999 resultados para membrana de celulose


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O objetivo deste trabalho foi avaliar o efeito da aplicação de diferentes fontes de Ca2+ no solo sobre o teor deste nutriente no solo, nas folhas e nos frutos, e sobre atributos físico-químicos e conservação pós-colheita da uva 'Vênus' (Vitis labrusca x V. vinifera). O delineamento foi em blocos ao acaso, com quatro repetições. Utilizaram-se os seguintes tratamentos: T1 - testemunha (sem aplicação de Ca2+ no solo); T2 - cloreto de cálcio; T3 - gesso agrícola; T4 - Nitrabor®; T5 - cal hidratada, e T6 - borra de celulose. Para todas as fontes, aplicou-se o equivalente a 80 kg de Ca2+ ha-1, parcelados em três aplicações, a cada 21 dias, a partir do início da brotação da videira. Avaliou-se o teor de macronutrientes no solo, nas folhas e frutos. Na maturação, foram coletados quatro cachos por parcela, sendo dois cachos avaliados por ocasião da colheita e dois cachos mantidos sob temperatura ambiente e atmosfera modificada, sendo avaliados após cinco dias. Em geral, as fontes de Ca2+ proporcionaram maior teor de Ca2+ no solo, nas folhas e nos frutos. O Nitrabor® e o gesso agrícola aumentaram o peso médio de bagas. As fontes de Ca2+ reduziram a perda de peso, o degrane e a incidência de podridões dos frutos em pós-colheita.

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Epicatechin conjugates obtained from grape have shown antioxidant activity in various systems. However, how these conjugates exert their antioxidant benefits has not been widely studied. We assessed the activity of epicatechin and epicatechin conjugates on the erythrocyte membrane in the presence and absence of a peroxyl radical initiator, to increase our understanding of their mechanisms. Thus, we studied cell membrane fluidity by fluorescence anisotropy measurements, morphology of erythrocytes by scanning electron microscopy, and finally, red cell membrane proteins by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Our data showed that incubation of red cells in the presence of epicatechin derivatives altered membrane fluidity and erythrocyte morphology but not the membrane protein pattern. The presence in the medium of the peroxyl radical initiator 2,2′-azobis(amidinopropane) dihydrochloride (AAPH) resulted in membrane disruptions at all levels analyzed, causing changes in membrane fluidity, cell morphology, and protein degradation. The presence of antioxidants avoided protein oxidation, indicating that the interaction of epicatechin conjugates with the lipid bilayer might reduce the accessibility of AAPH to membranes, which could explain in part the inhibitory ability of these compounds against hemolysis induced by peroxidative insult.

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El granuloma periférico de células gigantes (GPCG) es una lesión reactiva benigna relativamente frecuente de la cavidad bucal. Se origina a partir del periostio o de la membrana periodontal tras una irritación o un traumatismo crónico que actúa localmente. Se manifiesta en forma de nódulo de color rojo-púrpura, situado en la encía o en el reborde alveolar edéntulo, preferentemente en la mandíbula. Aparece a cualquier edad, con una mayor incidencia entre la quinta y sexta décadas de la vida, con una ligera predilección por el sexo femenino. Es una lesión de las partes blandas que muy rara vez implica el hueso subyacente, aunque puede causarle una erosión superficial. Se han revisado cinco casos de GPCG que afectaban a 3 hombres y a 2 mujeres de edades comprendidas entre los 19 y 66 años, presentándose tres de ellos en el maxilar superior. En dos casos se observaba radiográficamente una reabsorción ósea en forma de"aplanamiento". El tratamiento consistió en realizar la exéresis-biopsia, efectuándose dos casos mediante láser de CO2 y tres con bisturí frío. No se ha observado ninguna recidiva en el seguimiento postoperatorio (rango de 10 meses a 4 años). En el diagnóstico diferencial se deben descartar lesiones de características clínicas e histológicas muy similares -como el granuloma central de células gigantes-, que asientan en el interior del propio maxilar y cuyo comportamiento es más agresivo; solamente el estudio radiológico permitirá esta distinción. El diagnóstico precoz y preciso de esta lesión permite efectuar un tratamiento conservador sin riesgo para los dientes vecinos ni para el hueso adyacente

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O interesse comercial pela atemoia vem aumentando cada vez mais no Brasil. O aumento da atividade respiratória, acompanhado por modificações rápidas na composição física dos frutos podem inviabilizar sua distribuição a mercados distantes. Neste contexto, objetivou-se com o presente trabalho avaliar os atributos físicos em frutos de atemoia tratados com 1-metilciclopropeno (1-MCP) e atmosfera modificada associados à refrigeração. O experimento foi instalado em delineamento experimental inteiramente casualizado, em esquema fatorial 4x5, sendo quatro concentrações de 1-MCP (0; 200; 400 e 600 ŋL L-¹) e cinco períodos de avaliação após a colheita, em intervalo de cinco dias, com quatro repetições e quatro frutos por unidade experimental. As atemoias foram colhidas em pomar comercial, no município de Matias Cardoso-MG, no estádio de maturação fisiológica, lavadas, sanitizadas e secas ao ar, depois tratadas com as concentrações de 1-MCP por oito horas, em temperatura ambiente. Logo após, quatro frutos foram dispostos em bandejas de poliestireno expandido. Alguns permaneceram sem membrana, enquanto outros foram embalados com membrana plástica de PEBD 16µm. As variáveis avaliadas nos frutos foram: perda de biomassa fresca, firmeza, concentração de CO2, etileno e coloração da casca. O uso da atmosfera modificada e do 1-MCP, associados ou não, foi eficiente no atraso do amadurecimento dos frutos, permitindo a conservação de sua qualidade física. Frutos tratados com 1-MCP apresentaram-se mais firmes, além da preservação da coloração, verificada através da luminosidade, cromaticidade e ângulo Hueº, que se mostraram superiores quando comparados aos frutos não tratados.

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Membrane proteins account for about 20% to 30% of all proteins encoded in a typical genome. They play central roles in multiple cellular processes mediating the interaction of the cell with its surrounding. Over 60% of all drug targets contain a membrane domain. The experimental difficulties of obtaining a crystal structural severely limits our ability or understanding of membrane protein function. Computational evolutionary studies of proteins are crucial for the prediction of 3D structures. In this project, we construct a tool able to quantify the evolutionary positive selective pressure on each residue of membrane proteins through maximum likelihood phylogeny reconstruction. The conservation plot combined with a structural homology model is also a potent tool to predict those residues that have essentials roles in the structure and function of a membrane protein and can be very useful in the design of validation experiments.

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O lipoma arborescens é uma lesão intra-articular de origem desconhecida, caracterizada por proliferação vilolipomatosa crônica da membrana sinovial. Pode estar associado a doenças degenerativas, diabetes mellitus, artrite reumatóide juvenil e artrite reumatóide do adulto. O diagnóstico baseia-se em achados de ressonância magnética e de biópsia sinovial. Relatamos o caso de uma paciente do sexo feminino, de oito anos de idade, com lipoma arborescens e história de artrite em joelhos e cotovelos há dois anos, tendo sido observada melhora parcial da artrite após o início do tratamento medicamentoso convencional.

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Laringoceles são lesões relativamente raras definidas como dilatações anômalas dos sáculos dos ventrículos laríngeos. A classificação usual divide a laringocele em interna, externa e combinada ou mista. Laringoceles internas são as que se localizam medialmente à cartilagem tireóidea e geralmente causam compressão nas bandas ventriculares levando a rouquidão e sintomas compressivos na via aérea. As externas se estendem através da membrana tireóidea, apresentando-se como massas cervicais, e as mistas são as que ocupam as duas regiões, podendo causar ambos os sintomas. O diagnóstico é geralmente feito por tomografia computadorizada e/ou laringoscopia. Apresentamos um caso de laringocele mista em que o diagnóstico foi sugerido no exame de ultra-sonografia, num paciente encaminhado com história de massa cervical.

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Mitochondrial function and dynamics are essential for neurotransmission, neural function and neuronal viability. Recently, we showed that the eutherian-specific Armcx gene cluster (Armcx1-6 genes), located in the X chromosome, encodes for a new family of proteins that localise to mitochondria, regulating mitochondrial trafficking. The Armcx gene cluster evolved by retrotransposition of the Armc10 gene mRNA, which is present in all vertebrates and is considered to be the ancestor gene. Here we investigate the genomic organisation, mitochondrial functions and putative neuroprotective role of the Armc10 ancestor gene. The genomic context of the Armc10 locus shows considerable syntenic conservation among vertebrates, and sequence comparisons and CHIP-data suggest the presence of at least three conserved enhancers. We also show that the Armc10 protein localises to mitochondria and that it is highly expressed in the brain. Furthermore, we show that Armc10 levels regulate mitochondrial trafficking in neurons, but not mitochondrial aggregation, by controlling the number of moving mitochondria. We further demonstrate that the Armc10 protein interacts with the KIF5/Miro1-2/Trak2 trafficking complex. Finally, we show that overexpression of Armc10 in neurons prevents A beta-induced mitochondrial fission and neuronal death. Our data suggest both conserved and differential roles of the Armc10/Armcx gene family in regulating mitochondrial dynamics in neurons, and underscore a protective effect of the Armc10 gene against A beta-induced toxicity. Overall, our findings support a further degree of regulation of mitochondrial dynamics in the brain of more evolved mammals.

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Mitochondrial function and dynamics are essential for neurotransmission, neural function and neuronal viability. Recently, we showed that the eutherian-specific Armcx gene cluster (Armcx1-6 genes), located in the X chromosome, encodes for a new family of proteins that localise to mitochondria, regulating mitochondrial trafficking. The Armcx gene cluster evolved by retrotransposition of the Armc10 gene mRNA, which is present in all vertebrates and is considered to be the ancestor gene. Here we investigate the genomic organisation, mitochondrial functions and putative neuroprotective role of the Armc10 ancestor gene. The genomic context of the Armc10 locus shows considerable syntenic conservation among vertebrates, and sequence comparisons and CHIP-data suggest the presence of at least three conserved enhancers. We also show that the Armc10 protein localises to mitochondria and that it is highly expressed in the brain. Furthermore, we show that Armc10 levels regulate mitochondrial trafficking in neurons, but not mitochondrial aggregation, by controlling the number of moving mitochondria. We further demonstrate that the Armc10 protein interacts with the KIF5/Miro1-2/Trak2 trafficking complex. Finally, we show that overexpression of Armc10 in neurons prevents A beta-induced mitochondrial fission and neuronal death. Our data suggest both conserved and differential roles of the Armc10/Armcx gene family in regulating mitochondrial dynamics in neurons, and underscore a protective effect of the Armc10 gene against A beta-induced toxicity. Overall, our findings support a further degree of regulation of mitochondrial dynamics in the brain of more evolved mammals.

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A peritonite esclerosante encapsulante é uma entidade rara, muitas vezes grave, caracterizada pelo envolvimento total ou parcial de alças do intestino delgado por uma membrana de tecido fibroso. Apresenta quadro clínico inespecífico de obstrução intestinal, exigindo diagnóstico por imagem preciso para orientação do tratamento. O presente relato enfatiza a importância da tomografia computadorizada no diagnóstico desta doença, com confirmação por correlação cirúrgica.

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Acute lung injury (ALI) is a clinical manifestation of respiratory failure, caused by lung inflammation and the disruption of the alveolar-capillary barrier. Preservation of the physical integrity of the alveolar epithelial monolayer is of critical importance to prevent alveolar edema. Barrier integrity depends largely on the balance between physical forces on cell-cell and cell-matrix contacts, and this balance might be affected by alterations in the coagulation cascade in patients with ALI. We aimed to study the effects of activated protein C (APC) on mechanical tension and barrier integrity in human alveolar epithelial cells (A549) exposed to thrombin. Cells were pretreated for 3 h with APC (50 mg/ml) or vehicle (control). Subsequently, thrombin (50 nM) or medium was added to the cell culture. APC significantly reduced thrombin-induced cell monolayer permeability, cell stiffening, and cell contraction, measured by electrical impedance, optical magnetic twisting cytometry, and traction microscopy, respectively, suggesting a barrier-protective response. The dynamics of the barrier integrity was also assessed by western blotting and immunofluorescence analysis of the tight junction ZO-1. Thrombin resulted in more elongated ZO-1 aggregates at cell-cell interface areas and induced an increase in ZO-1 membrane protein content. APC attenuated the length of these ZO-1 aggregates and reduced the ZO-1 membrane protein levels induced by thrombin. In conclusion, pretreatment with APC reduced the disruption of barrier integrity induced by thrombin, thus contributing to alveolar epithelial barrier protection.

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Although the efficacy of methadone maintenance treatment (MMT) in opioid dependence disorder has been well established, the influence of methadone pharmacokinetics in dose requirement and clinical outcome remains controversial. The aim of this study is to analyze methadone dosage in responder and nonresponder patients considering pharmacogenetic and pharmacokinetic factors that may contribute to dosage adequacy. Opioid dependence patients (meeting Diagnostic and Statistical Manual of Mental Disorders, [4th Edition] criteria) from a MMT community program were recruited. Patients were clinically assessed and blood samples were obtained to determine plasma concentrations of (R,S)-, (R) and (S)- methadone and to study allelic variants of genes encoding CYP3A5, CYP2D6, CYP2B6, CYP2C9, CYP2C19, and P-glycoprotein. Responders and nonresponders were defined by illicit opioid consumption detected in random urinalysis. The final sample consisted in 105 opioid dependent patients of Caucasian origin. Responder patients received higher doses of methadone and have been included into treatment for a longer period. No differences were found in terms of genotype frequencies between groups. Only CYP2D6 metabolizing phenotype differences were found in outcome status, methadone dose requirements, and plasma concentrations, being higher in the ultrarapid metabolizers. No other differences were found between phenotype and responder status, methadone dose requirements, neither in methadone plasma concentrations. Pharmacokinetic factors could explain some but not all differences in MMT outcome and methadone dose requirements.

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Caveolae are membrane micro-domains enriched in cholesterol, sphingolipids and caveolins, which are transmembrane proteins with a hairpin-like structure. Caveolae participate in receptor-mediated trafficking of cell surface receptors and receptor-mediated signaling. Furthermore, caveolae participate in clathrin-independent endocytosis of membrane receptors. On the one hand, caveolins are involved in vascular and cardiac dysfunction. Also, neurological abnormalities in caveolin-1 knockout mice and a link between caveolin-1 gene haplotypes and neurodegenerative diseases have been reported. The aim of this article is to present the rationale for considering caveolae as potential targets in cardiovascular and neurological diseases.

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The amyloid precursor protein (APP) is mainly known for being the precursor of the ß-amyloid peptide, which accumulates in plaques found in the brain of Alzheimer's disease patients. Expression in different tissues and the degree of sequence identity among mammals indicate an essential and non-tissue specific physiological function. APP is anchored to the membrane and displays a single C-terminal intracellular domain and a longer N-terminal extracellular domain. The basic biochemical properties and the scattered data on research, not related to production of beta-amyloid peptide, suggest that the protein and the molecules resulting from APP proteolytic cleavage may act as adhesion factors, enzymes, hormones/neurotransmitters and/or protease inhibitors. APP deserves to be known for its quite notable properties and its physiological role(s).