878 resultados para STIMulate
Resumo:
Skeletal muscle is the major deposit of protein molecules. As for any cell or tissue, total muscle protein reflects a dynamic turnover between net protein synthesis and degradation. Noninvasive and invasive techniques have been applied to determine amino acid catabolism and muscle protein building at rest, during exercise and during the recovery period after a single experiment or training sessions. Stable isotopic tracers (13C-lysine, 15N-glycine, ²H5-phenylalanine) and arteriovenous differences have been used in studies of skeletal muscle and collagen tissues under resting and exercise conditions. There are different fractional synthesis rates in skeletal muscle and tendon tissues, but there is no major difference between collagen and myofibrillar protein synthesis. Strenuous exercise provokes increased proteolysis and decreased protein synthesis, the opposite occurring during the recovery period. Individuals who exercise respond differently when resistance and endurance types of contractions are compared. Endurance exercise induces a greater oxidative capacity (enzymes) compared to resistance exercise, which induces fiber hypertrophy (myofibrils). Nitrogen balance (difference between protein intake and protein degradation) for athletes is usually balanced when the intake of protein reaches 1.2 g·kg-1·day-1 compared to 0.8 g·kg-1·day-1 in resting individuals. Muscular activities promote a cascade of signals leading to the stimulation of eukaryotic initiation of myofibrillar protein synthesis. As suggested in several publications, a bolus of 15-20 g protein (from skimmed milk or whey proteins) and carbohydrate (± 30 g maltodextrine) drinks is needed immediately after stopping exercise to stimulate muscle protein and tendon collagen turnover within 1 h.
Resumo:
Vaccines were initially developed on an empirical basis, relying mostly on attenuation or inactivation of pathogens. Advances in immunology, molecular biology, biochemistry, genomics, and proteomics have added new perspectives to the vaccinology field. The use of recombinant proteins allows the targeting of immune responses focused against few protective antigens. There are a variety of expression systems with different advantages, allowing the production of large quantities of proteins depending on the required characteristics. Live recombinant bacteria or viral vectors effectively stimulate the immune system as in natural infections and have intrinsic adjuvant properties. DNA vaccines, which consist of non-replicating plasmids, can induce strong long-term cellular immune responses. Prime-boost strategies combine different antigen delivery systems to broaden the immune response. In general, all of these strategies have shown advantages and disadvantages, and their use will depend on the knowledge of the mechanisms of infection of the target pathogen and of the immune response required for protection. In this review, we discuss some of the major breakthroughs that have been achieved using recombinant vaccine technologies, as well as new approaches and strategies for vaccine development, including potential shortcomings and risks.
Resumo:
The field of vaccinology was born from the observations by the fathers of vaccination, Edward Jenner and Louis Pasteur, that a permanent, positive change in the way our bodies respond to life-threatening infectious diseases can be obtained by specific challenge with the inactivated infectious agent performed in a controlled manner, avoiding the development of clinical disease upon exposure to the virulent pathogen. Many of the vaccines still in use today were developed on an empirical basis, essentially following the paradigm established by Pasteur, “isolate, inactivate, and inject” the disease-causing microorganism, and are capable of eliciting uniform, long-term immune memory responses that constitute the key to their proven efficacy. However, vaccines for pathogens considered as priority targets of public health concern are still lacking. The literature tends to focus more often on vaccine research problems associated with specific pathogens, but it is increasingly clear that there are common bottlenecks in vaccine research, which need to be solved in order to advance the development of the field as a whole. As part of a group of articles, the objective of the present report is to pinpoint these bottlenecks, exploring the literature for common problems and solutions in vaccine research applied to different situations. Our goal is to stimulate brainstorming among specialists of different fields related to vaccine research and development. Here, we briefly summarize the topics we intend to deal with in this discussion.
Resumo:
Oxidative low-density lipoprotein (Ox-LDL) is a key risk factor for the development of atherosclerosis, and it can stimulate the expression of a variety of inflammatory signals. As a new and highly sensitive inflammation index, OX40L may be a key to understanding the mechanisms that regulate interactions between cells within the vessel wall and inflammatory mediators during the development of atherosclerosis. To investigate whether Ox-LDL regulates OX40L expression through an oxidized LDL-1 receptor (LOX-1)-mediated mechanism, we investigated the effect of different concentrations of Ox-LDL (50, 100, 150 µg/mL) on endothelial cell proliferation and apoptosis. Stimulation with Ox-LDL increased OX40L protein 1.44-fold and mRNA 4.0-fold in endothelial cells, and these effects were inhibited by blocking LOX-1. These results indicate that LOX-1 plays an important role in the chronic inflammatory process in blood vessel walls. Inhibiting LOX-1 may reduce blood vessel inflammation and provide a therapeutic option to limit atherosclerosis progression.
Resumo:
A previous study showed that BMP-2 (bone morphogenetic protein-2) and wear debris can separately support osteoclast formation induced by the receptor activator of NF-κB ligand (RANKL). However, the effect of BMP-2 on wear debris-induced osteoclast formation is unclear. In this study, we show that neither titanium particles nor BMP-2 can induce osteoclast formation in RAW 264.7 mouse leukemic monocyte macrophage cells but that BMP-2 synergizes with titanium particles to enhance osteoclast formation in the presence of RANKL, and that at a low concentration, BMP-2 has an optimal effect to stimulate the size and number of multinuclear osteoclasts, expression of osteoclast genes, and resorption area. Our data also clarify that the effects caused by the increase in BMP-2 on phosphorylated SMAD levels such as c-Fos expression increased throughout the early stages of osteoclastogenesis. BMP-2 and titanium particles stimulate the expression of p-JNK, p-P38, p-IkB, and P50 compared with the titanium group. These data suggested that BMP-2 may be a crucial factor in titanium particle-mediated osteoclast formation.
Resumo:
Heterotopic ossification (HO) is a metaplastic biological process in which there is newly formed bone in soft tissues, resulting in joint mobility deficit and pain. Different treatment modalities have been tried to prevent HO development, but there is no consensus on a therapeutic approach. Since electrical stimulation is a widely used resource in physiotherapy practice to stimulate joint mobility, with analgesic and anti-inflammatory effects, its usefulness for HO treatment was investigated. We aimed to identify the influence of electrical stimulation on induced HO in Wistar rats. Thirty-six male rats (350-390 g) were used, and all animals were anesthetized for blood sampling before HO induction, to quantify the serum alkaline phosphatase. HO induction was performed by bone marrow implantation in both quadriceps of the animals, which were then divided into 3 groups: control (CG), transcutaneous electrical nerve stimulation (TENS) group (TG), and functional electrical stimulation (FES) group (FG) with 12 rats each. All animals were anesthetized and electrically stimulated twice per week, for 35 days from induction day. After this period, another blood sample was collected and quadriceps muscles were bilaterally removed for histological and calcium analysis and the rats were killed. Calcium levels in muscles showed significantly lower results when comparing TG and FG (P<0.001) and between TG and CG (P<0.001). Qualitative histological analyses confirmed 100% HO in FG and CG, while in TG the HO was detected in 54.5% of the animals. The effects of the muscle contractions caused by FES increased HO, while anti-inflammatory effects of TENS reduced HO.
Resumo:
Damage to cartilage causes a loss of type II collagen (Col-II) and glycosaminoglycans (GAG). To restore the original cartilage architecture, cell factors that stimulate Col-II and GAG production are needed. Insulin-like growth factor I (IGF-I) and transcription factor SOX9are essential for the synthesis of cartilage matrix, chondrocyte proliferation, and phenotype maintenance. We evaluated the combined effect of IGF-I and SOX9 transgene expression on Col-II and GAG production by cultured human articular chondrocytes. Transient transfection and cotransfection were performed using two mammalian expression plasmids (pCMV-SPORT6), one for each transgene. At day 9 post-transfection, the chondrocytes that were over-expressing IGF-I/SOX9 showed 2-fold increased mRNA expression of the Col-II gene, as well as a 57% increase in Col-II protein, whereas type I collagen expression (Col-I) was decreased by 59.3% compared with controls. The production of GAG by these cells increased significantly compared with the controls at day 9 (3.3- vs 1.8-times, an increase of almost 83%). Thus, IGF-I/SOX9 cotransfected chondrocytes may be useful for cell-based articular cartilage therapies.
Resumo:
Neuropeptide Y (NPY) is a neurotransmitter promoting energy storage by activating Y-receptors and thus affecting food intake, thermogenesis and adipose tissue metabolism. NPY is expressed both in the central and sympathetic nervous system. Hypothalamic NPY is known to stimulate feeding, but the effects of noradrenergic neuron NPY are more ambiguous. Chronic stress stimulates fat accumulation via NPY release from noradrenergic neurons. Furthermore, polymorphism in the human Npy gene has been associated with metabolic disturbances and increased NPY secretion after sympathetic stimulation. The main objective of this study was to clarify the mechanisms of noradrenergic neuron NPY in the development of obesity. The metabolic phenotype of a homozygous mouse overexpressing NPY in the brain noradrenergic neurons and sympathetic nervous system (OE-NPYDβH mouse) was characterized. OE-NPYDβH mice had an increased fat mass and body weight, which caused impairments of glucose metabolism and hyperinsulinaemia with age. There were no differences in energy intake or expenditure, but the sympathetic tone was down-regulated and the endocannabinoid system activated. Furthermore, peripheral Y2-receptors in energy-rich conditions played an important role in mediating the fat-accumulating effect of NPY. These results indicate that noradrenergic neuron NPY promotes obesity via direct effects in the periphery and by modulating the sympatho-adrenal and endocannabinoid systems. Additionally, NPY in the central noradrenergic neurons is believed to possess many important roles. The phenotype of the OE-NPYDβH mouse resembles the situations of chronic stress and Npy gene polymorphism and thus these mice may be exploited in testing novel drug candidates for the treatment of obesity.
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Abstract In order to take full advantage of Tenebrio molitor larvae (yellow mealworm) resources, the supercritical CO2 fluid freeze-dried powder of T. molitor larvae (fdTML) extraction on the immune systems of mice was carried out. The results about the effects of supercritical CO2 fluid fdTML extraction on carbon expurgation and phagocytosis of peritoneal macrophages experiments of mice indicated that the fdTML extraction enhanced observably carbon expurgatory index, phagocytic rate and phagocytic index. The fdTML extraction could stimulate response of delayed hypersensitivity. The proliferation of ConA-induced mitogenic reponse for spleen lymphocyte was also increased. The amount of hemolytic antibody in mice serum increased compared with those of the control group mice. The half of hemolysis values in serum of treated mice increased compared to the control group. Furthermore, serum NO content in all treatment groups was higher than that of the control group whereas acid phosphatase and alkaline phosphatase activity was only significantly higher relative to the control group. Our findings suggest that supercritical CO2 fluid the fdTML extraction has potential as a health food supplement.
Resumo:
O cultivo do milho é altamente tecnológico e absorve as inovações no sistema produtivo, visando ganhos em produção, mas deve-se atentar para os reais ganhos com a incorporação de novos produtos às sementes. O objetivo deste trabalho foi avaliar o efeito do bioestimulante Stimulate® e do fertilizante líquido Cellerate®, via tratamento de sementes, seis meses antes da semeadura e na pré-semeadura, na qualidade fisiológica das sementes de um híbrido simples (GNZ 2004) e de uma linhagem (L57) e na produtividade da cultura. Os ensaios foram conduzidos no Laboratório de Sementes e no campo experimental da Universidade Federal de Lavras (UFLA), Lavras/Mg. Os tratamentos, nas duas épocas, foram: testemunha; 5 mL.kg-1 de sementes de Stimulate® ; 5 e 10 mL.kg-1 de sementes de Cellerate®. Para avaliação da qualidade das sementes foram realizados os teste de germinação, emergência, velocidade de emergência, teste de frio, massa seca de parte aérea e de raiz das plântulas e análise das enzimas esterase, superóxido dismutase, malato desidrogenase, álcool desidrogenase, catalase e á-amilase. No ensaio em campo foram avaliadas a altura de planta, altura de espiga, número de espigas e produtividade. O tratamento das sementes de milho com o Cellerate®, na dose de 10 ml.kg-1 de sementes, acima da dose recomendada pelo fabricante, reduz a emergência de plântulas de milho de linhagem e de híbrido e a germinação de sementes de linhagem, quando o tratamento é feito na pré-semeadura. O tratamento das sementes de milho com o bioestimulante Stimulate® e com o fertilizante Cellerate® não afeta a produtividade de grãos.
Resumo:
Sabe-se que os micronutrientes e os reguladores de crescimento são importantes ativadores metabólicos, o que pode trazer benefícios à germinação e ao vigor das sementes quando incorporados ao tratamento e, com isso, aumentar o potencial de desenvolvimento das plantas no campo. O estudo foi desenvolvido com objetivo de avaliar o efeito da aplicação de micronutrientes e reguladores de crescimento na germinação, no vigor, na atividade de algumas enzimas e no teor de proteínas totais em sementes de alface durante o armazenamento. As sementes foram tratadas com os produtos Starter®, Cellerate® e Stimulate® nas dosagens correspondentes a 0, 50, 100, 150 e 200% da dose recomendada pelo fabricante, utilizando a técnica de peliculização. As avaliações foram realizadas aos 0, 6 e 12 meses de armazenamento pelas seguintes características: porcentagem de germinação, porcentagem e índice de velocidade de emergência, atividade das enzimas endo-β-mananase e esterase, teor de proteínas totais e sanidade. Concluiu-se que o produto à base de reguladores de crescimento promove aumento na velocidade de emergência das plântulas de alface quando aplicado na dose recomendada e na pré-semeadura. O revestimento das sementes de alface com o dobro da dose recomendada dos produtos à base de micronutrientes e reguladores de crescimento provoca redução na sua qualidade. A atividade da enzima esterase aumenta com o armazenamento das sementes de alface, indicando aumento no processo de deterioração. O revestimento com micronutrientes e reguladores de crescimento e o armazenamento interferem na atividade da enzima endo-β-mananase em sementes de alface.
Resumo:
O objetivo do presente trabalho foi avaliar a qualidade fisiológica e sanitária das sementes, em resposta à aplicação do biorregulador Stimulate® na cultura da soja. Para tanto, sementes de soja da cultivar BRS 246 RR foram semeadas no mês de outubro dos anos agrícolas de 2007/2008 e 2008/2009, no delineamento experimental em blocos completos com os tratamentos casualizados, com quatro repetições. Os tratamentos, arranjados em esquema fatorial, foram compostos pela combinação do tratamento de sementes com o biorregulador (sem e com 0,500 L 100 kg-1 de sementes) e cinco doses do produto (0; 0,125; 0,250; 0,375 e 0,500 L ha-1) aplicadas via foliar, em dois estádios de desenvolvimento da cultura (V5 ou R3). O uso do biorregulador Stimulate® altera positivamente qualidade das sementes, sobretudo quando as aplicações foliares ocorrem no estádio V5.
Resumo:
The aim of this paper is to carry out an empirical analysis about the relation between Capital Account Liberalization and Economic Growth having as object of study the experience of 16 countries of Latin America with annual data for the period 1986-2000. The econometrical calculations do not corroborate the hypothesis that the liberalization of Capital Account would stimulate the economic growth. The results suggest an adverse effect of the liberalization of the Capital Account on the real growth gross domestic product per capita of the countries.
Resumo:
My doctoral thesis may be placed within the branch of studies on the history of international relations and it examines the development of Italian-Finnish bilateral relations during the mandate of Attilio Tamaro, the plenipotentiary Minister (1929-1935). The research is based exclusively on Italian sources, on the private documentation of the diplomat and on his “Memoriale”, which have been critically analysed, using theories, such as those on the policies of power, on the soft power and on foreign trade. This research aims to draw attention to the bilateral dynamics, and to bridge the gaps of the specific historiography, paying attention to the relations between the Lapua movement and Italian fascism, and to the role that the Minister Tamaro played. The 1929-1935 period is the most intense one in the bilateral relations, and it expands those already begun in the Twenties, thereby replacing the idea of a poor and backward Italy with that of a modern, strong and orderly country that fascism had been capable of building. The need for Finland to solve its internal problems led to the development of the lappist movement in the first few months of 1930 which, with its anticommunism and anti-parliamentarism, led conservative Finland to look towards the Italian political model with particular fondness. The Italian diplomacy, at least during the Grandi ministry, distinguished itself for its moderate involvement in its connections with lappism. After 1932, with the spread of universal fascism, opposing national-socialism, the relationships between fascism and the lappist movement intensified and led the IKL (Patriotic People’s Movement) into the Italian sphere. Actually, especially after 1933, what was the most effective instrument of Tamaro’s political action was culture: the Italian Readership, the cultural associations, and the use of the cinematic arts and art were the channels for the expansion of a cultural imperialism which abounded in political propaganda. With the War of Ethiopia in 1935, the good Italian-Finnish relationships partly cooled down because Italy appeared to be a dangerous nation for the stability of the security system of Finland. The research results are stimulating: they bring to light the ambitions of great power of monarchist-fascist Italy; they show the importance of the Italian example in inspiring the conservative Finnish right-wing; they allow one to hypothesize that there was at least an indirect influence of the Italian model on the development of Finnish events. The aspiration of our research is to stimulate further studies on diplomatic, military and trade relations between Italy and the Scandinavian countries from 1919 to today.
Resumo:
Gamma-aminobutyric acid (GAB A) is a ubiquitous non-protein amino acid synthesized via the decarboxylation of L-glutamate in a reaction catalyzed by the cytosolic enzyme L-glutamate decarboxylase (GAD). In animals it functions as an inhibitory neurotransmitter. In plants it accumulates rapidly in response to various stresses, but its function remains unclear. The hypothesis that GABA accumulation in leaf tissue may function as a plant resistance mechanism against phytophagous insect activity was investigated. GABA accumulation in response to mechanical stimulation, mechanical damage and insect activity was demonstrated. In wt tobacco (Nicotiana tabacum cv Samsun), mechanical stimulation or damage caused GABA to accumulate within 2 min from mean levels of 14 to 37 and 1~9 nmol g-l fresh weight (FW), respectively. In the transgenic tobacco strain CaMVGAD27c overexpressing Petunia GAD, the same treatments caused GABA to accumulate from 12 to 59 and 279 nmol g-l FW, respectively. In the transgenic tobacco strain CaMVGADilC 11 overexpressing Petunia GAD lacking an autoinhibitory domain, mechanical stimulation or damage caused GABA to accumulate from 180 to 309 and 630 nmol g-l FW, respectively. Ambulatory activity by tobacco budworm (TBW) larvae (Heliothis virescens) on leaves of CaMVGAD27c tobacco caused GABA to accumulate from 28 to 80 nmol g-l FW within 5 min. Ambulatory and leaf-rolling activity by oblique banded leaf roller (OBLR) larvae (Choristoneura rosaceana cv Harris) on wt soybean leaves (Glycine max cv Harovinton) caused GABA to accumulate from 60 to 1123 nmol g-l FW within 20 min. Increased GABA levels in leaf tissue were shown to affect phytophagous preference in TBW larvae presented with wt and transgenic tobacco leaves. When presented with leaves of Samsun wt and CaMVGAD27c plants, TBW larvae consumed more wt leaf tissue (640 ± 501 S.D. mm2 ) than transgenic leaf tissue (278 ± 338 S.D. mm2 ) nine times out of ten. When presented with leaves of Samsun wt and CaMVGAD~C11 plants, TBW larvae consumed more transgenic leaf tissue (1219 ± 1009 S.D. mm2 ) than wt leaf tissue (28 ± 31 S.D. mm2 ) ten times out of ten. These results indicate that: (1) ambulatory activity of insect larvae on leaves results in increased GABA levels, (2) transgenic tobacco leaves with increased capacity for GABA synthesis deter feeding, and (3) transgenic tobacco leaves with constitutively higher GABA levels stimulate feeding.