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Biomedical subjects

A Cuocolo

Publications and source records attributed to A Cuocolo.

At least 127 records · Page 7Linked to original sources

Reflex control of coronary vascular tone by cardiopulmonary receptors in humans.

To examine whether cardiopulmonary receptors participate in the reflex control of coronary vascular resistance, systemic and coronary hemodynamics were assessed before and during -10 mm Hg lower body negative pressure in eight normal subjects and eight hypertensive patients with left ventricular hypertrophy. In both study groups, lower body negative pressure induced a significant decrease in right atrial pressure, left ventricular filling pressure and cardiac output, an increase in systemic vascular resistance and no change in mean arterial pressure and heart rate. In normal subjects, there was also a significant increase in plasma norepinephrine concentration (from 294 +/- 39 to 421 +/- 47 pg/ml, p less than 0.01). This increase was accompanied by a reduction in coronary blood flow, assessed by the continuous thermodilution method (from 101 +/- 5 to 79 +/- 4 ml/min, p less than 0.05). An increase in coronary vascular resistance (from 0.865 +/- 0.1 to 1.107 +/- 0.1 mm Hg/ml per min, p less than 0.05) and in myocardial oxygen consumption was detected in normal subjects during cardiopulmonary baroreceptor unloading. In contrast, in hypertensive patients, -10 mm Hg lower body negative pressure failed to induce any change in plasma norepinephrine, coronary blood flow or vascular resistance. Intravenous propranolol administration caused no significant change in the systemic hemodynamic response to -10 mm Hg lower body negative pressure in either study group, but it did abolish the decrease in coronary flow and the increase in plasma norepinephrine, coronary vascular resistance and myocardial oxygen consumption observed in normal subjects in control conditions.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Stable improvement in large artery compliance after long-term antihypertensive treatment with enalapril.

In 12 patients with mild or moderate essential hypertension we assessed by 2-D pulsed Doppler flowmetry the influence of a 6-month effective treatment with enalapril or atenolol on peripheral hemodynamics. The patients were studied in control conditions, at the end of the 6-month pharmacologic treatment, and 2 weeks after the withdrawal of the therapy. In spite of a comparable fall in blood pressure, the effects of the two drugs on forearm hemodynamics were quite different. Enalapril induced a fall in vascular resistance and an increase in brachial artery diameter, flow, and compliance, while atenolol failed to modify all these parameters. In the enalapril group the improvement in forearm vascular resistance and brachial artery compliance persisted after the 2-week washout period. This latter observation raises the possibility that enalapril may reverse structural changes in the large arteries.

Antihypertensive Agents↗

Hemodynamic responses to atrial natriuretic factor in nephrectomized rabbits: attenuation of the circulatory consequences of acute volume expansion.

We investigated the hemodynamic responses to three doses of atrial natriuretic factor [human atrial natriuretic factor-(99-126)] (ANF) in nephrectomized rabbits anesthetized with ketamine and acepromazine. The influence of the different doses of the peptide on the hemodynamic consequences produced by acute volume expansion (0.9% NaCl, 1.4 ml/kg/min for 60 minutes) was also studied. All three dosages of ANF (0.001, 0.01, and 0.2 micrograms/kg/min for 20 minutes) significantly reduced blood pressure. With the lowest dose, the hypotensive effect was associated with reduction in systemic vascular resistance and no significant change in heart rate, stroke volume, central venous pressure, and hematocrit. In contrast, the intermediate and high doses, which resulted in markedly higher plasma levels, caused a significant decrease in heart rate, central venous pressure, and stroke volume; a slight rise in hematocrit; and no change in systemic vascular resistance. Volume expansion produced by saline infusion in an additional group of nephrectomized rabbits increased central venous pressure and decreased hematocrit. When ANF infusion was associated to volume expansion, each dosage of ANF was able to reduce the rise in central venous pressure, while only the higher dosage attenuated the progressive fall in hematocrit caused by volume expansion. Plasma volume, measured at the end of volume expansion was lower in the group treated with the highest dose of ANF than in the control animals (28.2 +/- 9 vs. 35.1 +/- 3 ml/kg, p less than 0.05). We conclude that 1) ANF induces significant hemodynamic effects independently from its renal action.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Efficacy of once-daily urapidil treatment in mild or moderate essential hypertension assessed by ambulatory 24-hour blood pressure monitoring.

The blood pressure-lowering effect and tolerability of urapidil 120 mg once daily versus urapidil 60 mg twice daily was compared in 36 outpatients with newly diagnosed mild to moderate essential hypertension. Patients were enrolled in the study if they showed a favourable response to urapidil 60 mg twice daily at the end of a 2-week run-in as revealed by a first non-invasive 24-hour blood pressure profile. The patients were then randomly allocated to a 6-week double-blind treatment with either urapidil 120 mg once daily or urapidil 60 mg twice daily. Blood pressure, heart rate and adverse reactions were recorded every 2 weeks in the morning before drug intake. A second 24-hour blood pressure profile was taken at the end of this treatment phase. Compared with the pretreatment value after placebo run-in, urapidil 60 mg twice daily lowered supine morning blood pressure from 159/103 to 138/89. Urapidil 120 mg once daily lowered blood pressure from 161/102 to 139/90. The decrease in blood pressure was statistically significant within (p less than 0.001) but not between the treatment groups. Similar results were obtained with standing blood pressures. Side effects were observed in 2 patients with urapidil 60 mg twice daily (dizziness, intermittent lack of ejaculation) and in 7 patients with urapidil 120 mg once daily (5 with dizziness, and 1 each with headache and palpitations). Thus, urapidil 120 mg once daily lowers elevated blood pressure throughout a 24-hour period as effectively as 60 mg twice daily. Therefore, during long term therapy, the tolerability but not the efficacy of urapidil appears to be directly related to its peak serum concentrations.

Adult↗

[Dilated cardiomyopathy. Role of radioisotope technics].

Radionuclide techniques are easily obtainable, noninvasive examinations that provide useful information in the evaluation, diagnosis and management of patients with dilated cardiomyopathy. The gated blood pool scan allows the assessment of ventricular size, configuration, and wall and septal thickness. These data allow the functional class of the cardiomyopathy (congestive, restrictive or hypertrophic) to be defined. Often Thallium-201 myocardial perfusion imaging adds further information and is particularly useful in distinguishing congestive cardiomyopathy from severe coronary artery disease and in depicting septal abnormalities in hypertrophic cardiomyopathy. Useful as these techniques are, they are not substitutes for conventional approaches to diagnosis. Careful history taking and physical examination, as well as scrutiny of the electrocardiogram, chest X-ray and echocardiogram should be standard practice for the evaluation of patients with suspected cardiomyopathy. Judicious use of noninvasive techniques may obviate the need for cardiac catheterization in many patients.

Adult↗

[Diagnosis of ischemic cardiopathy in hypertensive patients. Comparison of radioisotopic technics].

Exercise radionuclide ventriculography (ERV) is considered a superior non-invasive screening test for coronary artery disease (CAD). ERV showed, however, a low specificity in hypertensive patients (H). The diagnostic accuracy of ERV and thallium-201 myocardial scintigraphy (M) was evaluated in 23 patients (H) with chest pain and positive ECG-stress test. All patients underwent ERV and M, randomly, in different days. Finally, they all underwent coronary angiography: CAD was diagnosed in case of luminal narrowing greater than or equal to 70% in 1 major coronary artery at least. Eleven patients had severe CAD. ERV was considered positive for CAD in presence of ex-induced abnormality of wall motion and/or in case of ex-induced ejection fraction increase less than or equal to 5% respect to the basal values. M was considered positive for CAD when perfusion defects were observed in early images only. ERV showed low diagnostic accuracy. On the contrary M had both sensibility and specificity, and a high positive and negative predictive value in the diagnosis of CAD. M is thus suggested as the non-invasive methodology of choice in hypertensive patients with suspected CAD.

Coronary Circulation↗

Effects of intravenous verapamil administration on left ventricular diastolic function in systemic hypertension.

The effects of intravenous verapamil administration (0.1 mg/kg as a bolus followed by an infusion of 0.007 mg/kg/min) were studied using high-temporal-resolution radionuclide angiography in 27 patients with hypertension. Verapamil administration increased heart rate from 69 +/- 11 to 75 +/- 12 beats/min (p less than 0.001) and decreased systolic, diastolic and mean blood pressures (BPs) from 155 +/- 21/102 +/- 12 mm Hg (mean 119 +/- 14) to 142 +/- 19/95 +/- 12 mm Hg (mean 109 +/- 13) (p less than 0.001 for all). Ejection fraction decreased significantly (from 65 +/- 10% to 60 +/- 11%, p less than 0.005); peak filling rate, however, increased significantly only in patients in whom it was subnormal in the basal study (from 2.2 +/- 0.4 to 3.0 +/- 0.6 end-diastolic counts/s, p less than 0.001). These latter patients had significantly higher values of left ventricular (LV) mass index than patients with normal or increased peak filling rate (129 +/- 22 vs 112 +/- 22 g/m2, respectively, p less than 0.05). The isovolumic relaxation period changes were inversely related to the baseline values (r = 0.83, p less than 0.001). In the subgroup of patients in whom isovolumic relaxation period lengthened, time to end systole decreased (from 360 +/- 31 to 329 +/- 30 ms, p less than 0.025) and time to onset of rapid filling increased (from 420 +/- 31 to 451 +/- 34 ms, p less than 0.025), whereas these 2 intervals had opposite patterns in patients in whom isovolumic relaxation period decreased or did not change.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Beta blockers and left ventricular hypertrophy in hypertension.

It is now generally accepted that hypertension-induced left ventricular hypertrophy (LVH) represents a phenomenon of multifactorial origin. Antihypertensive therapy with beta-blocking drugs influences most of the factors involved in the control of left ventricular mass. Therefore, although initial animal experiments yielded conflicting results, it is not surprising that a great deal of evidence has been accumulated in clinical studies showing that successful long-term antihypertensive treatment with beta blockers induces regression of LVH in hypertensive subjects. Differences in molecular structure among various beta-blocking agents do not seem to influence this property. On the contrary, the question of whether reversal of LVH represents a beneficial or harmful byproduct of antihypertensive treatment with beta blockers is still unanswered. Animal and clinical studies suggest that left ventricular systolic function is unchanged or even improved after regression of LVH, whereas the ability of the heart to withstand recurrence of hypertension is slightly reduced. Furthermore, development of LVH in hypertensive subjects is associated with abnormalities in diastolic function which are not reduced by reversal of LVH induced by antihypertensive treatment with beta blockers.

Adrenergic beta-Antagonists↗

Effects of coronary occlusion on arterial baroreflex control of heart rate and vascular resistance.

This study was planned to assess whether circumflex coronary occlusion (CO) impairs the arterial baroreflex control of heart rate (HR) and hindlimb vascular resistance (HVR), and to determine the mechanisms involved in the mediation of these phenomena. Increasing doses of phenylephrine and nitroglycerin were given intravenously to anesthetized dogs with a constant flow-perfused hindlimb before and during 30-s CO. The reflex responses were assessed by the changes in HR and hindlimb perfusion pressure evoked by changes in arterial pressure following phenylephrine and nitroglycerin administration. During CO, there was an attenuation of the reflex control of HR and HVR as compared with control conditions. The application of lidocaine on the left ventricular epicardial surface was able to prevent the effect of CO on both the baroreflex responses. The intravenous administration of atropine prevented only the impairment in arterial baroreflex control of HR induced by CO. After the injection of phentolamine into the perfused hindlimb, the baroreflex had no effect on HVR either before or during CO. Finally, intravenous administration of propranolol failed to modify the effect of CO on both the baroreflex responses. These data indicate that CO attenuates the arterial baroreflex control of both HR and HVR through the stimulation of left ventricular receptors. The effect on HR is mediated by the parasympathetic system, whereas the effect on HVR is due to sympathetic efferents.

Animals↗

Vagal mediation of the effects of atrial natriuretic factor on blood pressure and arterial baroreflexes in the rabbit.

We investigated the hemodynamic effect of synthetic atrial natriuretic factor Auriculin A (ANF) and its influence on arterial baroreflex control of heart rate, systemic blood pressure, and perfusion pressure in the hind limb (perfused at constant flow) in rabbits anesthetized with alpha-chloralose and urethane. The neural mechanisms underlying these effects were also studied. In the intact animal, a 45-minute constant infusion of ANF (2 micrograms/kg prime, 0.2 microgram/kg/min) significantly reduced mean blood pressure and increased mean perfusion pressure, while heart rate did not change. Comparable data were obtained with lower (0.5 microgram/kg + 0.05 microgram/kg/min; 1 microgram/kg + 0.1 microgram/kg/min) or higher (4 micrograms/kg + 0.4 microgram/kg/min; 8 micrograms/kg + 0.8 microgram/kg/min) doses of ANF. In addition, ANF enhanced bradycardic reflex responses to phenylephrine i.v. bolus administration, while it did not change baroreflex-mediated responses to nitroglycerin i.v. bolus administration and to 30-second bilateral carotid occlusion. The specificity of the influence of ANF on arterial baroreflex responses was confirmed by the observation that no significant change in reflex responses to phenylephrine or carotid occlusion was detectable during a comparable decrease in blood pressure induced by a constant infusion of nitroglycerin. Bilateral vagotomy prevented both the fall in blood pressure and the increase in perfusion pressure induced by ANF, while cholinergic blockade (atropine, 0.5 mg/kg i.v.) or adrenergic blockade (propranolol, 0.3 mg/kg i.v. + phentolamine, 0.3 mg/kg i.v.) did not modify the hemodynamic response to ANF observed in the intact animal.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Changes in left ventricular anatomy and systemic hemodynamics induced by antihypertensive therapy with indenolol.

In 20 patients with mild or moderate essential hypertension who responded favorably to indenolol antihypertensive therapy, echocardiography was performed in the basal condition and 6 and 12 months after the beginning of permanent antihypertensive treatment. Indenolol induced a significant decrease in blood pressure, from a basal value of 170 +/- 3/100 +/- 8 mmHg to 142 +/- 4/87 +/- 2 mmHg after 6 months (p less than 0.01) and to 133 +/- 4/84 +/- 2 mmHg after 1 year (p less than 0.01), and in heart rate, from 72 +/- 5 to 61 +/- 3 bpm after 6 months (p less than 0.01) and to 60 +/- 2 bpm after 1 year (p less than 0.01). Simultaneously, there was a significant reduction in cardiac output (from 6.3 +/- .4 to 5.7 +/- .2 liters/min after 6 months, p less than 0.05, and to 5.6 +/- .2 liters/min after 1 year, p less than 0.01), due to a reduction in heart rate, increased stroke volume, and improved left ventricular performance after indenolol. Total peripheral resistance was also reduced, although statistical significance was not attained. However, a significant inverse correlation was found between the initial value of cardiac output and total peripheral resistance and the changes in these parameters induced by indenolol treatment (cardiac output: r = -0.824 and -0.855, total peripheral resistance: r = -0.876 and -0.899 at 6- and 12-month controls, respectively, all p less than 0.001). Finally, there was a parallel decrease in left ventricular wall and septal thickness and estimated left ventricular mass in patients with left ventricular hypertrophy, whereas no change in left ventricular anatomy could be detected in patients with normal left ventricular mass.

Adult↗

Reversal of left ventricular hypertrophy following treatment with beta-blockers: experience with tertatolol.

Hypertrophy in response to increasing blood pressure in primary hypertension leads to important functional consequences for the left ventricle. In fact, the progression of hypertensive heart disease, from an adaptive left ventricular hypertrophy with compensated ventricular function to severe hypertrophy with left ventricular failure, has been long thought to be related to the severity and duration of hypertension. Antihypertensive treatment seems to prevent or minimize the occurrence of left ventricular hypertrophy, but questions arise as to whether this therapy is also able to restore normal hemodynamic conditions, or at least to minimize the hemodynamic abnormalities. This review aims at summarizing current knowledge on the effects of the antihypertensive treatment with beta-blockers, including tertatolol, on hypertension-induced left ventricular hypertrophy. The pathogenetic mechanisms underlying the cardiovascular changes associated with hypertension are discussed. A decrease in left ventricular wall thickness as well as in left ventricular mass has been reported in most of the studies performed with different types of beta-adrenergic blocking agents. The extent of this reduction seems to be related not only to the fall in systemic blood pressure, but also to a decrease in sympathetic stimulation. With regard to the functional consequences of hypertension, the reversal of left ventricular hypertrophy following antihypertensive treatment with beta-blockers is usually associated with an improvement in left ventricular performance. This phenomenon can hardly be ascribed to the direct effects of beta-blocking agents. It is more likely to be related to the concomitant reduction in the afterload and to the improved left ventricular compliance, associated with a decrease in left ventricular wall thickness.

Adrenergic beta-Antagonists↗

Impaired responsiveness of the ventricular sensory receptor in hypertensive patients with left ventricular hypertrophy.

We studied the control of forearm vascular resistance (FVR) by cardiopulmonary receptors in seven patients with hypertension and left ventricular hypertrophy (LVH) and in seven normotensive control subjects. Increasing levels of lower body negative pressure (LBNP) (-10 and -40 mm Hg) induced a progressive decrease in central venous pressure (CVP) and an increase in FVR. The changes in these two variables were correlated both in normal subjects and patients with hypertension (slope for normal subjects = -29.9, for patients with hypertension = -40.3, NS). After propranolol, there was a significant reduction in the increase in FVR induced by -40 mm Hg LBNP in normal subjects (+107 +/- 5 vs +129 +/- 15 mm Hg/ml/sec, p less than .05) but not in patients with hypertension. Consequently, the slope of the delta CVP/delta FVR regression was reduced in normal subjects (-20.6, p less than .01) but not in patients with hypertension. In another seven normal subjects and seven patients with hypertension and LVH we assessed the effects of -10 and -40 mm Hg LBNP on left ventricular filling pressure (LVFP). LBNP induced similar changes in CVP, LVFP, and total peripheral resistance both in normal subjects and in patients with hypertension. Propranolol failed to modify the effects of LBNP on CVP and LVFP in both groups and reduced the response of total peripheral resistance to -40 mm Hg LBNP only in normal subjects. Propranolol did not reduce the response of FVR to the cold pressor test and sustained handgrip or the arterial baroreflex response to the injection of phenylephrine and increased neck tissue pressure. Thus, hypertension-induced LVH seems to be associated with a selective impairment of the left ventricular sensory receptors.

Adult↗

Effects of lower body negative pressure in hypertensive patients with left ventricular hypertrophy.

We studied the response of forearm vascular resistance to lower body negative pressure (LBNP) at -10 and -40 mmHg in seven established hypertensives with left ventricular hypertrophy (LVH) and seven age-matched normotensive controls. To evaluate the specific role of ventricular baroreceptors, we also investigated the effects of propranolol on the reflex response. Under control conditions, graded LBNP induced a progressive decrease in central venous pressure (CVP) and increased forearm vascular resistance. Changes in CVP and forearm vascular resistance were inversely correlated both in controls (r = -0.944) and in hypertensives (r = -0.960), P less than 0.001 for both. No difference was found between the regression slopes obtained for the two groups (normotensives, -30; hypertensives, -40; NS). After propranolol there was a significant reduction in the increase in forearm vascular resistance induced by -40 mmHg LBNP in normotensives but not in hypertensives. Consequently, the slope of the regression delta CVP/delta forearm vascular resistance was reduced in normotensives (-21) but not in hypertensives. In contrast, propranolol did not attenuate the vasoconstrictor response to other stimuli. Left ventricular hypertrophy therefore seems to be associated with changes in the role of the different cardiopulmonary receptor areas during mediation of the haemodynamic response to stimulated orthostatic stress.

Adult↗

Effects of prostaglandin synthesis inhibition on sympathetic-and parasympathetic-mediated coronary hemodynamic responses.

In chloralose-anesthetized dogs with the left circumflex coronary artery perfused at constant flow, the effects of indomethacin or naproxen on coronary and systemic responses to sympathetic and parasympathetic stimulation were evaluated. Sympathetic stimulation was evoked either by 1-min carotid artery occlusion or by epinephrine (5 micrograms) or norepinephrine (5 micrograms) intracoronary administration. Reflex or direct parasympathetic stimulation was produced by ouabain (40 micrograms) or acetylcholine (2.5 micrograms) injection, respectively, in the perfused coronary artery. The administration of indomethacin or naproxen reduced the integrated areas of coronary vasodilatation induced by epinephrine and norepinephrine. The extent of this reduction was dose-dependent with both indomethacin (epinephrine: r = 0.774, n = 35, P less than .001; norepinephrine: r = 0.766, n = 35, P less than .001; norepinephrine: r = 0.799, n = 35, P less than .001) up to 1.5 and 7 mg/kg, respectively. Further increase in dosage of both prostaglandin synthesis inhibitors failed to induce further reduction of integrated areas of coronary vasodilatation. In contrast, the maximum fall in coronary perfusion pressure, induced by both catecholamines, remained unmodified after inhibition of prostaglandin synthesis, whereas a faster return of the perfusion pressure to base line was observed. The extent of cyclooxygenase activity inhibition induced by indomethacin or naproxen, assessed through the radioimmunoassay of thromboxane B2, showed a consistent dose-dependent increase until complete inhibition was attained with 1.5 mg/kg of indomethacin and 7 mg/kg of naproxen. No significant change in the coronary and systemic hemodynamic response induced by carotid occlusion and by ouabain or acetylcholine intracoronary administration was observed. Furthermore, complete cyclooxygenase inhibition, induced by either indomethacin or naproxen, was able to reduce the coronary vasodilatation induced by isoproterenol (5 micrograms) intracoronary injection but failed to modify the coronary vasoconstriction elicited by both epinephrine and norepinephrine in propranolol-treated dogs. These data indicate that the prostaglandin system is involved in the coronary vasodilatation induced by humoral sympathetic stimulation, whereas coronary hemodynamic responses to both neural sympathetic or parasympathetic stimulation are not influenced by the administration of prostaglandin synthesis inhibitors.

Acetylcholine↗

Role of prostaglandins in the renal handling of a salt load in essential hypertension.

Renal function and systemic hemodynamics were assessed in 10 hypertensive patients and in 10 age-matched normotensive subjects during control conditions (80 mEq of sodium/day) and after a salt load, either alone (480 mEq/day) or combined with indomethacin or sulindac. Indomethacin was used to induce ubiquitous inhibition of prostaglandin synthesis and sulindac to inhibit prostaglandin synthesis in all tissues except the kidney. Under control conditions there was no significant difference between the 2 groups in any measurement except blood pressure and total peripheral resistance. Also, the changes induced by salt load in the 2 groups were comparable. However, after indomethacin administration, only hypertensive patients showed a significant reduction in the 24-hour sodium excretion (from 417 +/- 61 to 317 +/- 49 mEq, p less than 0.05), so that the difference between this value and the corresponding value of normotensive subjects (453 +/- 79 mEq) became significant (p less than 0.05). The changes in sodium excretion in hypertensive patients were significantly correlated with the changes in renal plasma flow (r = 0.803, p less than 0.01). However, cardiac output and renal blood flow showed a similar pattern in normal and hypertensive persons. Finally, after the addition of sulindac to salt load, the differences in the 24-hour sodium excretion vanished. These results were also confirmed in an ancillary study performed, using the same protocol, in 10 other hypertensive patients using ibuprofen rather than indomethacin. Our data suggest that renal prostaglandins participate in renal disposal of chronic salt load in hypertensive patients but not in normal persons.

Adolescent↗

Carotid sinus reflex control of coronary blood flow in human subjects.

Systemic and coronary hemodynamics were assessed before and during a reduction in carotid transmural pressure. This reduction was induced by means of a pneumatic neck chamber in 15 normal subjects and 15 hypertensive patients with a normal coronary arteriogram. A reduced baroreflex responsiveness was demonstrated in hypertensive patients as compared with normal subjects by evaluating both the reflex bradycardia evoked by intravenous administration of phenylephrine and the reflex increase in blood pressure during carotid sinus hypotension. In normal subjects, the reduction in carotid transmural pressure induced a significant increase in mean blood pressure, total peripheral resistance, cardiac output, heart rate, coronary vascular resistance, coronary blood flow assessed by the continuous thermodilution method and myocardial oxygen consumption. In hypertensive patients, the same stimulus significantly increased mean blood pressure, cardiac output, heart rate and coronary blood flow while no significant change was detected in coronary vascular resistance and myocardial oxygen consumption. The increase in mean blood pressure, total peripheral resistance and cardiac output was significantly higher in normal subjects than in hypertensive patients. These results suggest that in normal subjects carotid sinus hypotension evokes reflex coronary vasoconstriction, whereas this response is blunted in hypertensive patients with reduced baroreflex sensitivity.

Adult↗

Late phase of nitroglycerin-induced coronary vasodilatation blunted by inhibition of prostaglandin synthesis.

In chloralose-anesthetized dogs with the left circumflex coronary artery perfused at constant flow, the effects of increasing doses of indomethacin or naproxen on the coronary and systemic hemodynamic responses to a 5 microgram intracoronary injection of nitroglycerin (NTG) were evaluated. The integrated areas of NTG-induced coronary vasodilatation were reduced after administration of indomethacin or naproxen. The extent of this reduction was increased progressively by augmenting the dose of indomethacin and naproxen up to 1.5 and 7 mg/kg, respectively. We also assessed the extent of cyclooxygenase inhibition induced by indomethacin or naproxen through the radioimmunoassay of thromboxane B2, which reflects thrombin-induced activation of platelet thromboxane A2 production during whole blood clotting. The level of inhibition progressively increased and complete inhibition was attained with 1.5 mg/kg indomethacin and 7 mg/kg naproxen. Further increase in dosage failed to induce further reduction of integrated areas of coronary vasodilatation, and a correlation was found between the extent of the reduction of the integrated areas of coronary vasodilatation and the dose of indomethacin (r = .828, n = 35, p less than .001) or naproxen (r = .729, n = 35, p less than .001). Finally, the NTG-induced maximum fall in coronary perfusion pressure remained unmodified after inhibition of prostaglandin synthesis, but there was a faster return of the perfusion pressure to the basal value.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗