime e Castigo: "Pecados Públicos" e Disciplinamento Social na Diocese de Viseu (1684-1689)

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    Entre 1684 e 1689 o Tribunal Episcopal da diocese Viseu, cuja presidência cabia ao então bispo D. Ricardo Russel, sentenciou 122 réus, entre leigos e eclesiásticos, julgados maioritariamente por delitos de natureza moral e práticas sexuais consideradas ilícitas. Pretende-se com este estudo dar a conhecer o Auditório Eclesiástico - uma das instituições mais marcantes do poder episcopal pós-tridentino - perscrutando o seu modelo de funcionamento e de actuação, e aferindo qual o impacto que pode ter tido na vigilância e disciplinamento da população da diocese

    Platelet-activating Factor-receptor agonists generated by chemotherapy thwart host anti-tumor immunity

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    poster abstractPrevious studies have established that pro-oxidative stressors suppress host immunity due to their ability to generate oxidized glycerophosphocholine (Ox-GPC) lipids with Platelet-activating Factor-receptor (PAF-R) agonist activity. Because many chemotherapeutic agents also induce reactive oxygen species, the present studies were designed to define if chemotherapeutic agents could thwart host anti-tumor immunity against melanoma via PAF-R activation. We demonstrate that treatment of melanoma cell lines in vitro and tumors in vivo with chemotherapeutic agents generates PAF-R-agonists in a process blocked by antioxidants, indicating the involvement of non-enzymatic PAF-R-agonists in this event. In a model system consisting of implantation of two tumors, we show that intratumoral chemotherapy with melphalan or etoposide of one tumor significantly augments the growth of the other (untreated) tumor in wild-type but not PAF-R-deficient hosts. Chemotherapeutic agents-mediated PAF-R-dependent increased tumor growth is blocked by systemic administration of antioxidants and cyclooxygenase-2 inhibitors. In addition, depleting antibodies against regulatory T cells (Tregs) significantly attenuated chemotherapy-mediated growth of untreated tumors, suggesting the role of Tregs in this process. Moreover, using FoxP3EGFP transgenic mice, we show that COX-2 inhibitor blocked intratumoral Tregs, indicating that Tregs are downstream to COX-2. Furthermore, PAF-R agonists were identified in perfusates of patients undergoing isolated limb chemoperfusion for melanoma with melphalan chemotherapy. Finally, various novel Ox-GPCs are identified after chemotherapy by mass spectrometry. These findings provide evidence for a novel and previously unappreciated pathway by which Ox-GPC PAF-R agonists produced as a by-product of chemotherapy modulate tumor growth via the inhibition of anti-tumor immunity. These studies might explain some instances of chemotherapy treatment failure and offer insights into potential therapeutic strategies that could enhance the overall anti-tumor effectiveness of chemotherapy

    Chemotherapeutic agents subvert tumor immunity by generating agonists of platelet-activating factor

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    Oxidative stress suppresses host immunity by generating oxidized lipid agonists of the platelet-activating factor receptor (PAF-R). Because many classical chemotherapeutic drugs induce reactive oxygen species (ROS), we investigated whether these drugs might subvert host immunity by activating PAF-R. Here, we show that PAF-R agonists are produced in melanoma cells by chemotherapy that is administered in vitro, in vivo, or in human subjects. Structural characterization of the PAF-R agonists induced revealed multiple oxidized glycerophosphocholines that are generated nonenzymatically. In a murine model of melanoma, chemotherapeutic administration could augment tumor growth by a PAF-R-dependent process that could be blocked by treatment with antioxidants or COX-2 inhibitors or by depletion of regulatory T cells. Our findings reveal how PAF-R agonists induced by chemotherapy treatment can promote treatment failure. Furthermore, they offer new insights into how to improve the efficacy of chemotherapy by blocking its heretofore unknown impact on PAF-R activation

    Uptake of oxLDL and IL-10 production by macrophages requires PAFR and CD36 recruitment into the same lipid rafts

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    Macrophage interaction with oxidized low-density lipoprotein (oxLDL) leads to its differentiation into foam cells and cytokine production, contributing to atherosclerosis development. In a previous study, we showed that CD36 and the receptor for platelet-activating factor (PAFR) are required for oxLDL to activate gene transcription for cytokines and CD36. Here, we investigated the localization and physical interaction of CD36 and PAFR in macrophages stimulated with oxLDL. We found that blocking CD36 or PAFR decreases oxLDL uptake and IL-10 production. OxLDL induces IL-10 mRNA expression only in HEK293T expressing both receptors (PAFR and CD36). OxLDL does not induce IL-12 production. The lipid rafts disruption by treatment with βCD reduces the oxLDL uptake and IL-10 production. OxLDL induces co-immunoprecipitation of PAFR and CD36 with the constitutive raft protein flotillin-1, and colocalization with the lipid raft-marker GM1-ganglioside. Finally, we found colocalization of PAFR and CD36 in macrophages from human atherosclerotic plaques. Our results show that oxLDL induces the recruitment of PAFR and CD36 into the same lipid rafts, which is important for oxLDL uptake and IL-10 production. This study provided new insights into how oxLDL interact with macrophages and contributing to atherosclerosis development

    Role of leukotrienes in phagocytosis via FcgR by alveolar macrophages from healthy and diabetic rats.

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    Avaliamos o papel dos leucotrienos (LTs), as vias de sinalização e o efeito da insulina na fagocitose via FcgR por macrófagos alveolares (MAs) de ratos sadios (RS) e diabéticos (RD). Vimos que a) MAs de RD fagocitam menos que os de RS; b) a fagocitose é dependente de LTs endógenos em RS mas não em RD; c) a adição de LTB4 ou LTD4 aos MAs em cultura aumenta a fagocitose em RS e RD; d) MAs de RS e RD produzem quantidades equivalentes de LTB4 e LTC4; e) a adição de insulina aos MAs aumenta a capacidade fagocitica em ambos os grupos; f) em RS, a fagocitose via FcgR induz fosforilação de Akt e PKC-d, que é amplificada por LTs endógenos, enquanto que em RD ocorreu fosforilação somente da PKC-d. A foforilação de Akt e PKC-d amplificada por LTs produzidos sob estímulo do FcgR em MAs de RS parece ser, de alguma forma, dependente da ação da insulina, pois MAs provenientes de RD fagocitam menos, a fagocitose não é dependente de LTs endógenos e o estímulo via FcgR não é capaz de ativar a Akt.We evaluated the role of leukotrienes (LTs), the signaling pathways and the effect of insulin in phagocytosis via FcgR by alveolar macrophages (AMs) from healthy (HR) and diabetic (DR) rats. The results showed that: a) AMs from DR showed lower phagocytic capacity than AMs from healthy rats; b) the phagocytosis was dependent of endogenous LTs in AMs from HR but not DR; c) addition of LTB4 and LTD4 to cultures enhanced the phagocytosis by AMs from HR and DR; d) AMs from HR and DR rats produced similar levels of LTB4 and LTC4; e) addition of insulin to AMs enhanced the phagocytic capacity in HR and DR; f) in HR, the phagocytosis via FcgR induced Akt and PKC-d phosphorylation, which is amplified by endogenous LTs, whereas in DR, only PKC-d was phosphorylated. The phosphorylation of Akt and PKC-d, amplified by LTs produced under FcgR engagement in AMs from HR, seems to be, in a way, dependent of insulin action, because AMs from DR have lower phagocytic capacity, the phagocytosis is not dependent of endogenous LTs and the FcgR engagement is not capable to activate Akt

    Participation of PAF-R in the phagocytosis of apoptotic cells, in macrophage phenotype and in the immunosuppression caused by photodynamic therapy.

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    Macrófagos (Mf) produzem PAF e PAF-R e eliminam partículas alteradas via CD36. Uptake de oxLDL requer associação CD36/PAF-R. Avaliamos isto na eferocitose. Bloqueio do PAF-R e de lipid rafts (LR) inibiu eferocitose. Esta induziu associação PAF-R/CD36 e destes com flotilina-1 (marca LR). Eferocitose induziu IL-10 e IL-12p40. Bloqueio do PAF-R inibiu mais IL-10 e inibição da COX-2 teve efeito similar, sugerindo que eferocitose depende da interação PAF-R/CD36 em LR e que isto induz prostanoides e perfil regulador. Mf adquirirem diferentes fenótipos. Estudamos a participação do PAF-R. Bloqueio do PAF-R antes dos estímulos (IFN-g/LPS, IL-4 ou IgG-SRBC/LPS) inibiu marcadores MCP-1, TNF-a, iNOS, receptor manose, arginase-1 e IL-10, mas não IL-12p40, sugerindo que PAF-R modula fenótipo de Mf. PAF e PAF-like são gerados por estressores oxidativos. Ativação do PAF-R induz imunossupressão sistêmica (IS). Mostramos que terapia fotodinâmica (PDT) in vitro gerou ligantes do PAF-R e in vivo inibiu reação de CHS em WT, mas não em PAF-R KO, sugerindo que PDT induz IS via PAF-R.Macrophages (Mp) produce PAF and PAF-R and scavenge altered particles via CD36. oxLDL uptake requires association CD36/PAF-R. We analyzed that on efferocytosis. PAF-R and lipid rafts (LR) blockage inhibited efferocytosis. Efferocytosis induced association CD36/PAF-R and both with LR marker protein, and induced IL-10 and IL-12p40. PAF-R and COX-2 blockage inhibited more IL-10, suggesting that efferocytosis depends on PAF-R/CD36 interaction in LR and that this induces prostanoids and regulatory profile. Mp acquire different phenotypes. PAF-R participation in that was analyzed. PAF-R blockage before stimuli (IFN-g/LPS, IL-4 or IgG-SRBC/LPS) inhibited markers MCP-1, TNF-a, iNOS, mannose receptor, arginase-1 and IL-10, but not IL-12p40, suggesting that PAF-R modulates Mp phenotype. PAF and PAF-like are generated by oxidative stressors. PAF-R activation induces systemic immunosuppression (SI). We showed that photodynamic therapy (PDT) in vitro generated PAF-R ligands and in vivo inhibited CHS reaction in WT, but not PAF-R KO, suggesting that PDT induces SI via PAF-R

    Systemic Chemotherapy Is Modulated by Platelet-Activating Factor-Receptor Agonists

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    Chemotherapy is used to treat numerous cancers including melanoma. However, its effectiveness in clinical settings is often hampered by various mechanisms. Previous studies have demonstrated that prooxidative stressor-mediated generation of oxidized lipids with platelet-activating factor-receptor (PAF-R) agonistic activity induces systemic immunosuppression that augments the growth of experimental melanoma tumors. We have recently shown that treatment of murine B16F10 melanoma cells in vitro or tumors implanted into syngeneic mice and treated intratumorally with various chemotherapeutic agents generated PAF-R agonists in a process blocked by antioxidants. Notably, these intratumoral chemotherapy-generated PAF-R agonists augmented the growth of secondary (untreated) tumors in a PAF-R dependent manner. As both localized and systemic chemotherapies are used based on tumor localization/stage and metastases, the current studies were sought to determine effects of PAF-R agonists on systemic chemotherapy against experimental melanoma. Here, we show that systemic chemotherapy with etoposide (ETOP) attenuates the growth of melanoma tumors when given subsequent to the tumor cell implantation. Importantly, this ETOP-mediated suppression of melanoma tumor growth was blocked by exogenous administration of a PAF-R agonist, CPAF. These findings indicate that PAF-R agonists not only negatively affect the ability of localized chemotherapy but also compromise the efficacy of systemic chemotherapy against murine melanoma
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