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      Role of NO in arterial vascular function of intertidal fish (Girella laevifrons) and marine fish (Isacia conceptionis) Translated title: Papel do NO na função vascular arterial de peixes entremarés (Girella laevifrons) e peixes marinhos (Isacia conceptionis)

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          Abstract

          Abstract Previous studies performed in intertidal fish (Girella laevifrons),as well as marine fish (Isacia conceptionis), showed that acetylcholine (ACh) produced contractions mediated by cyclooxygenases that were dependent on the area and potency of contraction in several arterial vessels. Given that the role of nitric oxide is poorly understood in fish, the objective of our study was to evaluate the role of nitric oxide in branchial afferent (ABA), branchial efferent (ABE), dorsal (DA) and mesenteric (MA) arterial vessels from both Girella laevifrons and Isacia conceptionis. We studied afferent and efferent branchial, dorsal and mesenteric arteries that were dissected from 6 juvenile specimens. Isometric tension studies were done using dose response curves (DRC) for Ach (10–13 to 10–3 M) and blockade with L-NAME (10–5 M), and DRC for sodium nitroprusside (SNP, a donor of NO). L-NAME produced an attenuation of the contractile response in the dorsal, afferent and efferent branchial arteries and a potentiation of the contraction in the MA. SNP caused 70% dilation in the mesenteric artery and 40% in the dorsal artery. Our results suggest that Ach promotes precarious dilatation in MA mediated by NO; data that is supported by the use of sodium nitroprusside. In contrast, in the vessels DA, ABA and EBA our results support that the pathway Ach-NO-relaxation is absent in both species.

          Translated abstract

          Resumo Estudos anteriores, realizados no peixe intertidal (Girellalaevifrons) no peixe marinho (Isacia conceptionis), mostram que a acetilcolina (Ach) provoca contrações mediadas por ciclooxigenases que eram dependentes da área e potencia da contração em vários vasos arteriais. Tendo em conta que o papel do óxido nítrico é mal compreendido em peixes, o objetivo do nosso estudo foi avaliar o papel do óxido nítrico em vasos arteriais de ambos os peixes Girella laevifrons e Isacia conceptionis. Nós estudamos os vasos aferente, branquial (ABA), eferente branquial (ABE), dorsal (DA) e mesentérica (MA), que foram dissecadas de seis espécimes juvenis. Estudos de tensão isométrica foram realizados utilizando as curvas de dose-resposta (DRC) para Ach (10–13 a 10–3M) e bloqueio com L-NAME (10–5 M), e na DRC para o nitroprussiato de sódio (SNP, doador do NO). L- NAME produziu uma atenuação da resposta contrátil nas artérias dorsais, aferentes e eferentes branquial e uma potenciação da contração no MA. SNP causaram 70% da dilatação da artéria mesentérica e 40% na artéria dorsal. Nossos resultados sugerem que Ach promove dilatação precária em MA mediada por NO; dados que é suportada pela utlilização de nitroprussiato de sódio. Em contraste, nos vasos de DA, ABA e EBA nossos resultados suportam que a via de Ach-NO-relaxamento está ausente em ambas as espécies.

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          Most cited references29

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          Isolated perfused rabbit coronary artery and aortic strip preparations: the role of endothelium-derived relaxant factor.

          Isolated perfused coronary arteries and aortic ring preparations of rabbits were studied, both with intact endothelium and with endothelium removed by K-rich solution and friction respectively. Constrictor dose-responses to histamine, acetylcholine, phenylephrine and 5-hydroxytryptamine (5-HT) were measured. They were greatly depressed by the presence of endothelium in coronary preparations. In aortic preparations endothelium affected dose-responses relatively little, depressing the response to acetylcholine but apparently increasing the responses to the other three agents. Acetylcholine relaxed pre-constricted coronary or aortic preparations but only when endothelium was present. This relaxation was inhibited by quinacrine or hydroquinone. Aortic preparations had resting tone which could be increased by hydroquinone if endothelium was present, suggesting continual release of endothelium-derived relaxant factor (EDRF) at rest. When allowance was made for basal EDRF activity in aortic preparations, the maximal constrictor response to acetylcholine remained lower in the presence of endothelium, consistent with acetylcholine stimulation of EDRF, but maximal constrictor responses to the other three agents were the same with and without endothelium, suggesting that the direct constrictor response overrides EDRF activity.
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            Endothelium-Dependent Responses in Isolated Blood Vessels of Lower Vertebrates

            Endothelium-dependent relaxations to acetylcholine have been identified in mammalian arteries and veins. To determine the occurrence of such relaxations in other classes of vertebrates, rings of descending aortas of turtles, cayman and bullfrogs and ventral aortas of trout were suspended for isometric force measurements. Acetylcholine and the calcium ionophore A23187 initiated concentration-dependent relaxations in aortas from cayman and bullfrogs contracted with norepinephrine. These relaxations were not affected by meclofenamate, were reversed by methylene blue and abolished by endothelium removal. Acetylcholine caused concentration-dependent contractions in aortas (with and without endothelium) from trout and turtles; these tissues contracted minimally to norepinephrine. In the aortas of the trout contracted with acetylcholine, the calcium ionophore A23187 initiated endothelium-dependent relaxations which were reversed by methylene blue and abolished by meclofenamate. A23187 contracted turtle aortas; an effect reduced by endothelium removal. These data demonstrate endothelium-dependent relaxations and contractions in blood vessels of reptiles, amphibians and teleosts. Thus, endothelium-dependent modulation of the responses of the vascular smooth muscle represents a cardiovascular regulatory mechanism which appears early in vertebrate phylogeny.
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              The obligatory role of endothelial cells in the relaxation of arterial smooth muscle by acetylcholine

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                Author and article information

                Contributors
                Role: ND
                Role: ND
                Journal
                bjb
                Brazilian Journal of Biology
                Braz. J. Biol.
                Instituto Internacional de Ecologia
                1678-4375
                June 2016
                : 76
                : 2
                : 500-505
                Affiliations
                [1 ] Universidad Católica del Norte Chile
                Article
                S1519-69842016000200500
                10.1590/1519-6984.22014
                d658be8f-8ba0-4cb5-8f7a-3e570ba72e8b

                This work is licensed under a Creative Commons Attribution 4.0 International License.

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                SciELO Brazil

                Self URI (journal page): http://www.scielo.br/scielo.php?script=sci_serial&pid=1519-6984&lng=en
                Categories
                BIOLOGY

                General life sciences
                intertidal fish,marine fish,vascular reactivity,NO-pathway,peixe entremarés,peixe marinho,reatividade vascular

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