983 resultados para L-ARGININE


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We study the voltage dependent calcium channels and nitric oxide involvement in angiotensin II-induced pressor effect. The antipressor action of L-Type calcium channel antagonist, nifedipine, has been studied when it was injected into the third ventricle prior to angiotensin II. The influence of nitric oxide on nifedipine antipressor action has also been studied by utilizing N(W)-nitro-L-arginine methyl ester (LNAME) (40 mu g/0.2 mu l) a nitric oxide synthase inhibitor and L-arginine ( 20 mu g/0.2 mu l), a nitric oxide donor agent. Adult male Holtzman rats weighting 200-250 g, with cannulae implanted into the third ventricle were injected with angiotensin II. Angiotensin II produced an elevation in mean arterial pressure and a decreased in heart rate. Such effects were potentiated by the prior injection of LNAME. L-arginine and nifedipine blocked the effects of angiotensin II. These data showed the involvement of L-Type calcium channel and a free radical gas nitric oxide in the central control of angiotensin II-induced pressor effect. This suggested that L-Type calcium channel of the circunventricular structures of central nervous system participated in both short and long term neuronal actions of ANG II with the influence of nitrergic system.

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

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The drinking behavior responses to centrally administered NG-nitro-L-arginine methyl ester (L-NAME; 10, 20 or 40 µg/µl), an inhibitor of nitric oxide synthase, were studied in satiated rats, with cannulae stereotaxically implanted into the lateral ventricle (LV) and subfornical organ (SFO). Water intake increased in all animals after angiotensin II (ANG II) injection into the LV, with values of 14.2 ± 1.4 ml/h. After injection of L-NAME at doses of 10, 20 or 40 µg/µl into the SFO before injection of ANG II (12 ng/µl) into the LV, water intake decreased progressively and reached basal levels after treatment with 0.15 M NaCl and with the highest dose of L-NAME (i.e., 40 µg). The water intake obtained after 40 µg/µl L-NAME was 0.8 ± 0.01 ml/h. Also, the injection of L-NAME, 10, 20 or 40 µg/µl, into the LV progressively reduced the water intake induced by hypertonic saline, with values of 5.3 ± 0.8, 3.2 ± 0.8 and 0.7 ± 0.01 ml/h, respectively. These results indicate that nitric oxide is involved in the regulation of drinking behavior induced by centrally administered ANG II and cellular dehydration and that the nitric oxide of the SFO plays an important role in this regulation.

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As several structures of the central nervous system are involved in the control of hydromineral and cardiovascular balance we investigated whether the natriorhexigenic and pressor response induced by the injection of ANG II into the 3rd V could be mediated by vasopressinergic and nitrergic system. Male Holtzman rats weighing 200-250 g with cannulae implanted into the 3rd V were used. The drugs were injected in 0.5 μL over 30-60 sec. Controls were injected with a similar volume of 0.15 M NaCl. ANGII increased the water intake vs control. AVPA injected into 3rd V prior to ANGII decreased the dipsogenic effect of ANGII. L-arginine also decreased the water intake induced by ANGII. AVPA plus L-arginine inhibit the water intake induced by ANGII. 7NIT injected prior to ANGII potentiated the dipsogenic effect of ANGII. Pre-treatment with ANGII increased the sodium ingestion vs control. AVPA decreased the ANGII effect in sodium intake. L-arginine also decreased the natriorhexigenic effect of ANGII. The combination of L-arginine and AVPA inhibit the sodium intake induced by ANGII. 7NIT injected prior to ANGII potentiated the sodium intake induced by ANGII. ANGII induced an increase in Mean Arterial Pressure (MAP) vs control. AVPA and L-arginine induced a decreased in the pressor effect of ANGII. The combination of L-arginine and AVPA inhibit the pressor effect of ANGII. 7NIT injected prior to ANGII into 3rd V potentiated the pressor effect of ANGII. These data suggest that arginine vasopressin V 1 receptors and Nitric Oxide (NO) within the circumventricular structures may be involved in sodium intake and pressor response induced by the activation of ANGII receptors within the circumventricular neurons. These studies revealed the involvement of sodium appetite by utilizing the angiotensinergic, vasopressinergic and nitrergic system in the central regulation of blood pressure. © 2006 Asian Network for Scientific Information.

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The median preoptic nucleus (MnPO) is one of most important site of the lamina terminalis implicated in the regulation of hydro electrolytic and cardiovascular balance. The purpose of this study was to determine the effect of L-Type calcium channel antagonist, nifedipine, on the increase of median arterial blood pressure (MAP) induce by angiotensin II (ANG II) injected into the MnPO. The influence of nitric oxide (NO) on nifedipine antipressor action has also been studied by utilizing N W-nitro-L-arginine methyl ester (L-NAME) (40 μg 0.2 μL -1) a NO synthase inhibitor (NOSI), 7-nitroindazole (7-NIT) (40 μg 0.2 μL -1), a specific neuronal NO synthase inhibitor (nNOSI) and sodium nitroprusside (SNP) (20 μg 0.2 μL -1) a NO donor agent. We have also investigated the central role of losartan and PD123349 (20 nmol 0.2 μL -1), AT 1 and AT 2, respectively (selective non peptide ANG II receptor antagonists), in the pressor effect of ANG II (25 pmol 0.2 μL -1) injected into the MnPO. Male Wistar rats weighting 200-250 g, with cannulae implanted into the MnPO were utilized. Losartan injected into the MnPO, prior to ANG II, blocked the pressor effect of ANGII. PD 123319 only decreased the pressor effect of ANG II. Rats pre-treated with either 50 μg 0.2 μL -1 or 100 μg 0.2 μL -1 of nifedipine, followed by 25 pmol 0.2 μL -1 of ANG II, decreased ANG II-pressor effect. L-NAME potentiated the pressor effect of ANG II. 7-NIT injected prior to ANG II into the MnPO also potentiated the pressor effect of ANGII but with less intensity than that of L-NAME. SNP injected prior to ANG II blocked the pressor effect of ANG II. The potentiation action of L-NAME and 7-NIT on ANG II-pressor effect was blocked by prior injection of nifedipine. The results described in this study provide evidence that calcium channels play important roles in central ANG II-induced pressor effect. The structures containing NO in the brain, such as MnPO, include both endothelial and neuronal cells, which might be responsible for the influence of nifedipine on the pressor effect of ANG II. These data have shown the functional relationship between L-Type calcium channel and a free radical gas NO in the MnPO, on the control of ANG II-induced pressor effect acting in AT 1 and AT 2 receptors.

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We study the effects of angiotensin receptors antagonists, arginine vasopressin receptor antagonist, L-arginine and L-NAME, injected into supraoptic nucleus of the hypothalamus (SON) on sodium intake induced by the injection of angiotensin II (ANGII). Holtzman rats weighing 200-250 g with canulae implanted into the SON were used. The drugs were injected in 0.5 μL over 30-60 sec. Sodium intake after injection of saline SAL+SAL 0.15 M NaCl was 0.10±00.1 mL 2 h -1; SAL+ANGII injected into SON increased sodium intake. Losartan injected prior to ANGII into SON decreased sodium intake induced by ANGII. PD123319 injected prior to ANGII produced no changes in sodium intake induced by ANGII. AVPA receptor V 1 antagonist injected prior to ANGII reduced sodium intake with a less intensity than losartan. L-arginine injected prior to ANGII decreases sodium intake at a same intensity than losartan. L-NAME injected prior to ANGII potentiated sodium intake induced by ANGII. Losartan injected simultaneously with L-arginine prior to ANGII blocked the natriorexigenic effect of ANGII. These results confirm the importance of SON in the control of sodium intake. Also suggest that both AT 1 and arginine vasopressin V 1 receptors interact with nitrergic pathways within the SON influencing the sodium metabolism by changing sodium appetite induced by ANGII. © 2007 Asian Network for Scientific Information.

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We determined the effects of AT 1 and AT 2 (selective no peptides antagonists angiotensin receptors), arginine vasopressin V 1 receptor antagonist as well as L-arginine, a nitric oxide donor and N W-nitro-L-arginine methyl ester (L-NAME), a nitric oxide synthase inhibitor, injected into supraoptic nucleus (SON) on water and sodium intake induced by the injection of angiotensin II (ANGII). Male Holtzman rats weighing 200-250 g with canulae implanted into the SON were used. The drugs were injected in 0.5 μL over 30-60 sec. The water intake after injection of saline SAL+SAL 0.15 M NaCl was 0.40±0.1 mL 2 h -1; SAL+ANGII increase water intake. Losartan decreased the water intake induced by ANGII. PD123319 injected prior to produce no change in water intake induced by ANGII. AVPA prior to ANGII reduced the water intake with a less intensity than losartan. L-arginine prior to ANGII decreases the water intake at a same intensity than losartan. L-NAME prior to ANGII potentiated the dipsogenic effect of ANGII. Losartan injected simultaneously with L-arginine prior to ANGII blocked the dipsogenic effect of ANGII. These results confirm the importance of SON in the control of water intake and strongly suggest that AT 1, V 1 receptors interact with nitrergic pathways within the SON influencing the dipsogenic effect of ANGII.

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Nitric oxide is synthesized from L-arginine and plays an important role in blood pressure regulation, platelets aggregation and atherosclerosis development. Most of the studies have shown that the beneficial effects of the L-arginine supplementation are related to an increasing of nitric oxide bioavailability to the cells, improving the endothelial dysfunction, decreasing oxidative stress, ameliorating lipid profile and insulin resistance. However some studies show conflicting results. Considering the role of the endothelium on the pathogenesis of the cardiovascular diseases as well as on the endocrine-metabolic diseases, this review will update studies involving the role of nitric oxide and its signaling pathways in the regulation of vascular function. Furthermore, this review will focus on the main results of the clinical trials using oral L-arginine supplementation, with or without physical exercise, in an attempt to obtain beneficial effects on the cardiovascular and endocrine-metabolic systems in patients and healthy subjects.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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O objetivo deste trabalho foi avaliar o uso da L-arginina nos processos de capacitação espermática e fecundação in vitro (FIV), analisando sua influência no desenvolvimento embrionário, utilizando o sêmen de dois touros (Bos taurus e Bos indicus). No experimento 1, os espermatozóides foram incubados, sem a presença de oócitos, durante 0, 1, 2 e 3 h em meio de FIV adicionado de 0, 1, 10 e 50 mM de L-arginina, sendo analisada a taxa de reação acrossômica. No experimento 2, espermatozóides e oócitos foram incubados em meio de FIV acrescido com as concentrações de L-arginina citadas anteriormente, durante aproximadamente 30 h. Os oócitos bovinos foram maturados in vitro (MIV) e o subsequente cultivo embrionário (CIV) foi realizado sobre monocamada de células da granulosa, em meio SOF, sendo avaliadas as taxas de fecundação (18 hpi), clivagem e blastocisto (2º e 7º dia de cultivo, respectivamente). A dosagem de NO3 -/NO2 - produzido durante a FIV foi realizada através do método colorimétrico de Griess. Para análise estatística dos dados, foi utilizado a ANOVA, com nível de significância de 5%. A Larginina (1 mM), quando adicionada ao meio de capacitação espermática, durante duas horas, aumentou a taxa de reação acrossômica em relação ao controle (31,1±2,78 vs 23,4±2,65) em Bos taurus. A adição de L-arginina (50 mM) ao meio de FIV (experimento 2), tanto em Bos taurus quanto em Bos indicus, diminuiu as taxas de clivagem (78,7±2,17 vs 65,7±9,32; 72,7±3,36 vs 45±7,12; respectivamente) e blastocisto (39,4±3,78 vs 15,2±6,12; 39,4±4,39 vs 16±8,54; respectivamente) em relação ao controle. Sendo assim, observou-se que a L-arginina aumentou a taxa de reação acrossômica em Bos taurus, porém reduziu as taxas de clivagem e blastocistos em ambos os touros, sem influenciar na qualidade do embrião.

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O crescente consumo de bebidas com elevado teor de cafeína pode resultar no aparecimento de sintomas provenientes do transtorno de ansiedade induzida por essa droga. Atualmente, tem-se utilizado a cafeína como um indutor farmacológico do comportamento tipo ansiedade e essa indução pode facilitar a melhor compreensão da relação entre alterações comportamentais e os mecanismos de ação envolvidos nesse efeito, portanto o presente trabalho propôs que a via nitrérgica poderia ser um mecanismo chave para explicar os efeitos comportamentais produzidos pela cafeína e que esses efeitos poderiam ser revertidos por um antioxidante, logo, no presente trabalho nós tivemos como objetivo avaliar o possível efeito do L-NAME e do α-tocoferol no comportamento tipo ansiedade ampliado pela cafeína nos testes de preferência claro/escuro (PCE) e distribuição vertical eliciada pela novidade (DVN) em Daniorerio. Foram utilizados peixes da espécie Daniorerio(n=178) subdivididos nos seguintes grupos experimentais: SAL – salina 0,9%; CAF – cafeína 100 mg/kg; DMSO – dimetilsulfóxido 0,1%; L-NAME - (N -Nitro-L-arginina-metil éster hidrocloreto) 10 mg/kg; TF – α-tocoferol 1 mg/kg (receberam apenas uma injeção por i.p); SAL + SAL; DMSO + SAL; SAL + CAF; L-NAME + SAL; L-NAME +CAF; TF + CAF (receberam duas injeções seguidas, uma injeção de cada substância na forma de cotratamento, por i.p). Os animais foram submetidos ao teste de preferência claro/escuro e de distribuição vertical eliciada pela novidade. Todos os testes foram filmados e os vídeos foram avaliados utilizando o X-PLO-RAT. Os dados foram expressos em média ± erro padrão. Foi aplicado o teste de normalidade utilizando o teste Shapiro-Wilk e o teste paramétrico ANOVA de uma via com pós-teste Tukey, considerando significativos valores com p<0,05. Nós demonstramos que o α-tocoferol na dose de 1 mg/kg reverteu todos os parâmetros do comportamento tipo ansiedade ampliado pela cafeína nos testes de PCE e do DVN e esse efeito foi semelhante ao observado quando administrado um inibidor da enzima óxido nítrico sintase (NOS), L-NAME. Portanto, o presente trabalho demonstrou pela primeira vez que o efeito comportamental ampliado pela cafeína no teste escotáxico e no DVN pode ser modulado pelo sistema nitrérgico e que o α-tocoferol reverte esse efeito comportamental induzido pela cafeína de forma total.

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