946 resultados para KNOCKOUT MICE
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Cell adhesion and extracellular matrix (ECM) molecules play a significant role in neuronal plasticity both during development and in the adult. Plastic changes in which ECM components are implicated may underlie important nervous system functions, such as memory formation and learning. Heparin-binding growthassociated molecule (HB-GAM, also known as pleiotrophin), is an ECM protein involved in neurite outgrowth, axonal guidance and synaptogenesis during perinatal period. In the adult brain HB-GAM expression is restricted to the regions which display pronounced synaptic plasticity (e.g., hippocampal CA3-CA1 areas, cerebral cortex laminae II-IV, olfactory bulb). Expression of HB-GAM is regulated in an activity-dependent manner and is also induced in response to neuronal injury. In this work mutant mice were used to study the in vivo function of HB-GAM and its receptor syndecan-3 in hippocampal synaptic plasticity and in hippocampus-dependent behavioral tasks. Phenotypic analysis of HBGAM null mutants and mice overexpressing HB-GAM revealed that opposite genetic manipulations result in reverse changes in synaptic plasticity as well as behavior in the mutants. Electrophysiological recordings showed that mice lacking HB-GAM have an increased level of long-term potentiation (LTP) in the area CA1 of hippocampus and impaired spatial learning, whereas animals with enhanced level of HB-GAM expression have attenuated LTP, but outperformed their wild-type controls in spatial learning. It was also found that GABA(A) receptor-mediated synaptic transmission is altered in the transgenic mice overexpressing HB-GAM. The results suggest that these animals have accentuated hippocampal GABAergic inhibition, which may contribute to the altered glutamatergic synaptic plasticity. Structural studies of HB-GAM demonstrated that this protein belongs to the thrombospondin type I repeat (TSR) superfamily and contains two β-sheet domains connected by a flexible linker. It was found that didomain structure is necessary for biological activity of HB-GAM and electrophysiological phenotype displayed by the HB-GAM mutants. The individual domains displayed weaker binding to heparan sulfate and failed to promote neurite outgrowth as well as affect hippocampal LTP. Effects of HB-GAM on hippocampal synaptic plasticity are believed to be mediated by one of its (co-)receptor molecules, namely syndecan-3. In support of that, HB-GAM did not attenuate LTP in mice deficient in syndecan-3 as it did in wild-type controls. In addition, syndecan-3 knockout mice displayed electrophysiological and behavioral phenotype similar to that of HB-GAM knockouts (i.e. enhanced LTP and impaired learning in Morris water-maze). Thus HB-GAM and syndecan-3 are important modulators of synaptic plasticity in hippocampus and play a role in regulation of learning-related behavior.
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PATHOGENIC MECHANISMS OF PLOSL Polycystic lipomembranous osteodysplasia with sclerosing leukoencephalopathy (PLOSL), also known as Nasu-Hakola disease, is a recessively inherited disease of brain and bone. PLOSL manifests as early-onset progressive dementia and bone fractures. Mutations in the TYROBP (DAP12) and TREM2 genes have been identified as the primary cause of PLOSL. DAP12 and TREM2 encode important signalling molecules in cells of the innate immune system. The mechanism by which loss-of-function of the DAP12/TREM2 signalling complex leads to PLOSL is currently unknown. The aim of this thesis work was to gain insight into the pathogenic mechanisms behind PLOSL. To first identify the central nervous system (CNS) cell types that express both Dap12 and Trem2, the expression patterns of Dap12 and Trem2 in mouse CNS were analyzed. Dap12 and Trem2 expression was seen from embryonic stage to adulthood and microglial cells and oligodendrocytes were identified as the major Dap12/Trem2 producing cells of the CNS. To subsequently identify the pathways and biological processes associated with DAP12/TREM2 mediated signalling in human cells, genome wide transcript analysis of in vitro differentiated dendritic cells (DCs) of PLOSL patients representing functional knockouts of either DAP12 or TREM2 was performed. Both DAP12 and TREM2 deficient cells differentiated into DCs and responded to pathogenic stimuli. However, the DCs showed morphological differences compared to control cells due to defects in the actin filaments. Transcript profiles of the patient DCs showed differential expression of genes involved in immune response and for genes earlier associated with other disorders of the CNS as well as genes involved in the remodeling of bone, linking the findings with the tissue phenotype of PLOSL patients. To analyze the effect of Dap12 deficiency in the CNS, genome wide expression analysis of Dap12 deficient mouse brain and Dap12 deficient microglia as well as functional analysis of Dap12 deficient microglia was performed. Regulation of several pathways involved in synaptic function and transcripts coding for the myelin components was seen in Dap12 knockout mice. Decreased migration, morphological changes and shortened lifespan of the Dap12 knockout microglia was further observed. Taken together, this thesis work showed that both Dap12 and Trem2 are expressed by CNS microglia and that Dap12 deficiency results in functional defects of these cells. Lack of Dap12 in the CNS also leads to synaptic abnormalities even before pathological changes are seen in the tissue level.This work further showed that loss-of-function of DAP12 or TREM2 leads to changes in morphology and gene expression in human dendritic cells. These data underline the functional diversity of the molecules of the innate immune system and implies their significant contribution also in demyelinating CNS disorders, including those resulting in dementia.
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Keratinocytes expressing tumor or viral antigens can be eliminated by antigen-primed CD8 cytotoxic T cells. CD4 T-helper cells help induction of CD8 cytotoxic T cells from naive precursors and generation of CD8 T-cell memory. In this study, we show, unexpectedly, that CD4 cells are also required to assist primed CD8 effector T cells in rejection of skin expressing human growth hormone, a neo-self-antigen, in keratinocytes. The requirement for CD4 cells can be substituted by CD40 costimulation. Rejection of skin expressing ovalbumin (OVA), a non-self-antigen, by primed CD8 cytotoxic T cells can in contrast occur without help from antigen-specific CD4 T cells. However, rejection of OVA expressing keratinocytes is helped by antigen-specific CD4 T cells if only low numbers of primed or naive OVA-specific CD8 T cells are available. Effective immunotherapy directed at antigens expressed in squamous cancer may therefore be facilitated by induction of tumor antigen-specific CD4 helper T cells, as well as cytotoxic CD8 T cells.
A combination of local inflammation and central memory T cells potentiates immunotherapy in the skin
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Adoptive T cell therapy uses the specificity of the adaptive immune system to target cancer and virally infected cells. Yet the mechanism and means by which to enhance T cell function are incompletely described, especially in the skin. In this study, we use a murine model of immunotherapy to optimize cell-mediated immunity in the skin. We show that in vitro - derived central but not effector memory-like T cells bring about rapid regression of skin-expressing cognate Ag as a transgene in keratinocytes. Local inflammation induced by the TLR7 receptor agonist imiquimod subtly yet reproducibly decreases time to skin graft rejection elicited by central but not effector memory T cells in an immunodeficient mouse model. Local CCL4, a chemokine liberated by TLR7 agonism, similarly enhances central memory T cell function. In this model, IL-2 facilitates the development in vivo of effector function from central memory but not effector memory T cells. In a model of T cell tolerogenesis, we further show that adoptively transferred central but not effector memory T cells can give rise to successful cutaneous immunity, which is dependent on a local inflammatory cue in the target tissue at the time of adoptive T cell transfer. Thus, adoptive T cell therapy efficacy can be enhanced if CD8+ T cells with a central memory T cell phenotype are transferred, and IL-2 is present with contemporaneous local inflammation. Copyright © 2012 by The American Association of Immunologists, Inc.
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The granule exocytosis cytotoxicity pathway is the major molecular mechanism for cytotoxic T lymphocyte (CTL) and natural killer (NK) cytotoxicity, but the question of how these cytotoxic lymphocytes avoid self-destruction after secreting perforin has remained unresolved. We show that CTL and NK cells die within a few hours if they are triggered to degranulate in the presence of nontoxic thiol cathepsin protease inhibitors. The potent activity of the impermeant, highly cathepsin B-specific membrane inhibitors CA074 and NS-196 strongly implicates extracellular cathepsin B. CTL suicide in the presence of cathepsin inhibitors requires the granule exocytosis cytotoxicity pathway, as it is normal with CTLs from gld mice, but does not occur in CTLs from perforin knockout mice. Flow cytometry shows that CTLs express low to undetectable levels of cathepsin B on their surface before degranulation, with a substantial rapid increase after T cell receptor triggering. Surface cathepsin B eluted from live CTL after degranulation by calcium chelation is the single chain processed form of active cathepsin B. Degranulated CTLs are surface biotinylated by the cathepsin B-specific affinity reagent NS-196, which exclusively labels immunoreactive cathepsin B. These experiments support a model in which granule-derived surface cathepsin B provides self-protection for degranulating cytotoxic lymphocytes.
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Usher syndrome (USH) is an inherited blindness and deafness disorder with variable vestibular dysfunction. The syndrome is divided into three subtypes according to the progression and severity of clinical symptoms. The gene mutated in Usher syndrome type 3 (USH3), clarin 1 (CLRN1), was identified in Finland in 2001 and two mutations were identified in Finnish patients at that time. Prior to this thesis study, the two CLRN1 gene mutations were the only USH mutations identified in Finnish USH patients. To further clarify the Finnish USH mutation spectrum, all nine USH genes were studied. Seven mutations were identified: one was a previously known mutation in CLRN1, four were novel mutations in myosin VIIa (MYO7A) and two were a novel and a previously known mutation in usherin (USH2A). Another aim of this thesis research was to further study the structure and function of the CLRN1 gene, and to clarify the effects of mutations on protein function. The search for new splice variants resulted in the identification of eight novel splice variants in addition to the three splice variants that were already known prior to this study. Studies of the possible promoter regions for these splice variants showed the most active region included the 1000 bases upstream of the translation start site in the first exon of the main three exon splice variant. The 232 aa CLRN1 protein encoded by the main (three-exon) splice variant was transported to the plasma membrane when expressed in cultured cells. Western blot studies suggested that CLRN1 forms dimers and multimers. The CLRN1 mutant proteins studied were retained in the endoplasmic reticulum (ER) and some of the USH3 mutations caused CLRN1 to be unstable. During this study, two novel CLRN1 sequence alterations were identified and their pathogenicity was studied with cell culture protein expression. Previous studies with mice had shown that Clrn1 is expressed in mouse cochlear hair cells and spiral ganglion cells, but the expression profile in mouse retina remained unknown. The Clrn1 knockout mice display cochlear cell disruption/death, but do not have a retinal phenotype. The zebrafish, Danio rerio, clrn1 was found to be expressed in hair cells associated with hearing and balance. Clrn1 expression was also found in the inner nuclear layer (INL), photoreceptor layer and retinal pigment epithelium layer (RPE) of the zebrafish retina. When Clrn1 production was knocked down with injected morpholino oligonucleotides (MO) targeting Clrn1 translation or correct splicing, the zebrafish larvae showed symptoms similar to USH3 patients. These larvae had balance/hearing problems and reduced response to visual stimuli. The knowledge this thesis research has provided about the mutations in USH genes and the Finnish USH mutation spectrum are important in USH patient diagnostics. The extended information about the structure and function of CLRN1 is a step further in exploring USH3 pathogenesis caused by mutated CLRN1 as well as a step in finding a cure for the disease.
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Parkinson´s Disease (PD) is a neurodegenerative movement disorder resulting from loss of dopaminergic (DA) neurons in substantia nigra (SN). Possible causative treatment strategies for PD include neurotrophic factors, which protect and in some cases restore the function of dopaminergic neurons. Glial cell line-derived neurotrophic factor (GDNF) family of neurotrophic factors have been to date the most promising candidates for treatment of PD, demonstrating both neuroprotective and neurorestorative properties. We have investigated the role of GDNF in the rodent dopaminergic system and its possible crosstalk with other growth factors. We characterized the GDNF-induced gene expression changes by DNA microarray analysis in different neuronal systems, including in vitro cultured Neuro2A cells treated with GDNF, as well as midbrains from GDNF heterozygous (Hz) knockout mice. These microarray experiments, resulted in the identification of GDNF-induced genes, which were also confirmed by other methods. Further analysis of the dopaminergic system of GDNF Hz mice demonstrated about 40% reduction in GDNF levels, revealed increased intracellular dopamine concentrations and FosB/DeltaFosB expression in striatal areas. These animals did not show any significant changes in behavioural analysis of acute and repeated cocaine administration on locomotor activity, nor did they exhibit any changes in dopamine output following treatment with acute cocaine. We further analysed the significance of GDNF receptor RET signalling in dopaminergic system of MEN2B knock-in animals with constitutively active Ret. The MEN2B animals showed a robust increase in extracellular dopamine and its metabolite levels in striatum, increased tyrosine hydroxylase (TH) and dopamine transporter (DAT) protein levels by immunohistochemical staining and Western blotting, as well as increased Th mRNA levels in SN. MEN2B mice had increased number of DA neurons in SN by about 25% and they also exhibited increased sensitivity to the stimulatory effects of cocaine. We also developed a semi-throughput in vitro micro-island assay for the quantification of neuronal survival and TH levels by computer-assisted methodology from limited amounts of tissue. This assay can be applied for the initial screening for dopaminotrophic molecules, as well as chemical drug library screening. It is applicable to any neuronal system for the screening of neurotrophic molecules. Since our microarray experiments revealed possible GDNF-VEGF-C crosstalk we further concentrated on studying the neurotrophic effects of VEGF-C. We showed that VEGF-C acts as a neurotrophic molecule for the DA neurons both in vitro and in vivo, however without additive effect when used together with GDNF. The neuroprotective effect for VEGF-C in vivo in rat 6-OHDA model of PD was demonstrated. The possible signalling mechanisms of VEGF-C in the nervous system were investigated - infusion of VEGF-C to rat brain induced ERK activation, however no direct activation of RET signalling in vitro was found. VEGF-C treatment of rat striatum lead to up-regulation of VEGFR-1-3, indicating that VEGF-C can regulate the expression level of its own receptor. VEGF-C dopaminotrophic activity in vivo was further supported by increased vascular tissue in the neuroprotection experiments.
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Pathogenic rnycobacteria, including Mycobacterium tuberculosis and Mycobacterium bovis, cause significant morbidity and mortality worldwide. However, the vaccine strain Mycobacterium bovis BCG, unlike virulent strains, triggers extensive apoptosis of infected macrophages, a step necessary for the elicitation of robust protective immunity. We here demonstrate that M. bovis BCG triggers Toll-like receptor 2 (TLR2)-dependent microRNA-155 (miR-155) expression, which involves signaling cross talk among phosphatidylinositol 3-kinase (PI3K), protein kinase C delta (PKC delta), and mitogen-activated protein kinases (MAPKs) and recruitment of NF-kappa B and c-ETS to miR-155 promoter. Genetic and signaling perturbations presented the evidence that miR-155 regulates PKA signaling by directly targeting a negative regulator of PKA, protein kinase inhibitor alpha (PKI-alpha). Enhanced activation of PKA signaling resulted in the generation of PKA C-alpha; phosphorylation of MSK1, cyclic AMP response element binding protein (CREB), and histone H3; and recruitment of phospho-CREB to the apoptotic gene promoters. The miR-155-triggered activation of caspase-3, BAK1, and cytochrome c translocation involved signaling integration of MAPKs and epigenetic or posttranslational modification of histones or CREB. Importantly, M. bovis BCG infection-induced apoptosis was severely compromised in macrophages derived from miR-155 knockout mice. Gain-of-function and loss-of-function studies validated the requirement of miR-155 for M. bovis BCG's ability to trigger apoptosis. Overall, M. bovis BCG-driven miR-155 dictates cell fate decisions of infected macrophages, strongly implicating a novel role for miR-155 in orchestrating cellular reprogramming during immune responses to mycobacterial infection.
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Key points The physiological metabolite, lactate and the two-pore domain leak potassium channel, TREK1 are known neuroprotectants against cerebral ischaemia. However, it is not known whether lactate interacts with TREK1 channel to provide neuroprotection. In this study we show that lactate increases TREK1 channel activity and hyperpolarizes CA1 stratum radiatum astrocytes in hippocampal slices. Lactate increases open probability and decreases longer close time of the human (h)TREK1 channel in a concentration dependent manner. Lactate interacts with histidine 328 (H328) in the carboxy terminal domain of hTREK1 channel to decrease its dwell time in the longer closed state. This interaction was dependent on the charge on H328. Lactate-insensitive mutant H328A hTREK1 showed pH sensitivity similar to wild-type hTREK1, indicating that the effect of lactate on hTREK1 is independent of pH change. AbstractA rise in lactate concentration and the leak potassium channel TREK1 have been independently associated with cerebral ischaemia. Recent literature suggests lactate to be neuroprotective and TREK1 knockout mice show an increased sensitivity to brain and spinal cord ischaemia; however, the connecting link between the two is missing. Therefore we hypothesized that lactate might interact with TREK1 channels. In the present study, we show that lactate at ischaemic concentrations (15-30mm) at pH7.4 increases TREK1 current in CA1 stratum radiatum astrocytes and causes membrane hyperpolarization. We confirm the intracellular action of lactate on TREK1 in hippocampal slices using monocarboxylate transporter blockers and at single channel level in cell-free inside-out membrane patches. The intracellular effect of lactate on TREK1 is specific since other monocarboxylates such as pyruvate and acetate at pH7.4 failed to increase TREK1 current. Deletion and point mutation experiments suggest that lactate decreases the longer close dwell time incrementally with increase in lactate concentration by interacting with the histidine residue at position 328 (H328) in the carboxy terminal domain of the TREK1 channel. The interaction of lactate with H328 is dependent on the charge on the histidine residue since isosteric mutation of H328 to glutamine did not show an increase in TREK1 channel activity with lactate. This is the first demonstration of a direct effect of lactate on ion channel activity. The action of lactate on the TREK1 channel signifies a separate neuroprotective mechanism in ischaemia since it was found to be independent of the effect of acidic pH on channel activity. Key points The physiological metabolite, lactate and the two-pore domain leak potassium channel, TREK1 are known neuroprotectants against cerebral ischaemia. However, it is not known whether lactate interacts with TREK1 channel to provide neuroprotection. In this study we show that lactate increases TREK1 channel activity and hyperpolarizes CA1 stratum radiatum astrocytes in hippocampal slices. Lactate increases open probability and decreases longer close time of the human (h)TREK1 channel in a concentration dependent manner. Lactate interacts with histidine 328 (H328) in the carboxy terminal domain of hTREK1 channel to decrease its dwell time in the longer closed state. This interaction was dependent on the charge on H328. Lactate-insensitive mutant H328A hTREK1 showed pH sensitivity similar to wild-type hTREK1, indicating that the effect of lactate on hTREK1 is independent of pH change.
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E2F1 and E2F2 transcription factors have an important role during the regulation of cell cycle. In experiments done with E2F1/E2F2 knockout mice, it has been described that bone-marrow-derived macrophages (BMDM) undergo an early rapid proliferation event related to DNA hyper-replication. As a consequence, DNA damage response (DDR) pathway is triggered and E2F1/E2F2 knockout macrophages enter premature senescence related to G2/M phase arrest. The exact mechanism trough which DNA hyper-replication leads to DDR in absence of E2F1 and E2F2 remains undiscovered. To determine whether the ATR/ATM pathway, the master regulator of G2/M checkpoint, might be the surveillance mechanism in order to regulate uncontrolled proliferation in the DKO model, we monitored and analysis biochemical properties of BMDM cultures in the presence of caffeine, a potent inhibitor of ATM/ATR activity. Our results show that the addition of caffeine abolishes premature senescence in DKO BMDM, stimulates γ-H2AX accumulation and decreases Mcm2 expression.
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Os fibrócitos foram inicialmente identificados pelo seu recrutamento rápido para os tecidos lesionados e por atuar diretamente na resposta imune através do reconhecimento, apresentação antigênica e produção de citocinas e quimiocinas. Segundo Grab (2004) fibrócitos podem participar da resposta imune na leishmaniaose e por isso no presente estudo propomos analisar a resposta celular e apresentação antigênica dos fibrócitos na infecção por L. (L.) amazonensis. Para os experimentos in vivo camundongos C57BL/6 e knockout para o receptor TLR-2 foram inoculados na derme auricular com 105 formas promastigotas de L. (L.) amazonensis e 1, 7, 15 dias após a infecção as regiões de inóculo e os linfonodos foram retirados e processados para citometria de fluxo. Para os experimentos in vitro fibrócitos foram obtidos de mononucleares do sangue periférico de camundongos C57BL/6. Os fibrócitos foram avaliados quanto às suas características morfológicas e fenotípicas, infecção, expressão de MHC-II/B7-1/B7-2 e ativação de linfócitos T CD4+. As análises na região de inóculo mostraram o aumento no percentual de fibrócito na derme de camundongos após 15 dias de infecção tanto em animais C57BL/6 quanto em animais KO TLR-2. Neste sítio, os fibrócitos produziram citocinas e expressaram MHC-II, B7-1 e B7-2 podendo participar da resposta imune. As análises no linfonodo mostraram a existência de um alto percentual de fibrócitos nos animais controle, contudo, após infecção este percentual foi reduzido. Após infecção verificamos que os fibrócitos de animais WT C57BL/6 foram capazes de produzir as citocinas IL-4, IL-10 e IFN- durante o primeiro dia. Entretanto, na ausência de TLR-2 os fibrócitos presentes no linfonodo produziram TNF-α e IFN- que podem estar relacionadas com a ativação celular e aumento da capacidade de apresentação antigênica destas células durante a infecção. No linfonodo verificamos que os fibrócitos podem participar da apresentação antigênica após a infecção por L. (L.) amazonensis. Contudo, nos linfonodos de animais WT C57BL/6 observamos a redução significativa no percentual destas células expressando MHC-II e B7-1, o que pode estar relacionada a presença do TLR-2. Nos ensaios in vitro fibrócitos de camundongos C57BL/6 apresentaram alta capacidade endocítica, eliminaram os parasitas nas primeiras 24 horas de infecção, expressaram MHC-II/B7-1/B7-2 e foram capazes de ativar linfócitos T CD4+. Com isso, nossos resultados sugerem que os fibrócitos podem atuar na resposta celular e na apresentação antigênica durante a infecção por L. (L.) amazonensis, contudo estas funções podem ser moduladas pela participação do TLR-2 e pelo microambiente onde estes se encontram.
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A asma é uma doença inflamatória crônica caracterizada por hiper-reatividade das vias aéreas, acúmulo de eosinófilos, secreção de muco e remodelamento. No decorrer do estabelecimento do processo inflamatório, há liberação de mediadores endógenos que atuam limitando a evolução do quadro patológico e garantindo a manutenção da homeostasia (COHN, ELIAS e CHUPP, 2004). Dentre estes recebem destaque os hormônios glicocorticóides, reconhecidos por sua atividade anti-inflamatória, dependente, em parte, da geração de fatores intermediários como a proteína anexina-1 (AnxA1) (KAMAL, FLOWER e PERRETTI, 2005; PERRETTI, 2003). Neste estudo investigou-se o papel regulatório da AnxA1 e do peptídeo derivado Ac2-26 (50 - 200 g/animal) no modelo experimental de asma alérgica murina. Camundongos BALB/c (AnxA1+/+) e depletados do gene codificante para AnxA1 (AnxA1-/-) foram sensibilizados com ovoalbumina (OVA 50 g) e hidróxido de alumínio (5 mg), por via subcutânea. Após 14 dias, foi feito reforço com OVA (25 g), por via intraperitoneal, e nos dias 19, 20 e 21 foram desafiados com OVA (25 g), por via intranasal. O tratamento consistiu na administração intranasal do peptídeo Ac2-26 (50 - 200 g), 1 h antes de cada desafio. As análises foram feitas 24 h após o último desafio e incluíram: i) função pulmonar (resistência e elastância) e hiper-reatividade das vias aéreas à metacolina (3 27 mg/ml) através de pletismografia invasiva; ii) alterações morfológicas através de histologia clássica; iii) quantificação de colágeno e iv) quantificação de mediadores inflamatórios através de ELISA. Verificou-se que camundongos AnxA1-/-, quando ativamente sensibilizados e desafiados com OVA apresentaram exacerbação do quadro de hiper-reatividade das vias aéreas, assim como do número de eosinófilos no lavado broncoalveolar e no infiltrado peribrônquico, deposição de colágeno e nos níveis de IL-13 em comparação aos controles AnxA1+/+. Em paralelo, observou-se que o peptídeo Ac2-26 levou a uma redução da hiper-reatividade das vias aéreas frente à estimulação com metacolina nos animais AnxA1+/+. O peptídeo Ac2-26 reduziu o infiltrado inflamatório no parênquima pulmonar e o número de eosinófilos peribronquiolares, além da produção de muco no tecido pulmonar e da geração IL-4, IL-13, eotaxina-1 e -2. Em conjunto, nossos achados mostram que os camundongos AnxA1-/- mostraram-se mais responsivos à estimulação antigênica, o que foi indicativo de que a AnxA1 parece exercer um papel regulatório importante sobre a resposta inflamatória alérgica murina. Além disso, o efeito inibitório do peptídeo Ac2-26 sobre a resposta alérgica pulmonar foi indicativo de que este se coloca como um composto anti-inflamatório e anti-alérgico promissor para utilização na terapia da asma.
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Esquistossomose e desnutrição são graves problemas de saúde pública nos países em desenvolvimento. A esquistossomose provoca uma série de morbidades, que é influenciada, em grande maioria, pela natureza do estímulo à resposta imunológica e ao estado nutricional do hospedeiro. Durante a infecção esquistossomótica, a resposta imune produz citocinas que são liberadas e estimulam a produção de óxido nítrico. Numerosos estudos demonstraram que o estado nutricional e a resposta imune afetam as características fenotípicas dos vermes adultos. No entanto, se o óxido nítrico desempenha um papel neste fenômeno é desconhecido. Neste estudo, os camundongos do tipo selvagem (grupo controle) e camundongos knockout com deficiência na produção de óxido nítrico foram alimentados com uma dieta comercial (UNILAB) ou uma dieta básica regional, dieta com baixa concentração de proteína (7,87%). Por meio de um sistema digital de análise de imagem (Image Pro Plus, USA) e microscopia confocal, estudou-se a morfologia da ventosa oral, tegumento e o sistema reprodutor de vermes machos e fêmeas. Vermes machos e fêmeas recuperados de camundongos desnutridos com deficiência de oxido nítrico mostraram descamação do tegumento. A superfície dorsal de vermes desnutridos machos apresentaram tubérculos irregulares, distribuídos de forma desigual, e escassos. O sistema reprodutivo de vermes fêmeas desnutridas não demonstrou alterações morfológicas. No entanto, os machos deste grupo exibiram menor número de células no processo de diferenciação dentro dos lobos testiculares. Em conclusão, nossos resultados sugerem que a deficiência de produção de óxido nítrico não induz alterações morfológicas em nível do tegumento e do sistema reprodutor de vermes machos. Em contraste, a desnutrição é responsável por tais alterações morfológicas, principalmente no sistema reprodutivo e na ventosa oral.
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Silicose é uma doença pulmonar causada pela inalação de partículas de sílica, na qual vários são os mediadores inflamatórios implicados. Neste estudo investigamos o envolvimento do óxido nítrico (NO) nas alterações de função pulmonar e hiper-reatividade das vias aéreas, em camundongos estimulados com sílica por via intranasal. Foram analisados parâmetros como i) função pulmonar (resistência e elastância) e hiper-reatividade das vias aéreas ao aerossol com metacolina (3 27 mg/mL) através de sistema de pletismografia invasiva, e ii) alterações morfológicas, mediante técnicas clássicas de histologia e imuno-histoquímica. Verificamos que a instilação de partículas de sílica (10 mg) causou aumento nos níveis basais de resistência e elastância pulmonar, bem como de hiper-reatividade das vias aéreas à metacolina, em tempos que variaram de 2 a 28 dias. Observamos uma correlação temporal com as alterações morfológicas no tecido pulmonar, que refletiram presença de resposta inflamatória e infiltrado celular intenso, seguidos de progressiva fibrose e formação de granulomas. Os tempos de 7 e 28 dias pós-estimulação com sílica foram selecionados para os ensaios subsequentes, por corresponderem às fases aguda e crônica da silicose experimental, respectivamente. Foram detectados níveis elevados de óxido nítrico (NO), bem como de peroxinitrito/expressão da enzima iNOS no lavado broncoalveolar e no tecido pulmonar de camundongos estimulados com sílica, respectivamente. Em outro grupo de experimentos, observamos que camundongos depletados para o gene codificante para a enzima NOS induzida (iNOS) apresentaram abolidas as respostas de aumento nos níveis basais de resistência e elastância pulmonares, bem como da hiper-reatividade das vias aéreas à metacolina em comparação aos animais selvagens (C57BL/6). A inibição da resposta inflamatória e fibrótica granulomatosa foi também notada no caso dos animais nocautes para iNOS. O tratamento com 1400W, um inibidor da enzima iNOS, diminui de forma marcada as alterações de função pulmonar e fibrose tecidual verificadas nos camundongos silicóticos. Em conclusão, nossos resultados mostram que o comprometimento da função pulmonar, representado pelo aumento na resistência/elastância e hiper-reatividade das vias aéreas, mostraram-se correlacionados à maior geração de NO e de peroxinitrito, assim como da expressão da enzima iNOS. A depleção do gene codificante ou, ainda, o bloqueio da enzima iNOS aboliram a resposta de comprometimento da função pulmonar e fibrose tecidual na silicose experimental. Em conjunto estes achados indicam que o NO parece ser um mediador importante no contexto da silicose, colocando-se como um alvo terapêutico em potencial no tratamento de doenças de caráter fibrótico.