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1.
Braz. j. med. biol. res ; 44(9): 933-938, Sept. 2011. ilus
Article in English | LILACS | ID: lil-599668

ABSTRACT

Ouabain, an endogenous digitalis compound, has been detected in nanomolar concentrations in the plasma of several mammals and is associated with the development of hypertension. In addition, plasma ouabain is increased in several hypertension models, and the acute or chronic administration of ouabain increases blood pressure in rodents. These results suggest a possible association between ouabain and the genesis or development and maintenance of arterial hypertension. One explanation for this association is that ouabain binds to the α-subunit of the Na+ pump, inhibiting its activity. Inhibition of this pump increases intracellular Na+, which reduces the activity of the sarcolemmal Na+/Ca2+ exchanger and thereby reduces Ca2+ extrusion. Consequently, intracellular Ca2+ increases and is taken up by the sarcoplasmic reticulum, which, upon activation, releases more calcium and increases the vascular smooth muscle tone. In fact, acute treatment with ouabain enhances the vascular reactivity to vasopressor agents, increases the release of norepinephrine from the perivascular adrenergic nerve endings and promotes increases in the activity of endothelial angiotensin-converting enzyme and the local synthesis of angiotensin II in the tail vascular bed. Additionally, the hypertension induced by ouabain has been associated with central mechanisms that increase sympathetic tone, subsequent to the activation of the cerebral renin-angiotensin system. Thus, the association with peripheral mechanisms and central mechanisms, mainly involving the renin-angiotensin system, may contribute to the acute effects of ouabain-induced elevation of arterial blood pressure.


Subject(s)
Animals , Humans , Rats , Blood Pressure/drug effects , Cardiotonic Agents/pharmacology , Hypertension/chemically induced , Ouabain/pharmacology , Angiotensin II/biosynthesis , Calcium/metabolism , Cardiotonic Agents/administration & dosage , Cardiotonic Agents/metabolism , Central Nervous System/drug effects , Hypertension/metabolism , Injections, Intravenous , Norepinephrine , Ouabain/administration & dosage , Ouabain/metabolism , Peptidyl-Dipeptidase A/metabolism , Renin-Angiotensin System/drug effects , Sodium-Potassium-Exchanging ATPase/drug effects , Sodium-Potassium-Exchanging ATPase/physiology
2.
Braz. j. med. biol. res ; 43(8): 767-776, Aug. 2010. tab, ilus
Article in English | LILACS | ID: lil-554957

ABSTRACT

We investigated the effects of low ouabain concentrations on systolic (SAP) and diastolic (DAP) arterial pressures and on pressor reactivity in 3-month-old male spontaneously hypertensive rats (SHR). Arterial blood pressure (BP) and pressor reactivity to phenylephrine (PHE) were investigated before and after 0.18 ìg/kg ouabain administration (N = 6). The influence of hexamethonium (N = 6), canrenone (N = 6), enalapril (N = 6), and losartan (N = 6) on ouabain actions was evaluated. Ouabain increased BP (SAP: 137 ± 5.1 to 150 ± 4.7; DAP: 93.7 ± 7.7 to 116 ± 3.5 mmHg; P<0.05) but did not change PHE pressor reactivity. Hexamethonium reduced basal BP in control but not in ouabain-treated rats. However, hexamethonium + ouabain increased DAP sensitivity to PHE. Canrenone did not affect basal BP but blocked ouabain effects on SAP. However, after canrenone + ouabain administration, DAP pressor reactivity to PHE still increased. Enalapril and losartan reduced BP and abolished SAP and DAP responses to ouabain. Enalapril + ouabain reduced DAP reactivity to PHE, while losartan + ouabain reduced SAP and DAP reactivity to PHE. In conclusion, a small dose of ouabain administered to SHR increased BP without altering PHE pressor reactivity. Although the renin-angiotensin system (RAS), Na+ pump and autonomic reflexes are involved in the effects of ouabain on PHE reactivity, central mechanisms might blunt the actions of ouabain on PHE pressor reactivity. The effect of ouabain on SAP seems to depend on the inhibition of both Na+ pump and RAS, whereas the effect on DAP seems to depend only on RAS.


Subject(s)
Animals , Male , Rats , Enzyme Inhibitors/pharmacology , Hypertension/chemically induced , Ouabain/pharmacology , Renin-Angiotensin System/drug effects , Sodium-Potassium-Exchanging ATPase/antagonists & inhibitors , Antihypertensive Agents/pharmacology , Hypertension/prevention & control , Phenylephrine/pharmacology , Rats, Inbred SHR , Renin-Angiotensin System/physiology
3.
Braz. j. med. biol. res ; 41(5): 416-423, May 2008. graf, tab
Article in English | LILACS | ID: lil-484435

ABSTRACT

The investigation of resistance vessels is generally costly and difficult to execute. The present study investigated the diameters and the vascular reactivity of different segments of the rat tail artery (base, middle, and tail end) of 30 male Wister rats (EPM strain) to characterize a conductance or resistance vessel, using a low-cost simple technique. The diameters (mean ± SEM) of the base and middle segments were 471 ± 4.97 and 540 ± 8.39 µm, respectively, the tail end was 253 ± 2.58 µm. To test reactivity, the whole tail arteries or segments were perfused under constant flow and the reactivity to phenylephrine (PHE; 0.01-300 µg) was evaluated before and after removal of the endothelium or drug administration. The maximal response (Emax) and sensitivity (pED50) to PHE of the whole tail and the base segment increased after endothelium removal or treatment with 100 µM L-NAME, which suggests modulation by nitric oxide. Indomethacin (10 µM) and tetraethylammonium (5 mM) did not change the Emax or pED50 of these segments. PHE and L-NAME increased the pED50 of the middle and the tail end only and indomethacin did not change pED50 or Emax. Tetraethylammonium increased the sensitivity only at the tail end, which suggests a blockade of vasodilator release. Results indicate that the proximal segment of the tail artery possesses a diameter compatible with a conductance vessel, while the tail end has the diameter of a resistance vessel. In addition, the vascular reactivity to PHE in the proximal segment is nitric oxide-dependent, while the tail end is dependent on endothelium-derived hyperpolarizing factor.


Subject(s)
Animals , Male , Rats , Blood Pressure/physiology , Endothelium, Vascular/physiology , Tail/blood supply , Vascular Resistance/physiology , Arteries/anatomy & histology , Arteries/drug effects , Arteries/physiology , Blood Pressure/drug effects , Endothelium, Vascular/drug effects , Models, Animal , Phenylephrine/pharmacology , Rats, Wistar , Regional Blood Flow/drug effects , Regional Blood Flow/physiology , Vascular Resistance/drug effects , Vasoconstrictor Agents/pharmacology
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