4 resultados para Adenosine A1

em Universidade Federal do Pará


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We investigated the participation of A1 or A2 receptors in the gonadotrope and their role in the regulation of LH and FSH secretion in adult rat hemipituitary preparations, using adenosine analogues. A dose-dependent inhibition of LH and FSH secretion was observed after the administration of graded doses of the R-isomer of phenylisopropyladenosine (R-PIA; 1 nM, 10 nM, 100 nM, 1 µM and 10 µM). The effect of R-PIA (10 nM) was blocked by the addition of 8-cyclopentyltheophylline (CPT), a selective A1 adenosine receptor antagonist, at the dose of 1 µM. The addition of an A2 receptor-specific agonist, 5-N-methylcarboxamidoadenosine (MECA), at the doses of 1 nM to 1 µM had no significant effect on LH or FSH secretion, suggesting the absence of this receptor subtype in the gonadotrope. However, a sharp inhibition of the basal secretion of these gonadotropins was observed after the administration of 10 µM MECA. This effect mimicked the inhibition induced by R-PIA, supporting the hypothesis of the presence of A1 receptors in the gonadotrope. R-PIA (1 nM to 1 µM) also inhibited the secretion of LH and FSH induced by phospholipase C (0.5 IU/ml) in a dose-dependent manner. These results suggest the presence of A1 receptors and the absence of A2 receptors in the gonadotrope. It is possible that the inhibition of LH and FSH secretion resulting from the activation of A1 receptors may have occurred independently of the increase in membrane phosphoinositide synthesis.

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We investigated the effects of adenosine on prolactin (PRL) secretion from rat anterior pituitaries incubated in vitro. The administration of 5-N- methylcarboxamidoadenosine (MECA), an analog agonist that preferentially activates A2 receptors, induced a dose-dependent (1 nM to 1 µM) increase in the levels of PRL released, an effect abolished by 1,3-dipropyl-7-methylxanthine, an antagonist of A2 adenosine receptors. In addition, the basal levels of PRL secretion were decreased by the blockade of cyclooxygenase or lipoxygenase pathways, with indomethacin and nordihydroguaiaretic acid (NDGA), respectively. The stimulatory effects of MECA on PRL secretion persisted even after the addition of indomethacin, but not of NDGA, to the medium. MECA was unable to stimulate PRL secretion in the presence of dopamine, the strongest inhibitor of PRL release that works by inducing a decrease in adenylyl cyclase activity. Furthermore, the addition of adenosine (10 nM) mimicked the effects of MECA on PRL secretion, an effect that persisted regardless of the presence of LiCl (5 mM). The basal secretion of PRL was significatively reduced by LiCl, and restored by the concomitant addition of both LiCl and myo-inositol. These results indicate that PRL secretion is under a multifactorial regulatory mechanism, with the participation of different enzymes, including adenylyl cyclase, inositol-1-phosphatase, cyclooxygenase, and lipoxygenase. However, the increase in PRL secretion observed in the lactotroph in response to A2 adenosine receptor activation probably was mediated by mechanisms involving regulation of adenylyl cyclase, independent of membrane phosphoinositide synthesis or cyclooxygenase activity and partially dependent on lipoxygenase arachidonic acid-derived substances.

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In previous studies, we demonstrated biphasic purinergic effects on prolactin (PRL) secretion stimulated by an adenosine A2 agonist. In the present study, we investigated the role of the activation of adenosine A1 receptors by (R)-N6-(2-phenylisopropyl)adenosine (R-PIA) at the pituitary level in in vitro PRL secretion. Hemipituitaries (one per cuvette in five replicates) from adult male rats were incubated. Administration of R-PIA (0.001, 0.01, 0.1, 1, and 10 µM) induced a reduction of PRL secretion into the medium in a U-shaped dose-response curve. The maximal reduction was obtained with 0.1 µM R-PIA (mean ± SEM, 36.01 ± 5.53 ng/mg tissue weight (t.w.)) treatment compared to control (264.56 ± 15.46 ng/mg t.w.). R-PIA inhibition (0.01 µM = 141.97 ± 15.79 vs control = 244.77 ± 13.79 ng/mg t.w.) of PRL release was blocked by 1 µM cyclopentyltheophylline, a specific A1 receptor antagonist (1 µM = 212.360 ± 26.560 ng/mg t.w.), whereas cyclopentyltheophylline alone (0.01, 0.1, 1 µM) had no effect. R-PIA (0.001, 0.01, 0.1, 1 µM) produced inhibition of PRL secretion stimulated by both phospholipase C (0.5 IU/mL; 977.44 ± 76.17 ng/mg t.w.) and dibutyryl cAMP (1 mM; 415.93 ± 37.66 ng/mg t.w.) with nadir established at the dose of 0.1 µM (225.55 ± 71.42 and 201.9 ± 19.08 ng/mg t.w., respectively). Similarly, R-PIA (0.01 µM) decreased (242.00 ± 24.00 ng/mg t.w.) the PRL secretion stimulated by cholera toxin (0.5 mg/mL; 1050.00 ± 70.00 ng/mg t.w.). In contrast, R-PIA had no effect (468.00 ± 34.00 ng/mg t.w.) on PRL secretion stimulation by pertussis toxin (0.5 mg/mL; 430.00 ± 26.00 ng/mg t.w.). These results suggest that inhibition of PRL secretion after A1 receptor activation by R-PIA is mediated by a Gi protein-dependent mechanism.

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Introdução: A dislipidemia é uma das alterações metabólicas do uso da terapia antirretroviral (TARV) em pacientes HIV positivos com Síndrome Lipodistrófica. Objetivo: Avaliar os polimorfismos genéticos das apolipoproteínas A1 e A5 em pacientes HIV positivos com lipodistrofia, em uso de TARV e sua associação com a dislipidemia. Métodos: Estudo do tipo transversal analítico, que utilizou um protocolo de pesquisa, que estudou as condições sóciodemográfica, clínicas, fatores de risco (atividade física, tabagismo, etilismo, frequência alimentar), exames bioquímicos para dislipidemia e avaliação dos polimorfismos das apolipoproteínas A1 e A5. Resultados: Dos 105 pacientes HIV positivos estudados, 63,8% eram homens, com idade média de 44,5 (± 9,4) anos; 70,5% relataram ser solteiros e possuir renda familiar de até três salários mínimos (77,1%). Os fatores de risco observados foram: tabagismo (21%), etilismo (43,8%), sedentarismo (69,5%), Diabetes mellitus (16,2%), excesso de peso (22,9%) e risco cardiovascular (39,1%). A forma de lipodistrofia mais prevalente foi à síndrome mista (51,4%). O consumo alimentar verificou a frequência de frutas (60,8%), legumes e verduras (36,3%), leite e derivados (75%), diariamente. Doces e guloseimas (31,4%), embutidos (11,7%) e lanches gordurosos (26,4%) mais de duas vezes na semana. E o hábito do consumo de carnes com gordura aparente (56,9%). Em relação à classificação da dislipidemia observou que a maioria dos pacientes possuía hipertrigliceridemia isolada (30,5%) e hiperlipidemia mista (32,4%). Observou-se que a hipertrigliceridemia isolada está associada com o gene da apolipoproteína A5 (rs3135506, rs619054 e rs662799), não sendo influenciada pelas formas clínicas de lipodistrofia. Não foi encontrada a presença do polimorfismo da apolipoproteína A1 (Lys107-0must2) nos pacientes em estudo. Conclusão: Os principais fatores para hipertrigliceridemia foram o sexo masculino e os polimorfismos do gene da apolipoproteína A5 (rs3135506, rs619054 e rs662799).