462 resultados para glucocorticoids


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Thyroid hormones (THs) have long been known to have regulatory roles in the differentiation and maturation of vertebrate embryos, beginning with the knowledge that hormones of maternal origin are essential for human fetal central nervous and respiratory system development. Precise measurements of circulating THs led to insights into their critically important actions throughout vertebrate growth and development, initially with amphibian metamorphosis and including embryogenesis in fishes. Thyroid cues for larval fish differentiation are enhanced by glucocorticoid hormones, which promote deiodinase activity and thereby increase the generation of triiodothyronine (T-3) from the less bioactive thyroxin (T-4). Glucocorticoids also induce the expression of thyroid hormone receptors in some vertebrates. Maternally derived thyroid hormones and cortisol are deposited in fish egg yolk and accelerate larval organ system differentiation until larvae become capable of endogenous endocrine function. Increases in the T-3/T-4 ratio during larval development may reflect the regulatory importance of maternal thyroid hormones. Experimental applications of individual hormones have produced mixed results, but treatments with combinations of thyroid and corticoid hormones consistently promote larval fish development and improve survival rates. The developmental and survival benefits of maternal endocrine provisioning are increased in viviparous fishes, in which maternal/larval chemical contact is prolonged. Treatments with exogenous thyroid and corticoid hormones consistently promote development and reduce mortality rates in larval fishes, with potential hatchery-scale applications in aquaculture.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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The leukocyte count interpretation on the blood helps on understanding about the possible dysfunction showed by the animal. In general, an abnormal leukogram allows the identification of pathological process. A lot of events lead to an increase in the number of neutrophils, among then, inflammatory process, infection and stress. Dependent on the stress mediator that the animal is submited, the leukocyte alteration will be different. Is important to know how the stress acts on the animal organism, changing the hematological parameters, in order to avoid mistakes on diseases‟ diagnosis. It‟s known that after a stress situation, it‟s expected that stress leukogram appears on the hemogram of the animal. However there are different kinds of stress with different responses. It‟s believed that when the animal is under an acute stress situation, a clinical picture of physiologic leukocytosis occurs which is mediated by the epinephrine. This is characterized by neutrophilia, lymphocytosis, monocytosis and eosinofilia. The physiologic leukocytosis is a transient alteration in the leukogram that occurs within minutes of the stimulus and due to fleeting effect of catecolamines it resolves within 20 to 30 minutes. However, if the animal is under chronicle stress, as solitude, it „s expected to find the stress leukogram on the leukogram, that can be noted especially in dogs. The stress leukogram is characterized by leukocytosis, neutrophilia, lymphopenia, monocytosis and eosinopenia. This kind of stress is induced by the glucocorticoids. It´s important to understand that stress leukogram takes time to occur. The variation on time depends on the animal species, although, in general, the glucocorticoides have a peak effects among 4 to 8 hours, which can last from 24 hours to 2 or 3 days

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O acetato de dexametasona (DXM) é um glicocorticoide com eficácia antiinflamatória e imunossupressora, sendo utilizado nas doenças autoimunes. Sua ação antiinflamatória advém da inibição do acúmulo de células (macrófagos, linfócitos e neutrófilos) na área da inflamação, inibindo também a liberação de mediadores da inflamação como interferon-γ e TNF-α. Já a atividade imunossupressora é alcançada com a redução do concentrado de linfócitos e inibição da síntese e/ou liberação de interleucinas. Porém o uso contínuo do DXM ocasiona uma série de efeitos colaterais sistêmicos, sendo interessante sua aplicação tópica para viabilizar a promoção do aumento da liberação e a estabilização dos níveis plasmáticos do fármaco. Sistemas nanoestruturados como microemulsões (ME) e os cristais líquidos (CL) vêm sendo estudados como novos sistemas de liberação, pois além de se comportarem como reservatórios de fármacos também possibilitam o aumento da estabilidade e da solubilidade dos princípios ativos. Os objetivos deste trabalho foram desenvolver e caracterizar sistemas micro e nanoestruturados, com intuito de incorporar DXM e avaliar sua permeação cutânea in vitro. Foram desenvolvidos sistemas utilizando água, silicone (DC® 193C fluido) e polioxietileno-20-oleil éter (Brij® 98). Os 36 pontos do diagrama de fases foram avaliados, sendo elaboradas formulações com diferentes proporções de água, óleo e tensoativo, sendo possível delimitar regiões como: sistemas transparentes de alta viscosidade (STAV), sistemas transparentes de baixa viscosidade (STBV), sistemas líquido-transparentes (SLT), emulsão viscosa (EV) e emulsão líquida (EL). Três formulações foram selecionadas para os ensaios de caracterização, fixando-se a concentração de tensoativo (T) em 40% e variando-se as concentrações de água e de silicone, denominadas A, B e C. As análises de microscopia de luz polarizada ...

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The endocrine diseases, notably Cushing's disease, are of great importance from the morbid pictures that affect the canine species. Due to the imprecision of the standard tests, the HAC can be a diagnosis difficult to confirm. Often, the clinical manifestations and biochemical and hematological findings support the diagnosis of HAC, but endocrine tests are normal or inconclusive. The excessive production of ACTH may, in the adrenals, not only stimulate the increase of glucocorticoids, but also of sex hormones. In recent studies, the concentrations of sex hormones were used as parameters to check the adrenal gland function in animals with suspected Cushing's disease, suggesting that high serum concentrations of 17 hydroxyprogesterone (17OHP) and other sex steroid hormones would be the cause of the so called atypical hyperadrenocorticism

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Due to the importance of traumatic brain injury (TBI) in small animals, this paper aimed to discuss the pathophysiology of the TBI, the pre-hospital and hospital therapeutic procedures, as well as considerations related to transport and initial care of the patient immediately after trauma. The professional must identify the pre-hospital TBI and to treat the victim as a polytraumatized patient, including immobilization. In hospital therapy the procedures of craniotomy are important, especially to remove blood clots. In addition, the use of glucocorticoids must be avoided because of side effects, but combination therapies such as mannitol with furosemide increase the probability of success

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

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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

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Graves’ ophthalmopathy (GO) is one of the most severe clinical manifestations of Graves’ disease (GD), and its treatment might involve high-dose glucocorticoid therapy. The higher incidence of GO among females, and the reported association between polymorphisms of estrogen receptor (ER) and GD susceptibility have led us to question the role of estrogen and its receptor in GO pathogenesis. We, thus, assessed estrogen receptor-alpha (ERA) gene expression in cultures of orbital fibroblasts from a patient with GO before (controls) and after treatment with 10 nM and 100 nM dexamethasone (DEX). Orbital fibroblasts showed ERA gene expression. In the cells treated with 10 nM and 100 nM DEX, ERA gene expression was, respectively, 85% higher and 74% lower, than in the control group. We concluded that ERA gene expression is found in the orbital fibroblasts of patient with GO, which may be affected by glucocorticoids in a dose-related manner. Arch Endocrinol Metab. 2015;59(3):273-6

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The mechanisms underlying improvement of neuromuscular transmission deficits by glucocorticoids are still a matter of debate despite these compounds have been used for decades in the treatment of autoimmune myasthenic syndromes. Besides their immunosuppressive action, corticosteroids may directly facilitate transmitter release during high-frequency motor nerve activity. This effect coincides with the predominant adenosine A(2A) receptor tonus, which coordinates the interplay with other receptors (e.g. muscarinic) on motor nerve endings to sustain acetylcholine (ACh) release that is required to overcome tetanic neuromuscular depression in myasthenics. Using myographic recordings, measurements of evoked [H-3]ACh release and real-time video microscopy with the FM4-64 fluorescent dye, results show that tonic activation of facilitatory A(2A) receptors by endogenous adenosine accumulated during 50 Hz bursts delivered to the rat phrenic nerve is essential for methylprednisolone (03 mM)-induced transmitter release facilitation, because its effect was prevented by the A(2A) receptor antagonist, ZM 241385 (10 nM). Concurrent activation of the positive feedback loop operated by pirenzepine-sensitive muscarinic M-1 autoreceptors may also play a role, whereas the corticosteroid action is restrained by the activation of co-expressed inhibitory M-2 and Al receptors blocked by methoctramine (0.1 mu M) and DPCPX (2.5 nM), respectively. Inhibition of FM4-64 loading (endocytosis) by methylprednisolone following a brief tetanic stimulus (50 Hz for 5 s) suggests that it may negatively modulate synaptic vesicle turnover, thus increasing the release probability of newly recycled vesicles. Interestingly, bulk endocytosis was rehabilitated when methylprednisolone was co-applied with ZM241385. Data suggest that amplification of neuromuscular transmission by methylprednisolone may involve activation of presynaptic facilitatory adenosine A(2A) receptors by endogenous adenosine leading to synaptic vesicle redistribution. (C) 2014 Elsevier Ltd. All rights reserved.

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

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

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)