954 resultados para Nerve Tissue Proteins


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The distribution and physiological condition of 116 Caiman crocodilus yacare was assessed over one year in the Southern Pantanal. Body mass and intermediary plasma metabolites were measured at three different time periods, representing large differences in the abundance of surface water. During the wet season the study site was completely submerged under water and C. c. yacare were distributed evenly throughout. High levels of [glucose] and [triglyceride] in the plasma indicated regular feeding. As the dry season progressed C. c. yacare became increasingly crowded around the remaining ponds. They showed a reduction in plasma [glucose] and [triglyceride], and an increase in plasma [beta-hydroxy-butyrate], signifying that they were feeding less and utilising fat reserves. At this sampling period, similar to 40% of the male C. c. yacare that were > 10 years old inhabited dry grassland and did not have access to water. These animals were significantly lighter than males of a similar length that had immediate water access, and plasma [uric acid] indicated that they had not fed for a long time and were metabolising tissue proteins. Essentially, the adult male C. c. yacare that inhabited dry grassland were in a state of energy deficiency. This was so severe in some animals that recovery seemed unlikely. The study suggests that fluctuations in the abundance of surface ground water may influence the size and structure of the C. c. yacare population in the Pantanal.

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Anticorpos para antígenos cardíacos foram analisados por ELISA em 14 soros de camundongos Balb/c hiperimunizados com Streptococcus mutans, inativado pelo formaldeído. Os níveis de anticorpos da classe IgG anticoração e antimiosina elevaram-se significativamente nos animais imunizados quando comparados com os controles, especialmente no grupo A, imunizado e reestimulado com antígenos solúveis de S. mutans. Neste grupo, os resultados do Western Blot mostraram reatividade com miosina cardíaca e uma banda de 35 kDa. A análise histológica dos corações dos animais do grupo B, imunizado e reestimulado com antígenos de superfície do microrganismo, demonstrou a presença de degeneração celular, tipo hidrópica e hialina e focos inflamatórios constituídos de linfócitos e macrófagos no miocárdio e pericárdio. Os resultados deste trabalho reforçam a hipótese da existência de mimetismo antigênico entre tecido cardíaco e S. mutans e chamam a atenção para o risco de desenvolvimento de anticorpos reativos com antígenos próprios induzidos por vacina anticárie com componentes estreptocócicos.

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Background and Objectives. The study investigated possible neurotoxic effects of increasing concentrations and doses of bupivacaine administered into the subarachnoid space in dogs. Methods. Fifty animals were allocated to five experimental groups: G1, control; G2, 5 mg 0.5 bupivacaine in 10% glucose solution; G3, 10 mg of 1% bupivacaine in 10% glucose solution; G4, 20 mg 2% bupivacaine in 10% glucose solution, and G5, 20 mg 2% bupivacaine in water. After 72 hours of observation, the animals were killed and the spinal cords removed for histologic examination by light microscopy. Results. None of the animals showed any neurologic clinical disturbance following recovery from spinal anesthesia. One case of necrosis of nerve tissue was observed in G3 and four in G4. Conclusions. Increasing concentrations and doses of hyperbaric bupivacaine solutions increased the incidence of nerve tissue damage, which did not occur with hypobaric solutions. These results should contribute to the further understanding of neurologic complications following spinal anesthesia when large doses of local anesthetics in hyperbaric solutions are used.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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A resposta inflamatória pode exacerbar o processo lesivo após desordens neurais agudas. O dimorfismo sexual gerado pelas diferentes presenças hormonais existentes entre macho e fêmea têm demonstrado habilidades neuroprotetoras endógenas opostas, apresentando uma melhor preservação da integridade do tecido nervoso na fêmea, putativamente, devido à presença dos hormônios ginógenos. Não existem investigações comparando como essa diferença pode afetar a resposta inflamatória durante o AVE. No presente estudo, investigaram-se as diferenças nos processos inflamatórios agudos do dimorfismo sexual de ratos adultos, de ambos os sexos, submetidos à lesão isquêmica aguda induzida por Endotelina (ET1) no corpo estriado. Seis grupos experimentais foram delineados: Animais machos de 24 horas de sobrevida (n= 8); machos de 72 horas de sobrevida de (n=8); machos de 7 dias de sobrevida (n=8); e fêmeas de 24 horas de sobrevida (n= 8); fêmeas de 72 horas de sobrevida de(n=8); fêmeas de 7 dias de sobrevida. A análise histopatológica geral foi realizada em secções coradas pela violeta de cresila. Macrófagos, astrócitos e neurônios foram identificados por imuno-histoquímica com anticorpos específicos para estas células inflamatórias (ED1, anti-GFAP e Anti-NeuN, respectivamente). Realizou-se contagem de micróglia/macrófagos ativados e corpos neuronais nos grupos experimentais mencionados. Não se notou diferença quantitativa entre os diferentes sexos, contudo houve uma aparente queda na quantidade de macrófagos/micróglia em 3 dias, tanto para os machos quanto para as fêmeas, apresentando alguma diferença na ativação astrocitária mais forte em machos. Os resultados sugerem que as diferenças sexuais na linhagem Lister Hooded, não são suficientes para causar diferenças significativas na preservação do tecido nervoso e em alguns aspectos da resposta inflamatória após a indução de isquemia cerebral por meio de ET1.

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Estudos experimentais evidenciam o potencial promissor das células da fração mononuclear da medula óssea (CMN-MO) no tratamento de modelos de isquemia cerebral. Sabe-se que as CMN-MOs são sensíveis à modificações microambientais, tal qual aquelas induzidas por uma isquemia, como eventos associados à inflamação. Contudo, pouco se conhece a respeito da biodistribuição e sobrevida dessas células no tecido nervoso pós-lesão. Objetiva-se investigar se a sobrevivência e a disseminação das CMN-MOs são influenciadas pela resposta inflamatória após isquemia estriatal. Parecer CEPAE, protocolo nº 073/12. Transplante heterólogo (5x105 de CMN-MOs) no estriado de ratos Wistar, agrupados entre controles não-tratados (IST) e falso-operado (FO) e tratados (ITCM), perfundidos em 1, 3, 7 e 28 dias. CMN-MO foram impregnadas com Nanocristais Qdot para posterior identificação por microscopia de fluorescência no tecido do receptor. Coloração, por violeta de cresila, e imunoistoquímica básica (IBA1 e ED1) foram aplicadas para análise histopatológica do tecido em microscopia de luz. Testes neurocomportamentais (teste de remoção do adesivo e teste do cilindro) foram realizados para aferir a resposta dos grupos às intervenções. Os achados histopatológicos evidenciam a eficiência do modelo experimental de indução isquêmica em reproduzir a lesão no estriado dorsolateral. O infiltrado celular no grupo IST marca a resposta inflamatória, posteriormente confirmada por imunoistoquímica para ED1 e IBA1; o infiltrado celular no grupo ITCM, evidencia a permanência das CMN-MO em todas as sobrevidas estudadas. O perfil de perda por morte das CMN-MO transplantadas no sítio de lesão é semelhante entre os grupos ITCM e FO, contudo, evidencia que resposta inflamatória do receptor causa maior decaimento do montante celular no grupo ITCM. Procedimentos de infusão celular mais refinados ou automatizados podem melhorar a sensibilidade dos testes comportamentais para discriminar a evolução entre os grupos estudados. Conclui-se que a alteração do microambiente pós-isquemia cria condições que determina a dispersão e a sobrevivência das CMN-MO. Outras análises de imunoistoquímicas podem apontar resultados quanto ao perfil microglial presentes nas sobrevidas estudadas e o grau de imunomodulação pelo estudo da dinâmica das citocinas inflamatórias produzidas.

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Scientific advances have been made to optimize the healing process in spinal cord injury. Studies have been developed to obtain effective treatments in controlling the secondary injury that occurs after spinal cord injury, which substantially changes the prognosis. Low-intensity laser therapy (LILT) has been applied in neuroscience due to its anti-inflammatory effects on biological tissue in the repairing process. Few studies have been made associating LILT to the spinal cord injury. The objective of this study was to investigate the effect of the LILT (GaAlAs laser-780 nm) on the locomotor functional recovery, histomorphometric, and histopathological changes of the spinal cord after moderate traumatic injury in rats (spinal cord injury at T9 and T10). Thirty-one adult Wistar rats were used, which were divided into seven groups: control without surgery (n = 3), control surgery (n = 3), laser 6 h after surgery (n = 5), laser 48 h after surgery (n = 5), medullar lesion (n = 5) without phototherapy, medullar lesion + laser 6 h after surgery (n = 5), and medullar lesion + laser 48 h after surgery (n = 5). The assessment of the motor function was performed using Basso, Beattie, and Bresnahan (BBB) scale and adapted Sciatic Functional Index (aSFI). The assessment of urinary dysfunction was clinically performed. After 21 days postoperative, the animals were euthanized for histological and histomorphometric analysis of the spinal cord. The results showed faster motor evolution in rats with spinal contusion treated with LILT, maintenance of the effectiveness of the urinary system, and preservation of nerve tissue in the lesion area, with a notorious inflammation control and increased number of nerve cells and connections. In conclusion, positive effects on spinal cord recovery after moderate traumatic spinal cord injury were shown after LILT.

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The benefits of proper nutrition and analgesia are closely linked when it comes to animals that are suffering from any illness and are hospitalized. In patients who are ill or under the stress of hospitalization, increase secretion of glucagon, catecholamines, cortisol and growth hormone antagonize the effects of insulin, leading to hyperglycemia and degradation of tissue proteins to provide substrate for gluconeogenesis. These changes result in loss of lean body mass, reflecting negatively on tissue repair processes, immune response and prognosis. Likewise, the pain induced by noxious stimulation can lead to protein catabolism, stress, immunosupression, delayed wound healing and acceleration of disease processes. This review confirms the nutrition and pain control importance in hospitalized patients, showing their physiological benefits and reduction in hospital stay when the clinician understands these benefits and the animals are treated with such care

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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

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Lean, finely textured beef (LFTB) is a lean product derived from beef-fat trimmings. Characterization of LFTB showed that, while it is high in total protein, the LFTB contains more serum and connective tissue proteins and less myofibrillar proteins than muscle meat. Because of the protein differences, LFTB has less functionality in processed meats, resulting in lower yields and softer texture. Appropriate use of sodium chloride, sodium tripolyphosphate, k-carrageenan, or isolated soy protein achieved desired stability and yields in frankfurters with FTLB. The softer texture may be used to advantage in high-protein, low-fat meat products where excessive toughness or firmness is often a problem.

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Since pre-industrial times, uptake of anthropogenic CO2 by surface ocean waters has caused a documented change of 0.1 pH units. Calcifying organisms are sensitive to elevated CO2 concentrations due to their calcium carbonate skeletons. In temperate rocky intertidal environments, calcifying and noncalcifying macroalgae make up diverse benthic photoautotrophic communities. These communities may change as calcifiers and noncalcifiers respond differently to rising CO2 concentrations. In order to test this hypothesis, we conducted an 86?d mesocosm experiment to investigate the physiological and competitive responses of calcifying and noncalcifying temperate marine macroalgae to 385, 665, and 1486 µatm CO2. We focused on comparing 2 abundant red algae in the Northeast Atlantic: Corallina officinalis (calcifying) and Chondrus crispus (noncalcifying). We found an interactive effect of CO2 concentration and exposure time on growth rates of C. officinalis, and total protein and carbohydrate concentrations in both species. Photosynthetic rates did not show a strong response. Calcification in C. officinalis showed a parabolic response, while skeletal inorganic carbon decreased with increasing CO2. Community structure changed, as Chondrus crispus cover increased in all treatments, while C. officinalis cover decreased in both elevated-CO2 treatments. Photochemical parameters of other species are also presented. Our results suggest that CO2 will alter the competitive strengths of calcifying and noncalcifying temperate benthic macroalgae, resulting in different community structures, unless these species are able to adapt at a rate similar to or faster than the current rate of increasing sea-surface CO2 concentrations.

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The GTPase dynamin I and the inositol 5-phosphatase synaptojanin are nerve terminal proteins implicated in synaptic vesicle recycling. Both proteins contain COOH-terminal proline-rich domains that can interact with a variety of Src homology 3 (SH3) domains. A major physiological binding partner for dynamin I and synaptojanin in the nervous system is amphiphysin I, an SH3 domain-containing protein also concentrated in nerve terminals. We have used the proline-rich tail of synaptojanin to screen a rat brain library by the two-hybrid method to identify additional interacting partners of synaptojanin. Three related proteins containing SH3 domains that are closely related to the SH3 domains of Grb2 were isolated: SH3p4, SH3p8, and SH3p13. Further biochemical studies demonstrated that the SH3p4/8/13 proteins bind to both synaptojanin and dynamin I. The SH3p4/8/13 transcripts are differentially expressed in tissues: SH3p4 mRNA was detected only in brain, SH3p13 mRNA was present in brain and testis, and the SH3p8 transcript was detected at similar levels in multiple tissues. Members of the SH3p4/8/13 protein family were found to be concentrated in nerve terminals, and pools of synaptojanin and dynamin I were coprecipitated from brain extracts with antibodies recognizing SH3p4/8/13. These findings underscore the important role of SH3-mediated interactions in synaptic vesicle recycling.

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Reactive oxygen species (ROS) and nitric oxide (NO) are important participants in signal transduction that could provide the cellular basis for activity-dependent regulation of neuronal excitability. In young rat cortical brain slices and undifferentiated PC12 cells, paired application of depolarization/agonist stimulation and oxidation induces long-lasting potentiation of subsequent Ca2+ signaling that is reversed by hypoxia. This potentiation critically depends on NO production and involves cellular ROS utilization. The ability to develop the Ca2+ signal potentiation is regulated by the developmental stage of nerve tissue, decreasing markedly in adult rat cortical neurons and differentiated PC12 cells.