984 resultados para GALACTOSIDE-BINDING LECTIN


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Rheumatoid arthritis (RA) is characterized by chronic inflammation of the synovial joints resulting from hyperplasia of synovial fibroblasts and infiltration of lymphocytes, macrophages and plasma cells, all of which manifest signs of activation. All these cells proliferate abnormally, invade bone and cartilage, produce an elevated amount of pro-inflammatory cytokines, metalloproteinases and trigger osteoclast formation and activation. Some of the pathophysiological consequences of the disease may be explained by the inadequate apoptosis, which may promote the survival of autoreactive T cells, macrophages or synovial fibroblasts. Although RA does not result from single genetic mutations, elucidation of the molecular mechanisms implicated in joint destruction has revealed novel targets for gene therapy. Gene transfer strategies include inhibition of pro-inflammatory cytokines, blockade of cartilage-degrading metalloproteinases, inhibition of synovial cell activation and manipulation of the Th1-Th2 cytokine balance. Recent findings have iluminated the idea that induction of apoptosis in the rheumatoid joint can be also used to gain therapeutic advantage in the disease. In the present review we will discuss different strategies used for gene transfer in RA and chronic inflammation. Particularly, we will highlight the importance of programmed cell death as a novel target for gene therapy using endogenous biological mediators, such as galectin-1, a beta-galactoside-binding protein that induces apoptosis of activated T cells and immature thymocytes.

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BACKGROUND AND AIMS: Mannan-binding lectin (MBL) and ficolins are microbial pattern recognition molecules that activate the lectin pathway of complement. We previously reported the association of MBL deficiency with anti-Saccharomyces cerevisiae antibodies (ASCA) in patients with Crohn's disease (CD). However, ASCA are also frequently found in MBL-proficient CD patients. Here we addressed expression/function of ficolins and MBL-associated serine protease-2 (MASP-2) regarding potential association with ASCA. METHODS: ASCA titers and MBL, ficolin and MASP-2 concentrations were determined by ELISA in the serum of patients with CD, ulcerative colitis (UC), and in healthy controls. MASP-2 activity was determined by measuring complement C4b-fixation. Anti-MBL autoantibodies were detected by ELISA. RESULTS: In CD and UC patients, L-ficolin concentrations were significantly higher compared to healthy controls (p<0.001 and p=0.029). In contrast, H-ficolin concentrations were slightly reduced in CD and UC compared to healthy controls (p=0.037 for UC vs. hc). CD patients with high ASCA titers had significantly lower H-ficolin concentrations compared to ASCA-low/negative CD patients (p=0.009). However, MASP-2 activity was not different in ASCA-negative and ASCA-positive CD patients upon both, ficolin- or MBL-mediated MASP-2 activation. Finally, anti-MBL autoantibodies were not over-represented in MBL-proficient ASCA-positive CD patients. CONCLUSIONS: Our results suggest that low expression of H-ficolin may promote elevated ASCA titers in the ASCA-positive subgroup of CD patients. However, unlike MBL deficiency, we found no evidence for low expression of serum ficolins or reduced MASP-2 activity that may predispose to ASCA development.

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Galectin-1 belongs to an evolutionarily conserved family of animal ß-galactoside-binding proteins, which exert their functions by crosslinking the oligosaccharides of specific glycoconjugate ligands. During the past decade, attempts to identify the functional role of galectin-1 suggested participation in the regulation of the immune response. Only in the last few years has the molecular mechanism involved in these properties been clearly elucidated, revealing a critical role for galectin-1 as an alternative signal in the generation of T cell death. In the present study we will discuss the latest advances in galectin research in the context of the regulation of the immune response, not only at the central level but also at the periphery. Moreover, we will review the purification, biochemical properties and functional significance of a novel galectin-1-like protein from activated rat macrophages, whose expression is differentially regulated according to the activation state of the cells. The novel role of a carbohydrate-binding protein in the regulation of apoptosis is providing a breakthrough in galectin research and extending the interface between immunology, glycobiology and clinical medicine.

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Nasopharyngeal bacteria can asymptomatically colonize the nasopharynx of infants and young children but are also associated with the development of respiratory infections and diseases. Such nasopharyngeal bacteria include Streptococcus pneumoniae, Moraxella catarrhalis, Haemophilus influenzae and Staphylococcus aureus. The host defense against invading pathogens is largely relies germline-encoded pattern recognition receptors (PRR), which are expressed on the cells of innate immunity, and different cytokines. These include toll-like receptors (TLR), mannose-binding lectin (MBL) and different cytokines such as IL-17A. Single nucleotide polymorphisms (SNP) in these receptors and cytokines have been reported. The aim of this study was to investigate genetic polymorphisms in the genes for TLR2, 3 and 4, MBL as well as for IL-17A and their associations with nasopharyngeal pathogenic bacterial colonization during a two-year follow-up. The study revealed that polymorphisms in TLRs, MBL2 and IL17A are associated with the nasopharyngeal bacterial colonization in young children. Healthy young (2.6 months of age) children with variant types of MBL2, TLR2 R753Q or TLR4 D299G had an increased risk to be colonized by S. pneumonia, S. aureus or M. catarrhalis, respectively. Moreover, variant types of MBL2 in healthy children with might facilitate human rhinovirus (HRV)-induced S. pneumoniae colonization at 2.6 months of age. The polymorphism of TLR4 D299G was shown to be associated with M. catarrhalis colonization throughout the whole two-year follow-up (2.6, 13 and 24 months of age) and also with the bacterial load of this pathogen. Also, the polymorphism of IL17A G152A was shown to be associated with increased risk to be colonized by S. pneumoniae at 13 and 24 months of age. Furthermore, the results suggest that IL17A G152A has an effect on production of serum IL-17A already at young age. In conclusion, the results of this study indicate that polymorphisms in the key PRRs and IL17A seem to play an important role to colonization of S. pneumoniae, M. catarrhalis, and S. aureus in healthy young Finnish children. The nasopharyngeal colonization by these pathogenic bacteria may further promote the development of respiratory infections and may be related to development of asthma and allergy in the later life of children. These findings offer a possible explanation why some children have more respiratory infections than other children and provide a rational basis for future studies in this field.

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Pertussis or whooping cough is a human respiratory tract infection and a vaccine-preventable disease that is caused by Bordetella pertussis bacteria. Pertussis vaccination has been part of the Finnish national vaccine program since 1952. Despite extensive vaccinations, the incidence of pertussis has increased in many countries during the last decades. Large epidemics have been observed also in countries with high vaccine coverage. Inter-individual variation in immune responses is always encountered after vaccination. Low vaccine responses may cause vulnerability to pertussis even straight after vaccination. Reasons for low responses are not fully understood. The innate immune system is responsible for the initial recognition of pathogens and vaccine antigens. The role of innate immunity on pertussis immunity has not been thoroughly investigated. Mannose-binding lectin (MBL) and toll-like receptor 4 (TLR4) are important molecules of the innate immune system and in the recognition of pathogens. Cytokines form a signaling network that have a notable role in immune responses after infections as well as after vaccinations. Single nucleotide polymorphism (SNP) is common in genes encoding these molecules and the polymorphisms have been reported to affect vaccine response after viral and bacterial vaccines. This study investigated the gene polymorphisms of MBL2, TLR4 and interleukin (IL)-10 promoter and their association with vaccine responses after acellular pertussis (aP) vaccination in Finnish adolescents and infants. Cell-mediated immune responses were investigated ten years after the previous pertussis vaccinations in young adults. In addition, the role of MBL deficiency in pertussis infection susceptibility was evaluated. The results of this study show that subjects with TLR4 polymorphism had lower antibody production and persistence after aP vaccination compared with normal allele. A specific SNP in the TLR4 gene was associated with decreased antibody responses and persistence in adolescents after aP booster vaccination. Cell-mediated immune responses were partly detected ten years after the previous vaccination; booster vaccine clearly enhanced the responses. In addition, subjects with IL-10 polymorphism had altered cell-mediated immune responses. MBL deficiency was found to be more frequent in pertussis patients than healthy controls but the polymorphism of MBL2 was not associated with antibody responses after acellular pertussis vaccination. The novel finding of this study was that genetic variation in the innate immune system seems to play a role in altered pertussis vaccine responses as well as in pertussis infection. These new findings enlighten the mechanisms behind the low responses after pertussis vaccination and help to predict risk factors related to this phenomenon.

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Les efforts investis pour diminuer les risques de développer un infarctus du myocarde sont nombreux. Aujourd’hui les médecins prennent connaissance des divers facteurs de risque connus prédisposant aux syndromes coronariens aigus (SCA) dans le but de prendre en charge les patients «à risque» [1]. Bien que le suivi rigoureux et le contrôle de certains facteurs de risque modifiables aient permis une meilleure gestion des cas de SCA, les cas d’infarctus persistent de manière encore trop fréquente dans le monde. Puisque d’importantes études ont démontré que les SCA pouvaient survenir sans même la présence des facteurs de risque conventionnels [2, 3], les chercheurs se sont penchés sur un autre mécanisme potentiellement responsable de l’avènement des SCA : l’inflammation. L’inflammation joue un rôle prépondérant dans l’initiation, la progression et les complications de l’athérosclérose [4, 5] mais aussi dans les situations post-infarctus [6, 7]. Au cours des dernières années, le contrôle du processus inflammatoire est devenu une cible de choix dans la prévention et le traitement des SCA. Cependant, malgré les efforts investis, aucun de ces traitements ne s’est avéré pleinement efficace dans l’atteinte du but ultime visé par une diminution de l’inflammation : la diminution de la mortalité. Le complément est un système complexe reconnu principalement pour son rôle primordial dans l’immunité [2]. Cependant, lorsqu’il est activé de manière inappropriée ou excessive, il peut être à l’origine de nombreux dommages cellulaires caractéristiques de plusieurs pathologies inflammatoires dont font partie les complications de l’athérosclérose et des événements post-infarctus. Le travail effectué dans le cadre de mon doctorat vise à établir les rôles physiopathologiques du complément dans les interactions de l’axe thrombose-inflammation caractéristiques des SCA dans le but ultime d’identifier des cibles thérapeutiques permettant le développement de nouvelles approches pour la prévention et le traitement de ces pathologies. Les principaux résultats obtenus durant mon cursus suggèrent d’abord que la voie alterne du complément peut représenter une cible thérapeutique de choix dans les maladies coronariennes aiguës puisque l’activation terminale du complément semble y être principalement causée par l’activation du cette voie. De faibles niveaux sériques de MBL (mannan-binding lectin) et une activation terminale négligeable du complément caractérisent plutôt la maladie coronarienne stable. En comparant l’activité relative de chacune des voies du complément chez des cohortes de patients traités ou non par un anticorps spécifique à la protéine C5 du complément (pexelizumab), un second volet démontre quant à lui qu’une inhibition de l’activation du C5 n’a pas d’effet bénéfique majeur sur l’inhibition de la formation du complexe sC5b-9 ou sur les événements cliniques subséquents. Par conséquent, nous avons exploré, à l’aide d’un modèle in vitro, les raisons de l’inefficacité du traitement. Les résultats révèlent que le blocage du C5 avec le pexelizumab inhibe la production de l’anaphylatoxine pro-inflammatoire C5a et du complexe terminal du complément sans toutefois avoir d’effet sur l’apoptose des cellules endothéliales produites induite par le sérum des patients atteints de STEMI. Finalement, une autre section stipule que l’atorvastatine diminue l’activation du complément induite par les plaquettes sanguines chez des patients hypercholestérolémiques, mettant en évidence l’importance du rôle de cette statine dans la réduction des effets délétères de l’activation du système du complément médié par les plaquettes. Ensemble, l’étude du rôle spécifique des différentes voies d’activation du complément dans des contextes pathologiques variés, l’analyse des effets d’une inhibition spécifique de la protéine C5 du complément dans la progression des SCA et la mise en évidence des interactions entre l’activation du complément et les plaquettes activées ont contribué au développement d’une meilleure connaissance des rôles physiopathologiques du complément dans la progression de la maladie coronarienne.

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

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Galectin-1 (Gal-1), the prototype of a family of β -galactoside-binding proteins, has been shown to attenuate experimental acute and chronic inflammation. In view of the fact that endothelial cells (ECs), but not human polymorphonuclear leukocytes (PMNs), expressed Gal-1 we tested here the hypothesis that the protein could modulate leukocyte-EC interaction in inflammatory settings. In vitro, human recombinant (hr) Gal-1 inhibited PMN chemotaxis and trans-endothelial migration. These actions were specific as they were absent if Gal-1 was boiled or blocked by neutralizing antiserum. In vivo, hrGal-1 (optimum effect at 0.3 μg equivalent to 20 pmol) inhibited interleukin-1β-induced PMN recruitment into the mouse peritoneal cavity. Intravital microscopy analysis showed that leukocyte flux, but not their rolling velocity, was decreased by an anti-inflammatory dose of hrGal-1. Binding of biotinylated Gal-1 to resting and post-adherent human PMNs occurred at concentrations inhibitory in the chemotaxis and transmigration assays. In addition, the pattern of Gal-1 binding was differentially modulated by PMN or EC activation. In conclusion, these data suggest the existence of a previously unrecognized function of Gal-1, that is inhibition of leukocyte rolling and extravasation in experimental inflammation. It is possible that endogenous Gal-1 may be part of a novel anti-inflammatory loop in which the endothelium is the source of the protein and the migrating PMNs the target for its anti-inflammatory action.

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Pós-graduação em Biologia Geral e Aplicada - IBB

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As baixas concentrações séricas de Lecitina Ligante de Manose (MBL) estão associadas com a presença das variantes alélicas Mbl-*B, Mbl-*C e Mbl-*D, e resultam em um aumento na susceptibilidade a infecções recorrentes. No presente estudo foi investigada a associação entre o polimorfismo no gene Mbl e a susceptibilidade à infecção pelo HIV-1. Um fragmento de 349 pb do exon 1 do gene Mbl foi amplificado por PCR e, posteriormente, submetido à análise de restrição com as endonucleases BanI e MboII, para a identificação dos alelos. A avaliação de 145 pacientes soropositivos e de 99 controles mostrou a presença dos alelos Mbl-*A, Mbl-*B e Mbl-*D, cujas freqüências foram de 69%, 22% e 9% no grupo de pacientes e de 70,2%, 13,6% e 16,2% entre os controles. A análise das freqüências genotípicas mostrou uma maior prevalência dos genótipos com a variante alélica Mbl-*B entre os pacientes soropositivos quando comparadas à do grupo controle. Ademais, o genótipo B/B foi seis vezes mais freqüente no grupo de pacientes infectados (χ2=4,042; p=0,044). A média da carga viral plasmática foi menor nos pacientes HIV-1 soropositivos, portadores do alelo Mbl-*A, quando comparado aos pacientes soropositivos apresentando a variante alélica Mbl-*B (5.821 cópias/mL x 52.253 cópias/mL; p= 0,05). Ademais os pacientes portadores do alelo Mbl-*A apresentaram uma significativa redução da viremia plasmática (p<0,001), o que não foi observado para os portadores da variante Mbl-*B (p=0,999). Esses resultados sugerem a importância do polimorfismo no gene Mbl na evolução clínica do paciente infectado pelo HIV-1 e que a identificação do perfil genético do gene Mbl, em portadores da infecção pelo HIV-1, pode ser importante na avaliação da evolução e do prognóstico da doença.

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Neste estudo analisamos a freqüência de polimorfismos no éxon 1 do gene 2 da lectina Ligadora de manose (MBL) em indivíduos expostos à malária causada por Plasmodium vivax. Foram analisadas amostras de 81 indivíduos primoinfectados e 250 não infectados. Os indivíduos não infectados constituíram dois grupos, um que relatou nunca ter tido malária e o outro que teve de 1 a 4 ou mais episódios da doença. No grupo infectado, foi investigada a associação entre os polimorfismos e a suscetibilidade à infecção, a intensidade dos sinais e sintomas clínicos e a parasitemia. As mutações foram identificadas por reação em cadeia da polimerase e análise de restrição. O grupo infectado apresentou distribuição de freqüências alélicas e genotípicas diferente do grupo não infectado. As freqüências dos alelos MBL*A, MBL*B, MBL*C e MBL*D nos indivíduos infectados foram 64,20%, 19,75%, 0,00% e 15,43%, nos não infectados que nunca tiveram malária as freqüências foram 72,96%, 14,80%, 3,06% e 9,18%, e nos não infectados que relataram episódio prévio de malária as freqüências foram 74,67%, 14,81%, 2,30% e 8,22%, respectivamente. O alelo MBL*B foi associado à sintomatologia intensa e ao aumento na parasitemia, enquanto o alelo MBL*D foi associado às parasitemias mais baixas. No grupo não infectado, a distribuição das freqüências alélicas e genotípicas variou com o número de episódios e o tempo decorrido após o último episódio de malária. As variantes MBL*B e MBL*D contribuíram para essa variação. Esse foi o primeiro estudo para avaliar o impacto desses polimorfismos do gene da lectina ligadora de manose na resposta imune inata em indivíduos expostos naturalmente à malária causada por Plasmodium vivax.

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A leishmaniose é uma doença causada pelo protozoário do gênero Leishmania, possuindo uma variedade de formas clínicas. A mais severa é a Leishmaniose visceral, que no Brasil é causada por L. chagasi e transmitida pelo flebotomíneo Lutzomia longipalpis. O cão, tanto o doméstico como o selvagem, é o principal reservatório no ciclo zoonótico da doença, que no Brasil ocorre principalmente na região nordeste. Através de estudos epidemiológicos realizados em áreas endêmicas, notou-se que apesar do elevado número de pessoas infectadas, poucas manifestavam a doença. Isso pode ser explicado pelo estado nutricional e imunológico do paciente, infecção por HIV e variabilidade das cepas, visto que a heterogeneidade genética e diversidade clonal estão relacionadas a variações nos fatores de virulência do parasita. A lectina que se liga à manose (Mannose-Binding Lectin), ou MBL, é uma proteína que pode estar relacionada ao desenvolvimento da doença, uma vez que pode se ligar a carboidratos na membrana externa de patógenos, agindo como uma opsonina e facilitando assim a ação de macrófagos. Altas concentrações desta proteína podem ser desvantajosas, uma vez que pode facilitar a infecção por LV. Genes mutados podem contribuir para a variação do nível sérico da proteína diminuindo as taxas de transcrição do gene. Concluindo, o projeto tem o intuito de identificar e genotipar mutações específicas no promotor e no exon 1 do gene que codifica a MBL em humanos. A realização do estudo permitirá também, a consolidação de uma base de dados para estudos posteriores envolvendo a genética populacional da Lectina Ligante de Manose