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Biomedical subjects

P Coruzzi

Publications and source records attributed to P Coruzzi.

At least 19 recordsLinked to original sources

Coronary artery anomalies: incidence, pathophysiology, clinical relevance and role of diagnostic imaging.

Conventional coronary angiography is the gold standard for the diagnosis of coronary artery anomalies. Coronary anomalies are relatively rare findings in patients undergoing conventional coronary angiography for suspected obstructive coronary artery disease. Recently, the increasing performance of diagnostic techniques, such as electron beam tomography (EBT), magnetic resonance (MR) and, more recently, multislice computed tomography (MSCT), has enabled their application to cardiac imaging. MSCT, in particular, has a prominent role in coronary imaging due to its spatial and temporal resolution and three-dimensional capabilities. We report the incidence and pathophysiology of coronary artery anomalies based on the capabilities of recent diagnostic tools with the aim of improving an accurate and noninvasive diagnostic approach.

Coronary Angiography↗

Potassium depletion and salt sensitivity in essential hypertension.

To evaluate the actual role of potassium depletion on blood pressure, 11 hypertensive patients were placed on a 10-day isocaloric diet providing a daily potassium intake of either 18 or 80 mmol, with each subject serving as his or her own control; the intake of sodium (220 mmol/day) and other minerals was kept constant. On day 11 each patient was also subjected to central volume expansion by water immersion associated with either normal or low potassium intake. After a 10-day period of low potassium intake, systolic blood pressure increased (P < 0.02) by 5 mm Hg, whereas serum potassium decreased (P < 0.001) by 0.9 mmol/L; no significant changes in urinary sodium and a marked increase in urinary calcium excretion (P < 0.001) were found during the 10-day low potassium intake. PRA (P < 0.02) and plasma aldosterone (P < 0.04) concentrations also decreased during low potassium intake in hypertensive patients. Even though an identical natriuretic response was found during the water immersion experiments with either high or low potassium in the whole hypertensive group, the evaluation of hypertensive subjects in relation to salt sensitivity enabled us to disclose pronounced differences in the natriuretic and calciuretic response. In fact, although an impaired natriuretic ability and moderate calcium loss were particularly found during water immersion in those hypertensive subjects exhibiting a lower salt sensitivity index, a predominant calcium depletion appeared to be the most important consequence of potassium depletion in the hypertensive subjects with a higher salt sensitivity index. By confirming that potassium depletion may exacerbate essential hypertension, our data also suggest that not only sodium restriction, but also potassium and calcium supplementation, could be particularly advisable in salt-sensitive hypertensive patients.

Adult↗

Association between salt sensitivity and insulin concentrations in patients with hypertension.

This study was performed in 28 patients with mild to moderate hypertension, classified as being either salt sensitive or salt resistant on the basis of the percent decrement in mean arterial blood pressure (MAP) seen 7 days after daily salt intake was decreased from 220 to 30 mmol/L. Ten patients had a percent decrease of MAP > 10% and were defined as being salt sensitive. Salt resistance was defined as a percent decrease in MAP of < 3% and eight patients satisfied this criterion. Both plasma glucose and insulin concentrations following a 75-g oral glucose challenge were significantly higher after the high-salt diet in the salt-sensitive patients. Furthermore, there were correlations of marginal statistical significance between the decrease in MAP after the low-salt diet and the plasma glucose (r = 0.32, P < .10) and insulin (r = 0.38, P < .06) responses to oral glucose. These data are consistent with the view that there is an association between resistance to insulin-mediated glucose disposal and salt sensitivity in patients with high blood pressure.

Adult↗

Escape from the sodium-retaining effects of mineralocorticoids: is there a role for dopamine?

To investigate the possible role of dopamine, a catecholamine with natriuretic properties, in modulating the escape from the sodium-retaining effects of mineralocorticoids, we submitted six aldosterone-producing adenoma (APA) patients and six low-renin essential hypertensive patients to acute volume expansion by head-out water immersion with or without dopaminergic blockade by metoclopramide. Water immersion alone induced a marked, comparable natriuresis (P < 0.001) in both hypertensive groups where a slight reduction of already suppressed renin-angiotensin system and a marked stimulation of atrial natriuretic peptide was also observed (P < 0.03 and P < 0.002, respectively). Water immersion plus dopaminergic blockade by metoclopramide did not significantly affect the natriuresis observed during water immersion alone in APA patients; conversely, there was a blunted natriuretic response in low-renin hypertensives during water immersion plus metoclopramide, in comparison with that obtained during water immersion alone (P < 0.006). Furthermore, metoclopramide did prevent the suppression of plasma aldosterone levels produced by central volume expansion alone in low-renin hypertensives, although it did not affect plasma aldosterone levels during water immersion in APA patients. Our data suggest that dopaminergic blockade does not counteract the natriuretic ability of the other hemodynamic and humoral mechanisms involved in the escape phenomenon of APA patients, thus casting serious doubt on the possible role of dopamine in mediating the escape from the sodium-retaining effects of mineralocorticoids.

Adenoma↗

The renin-aldosterone system and renal function in kidney transplantation.

Six renal transplant recipients, six uninephrectomized patients and six normal subjects were subjected to the physiological manoeuvre of head-out water immersion (WI), in order to compare changes in electrolyte and humoral responses known to occur in healthy individuals with those arising as a result of renal denervation in the transplant recipients. The denervated, transplanted kidneys of the six patients were able to maintain a sodium excretory response to WI identical to that obtained in the controls (from 121 +/- 18 to 236 +/- 29 mumol/min, p < 0.005 vs 113 +/- 17 to 213 +/- 18 mumol/min, p < 0.005, respectively). Kidney transplant patients were also characterized by a preserved suppression of renin-aldosterone system (from 1.2 +/- 0.2 to 0.5 +/- 0.1 ng/ml/h, p < 0.03 and 12 +/- 1.0 to 7.0 +/- 1.0 ng/dl, p < 0.005, respectively) and stimulation of atrial natriuretic peptide (from 84 +/- 15 to 153 +/- 25 pg/ml, p < 0.05) to central hypervolemia by water immersion. The present study, while confirming the ability of the denervated kidney to handle sodium normally, also suggests that atrial natriuretic peptide could assume a crucial role in regulating renin secretion.

Adult↗

Calcium and sodium handling during volume expansion in essential hypertension.

To evaluate the actual role of extracellular fluid volume (ECFV) expansion per se in modulating the rate of urinary calcium excretion, a thermoneutral water immersion (WI) study was conducted in 10 normal subjects and 30 patients with essential hypertension. Central hypervolemia by 2 hours of WI caused a significant diuretic and natriuretic response (P < .005) in normal subjects; no significant changes were detected in urinary calcium and magnesium excretion. WI provoked either an appropriate or exaggerated natriuresis (P < .001) in 21 hypertensive patients; these subjects also exhibited a highly positive correlation between urinary sodium and calcium excretion during WI (P < .001). In the remaining nine hypertensive patients, WI produced a significant diuretic response, but a barely discernible (P = NS) natriuresis (inappropriate response). These subjects also exhibited a significant reduction of urinary calcium (P < .001) and magnesium (P < .01) excretion. The data indicate that (1) volume expansion per se may have a role in regulating calcium excretion in hypertensive subjects; (2) a calcium leak may be attributable to a close relationship between urinary sodium and calcium metabolism, and causally related to a disturbance of sodium and volume homeostasis in hypertension.

Adult↗

Regulation of sodium excretion in human hypertension: long-term effects of calcium antagonist and angiotensin converting enzyme inhibitor.

Fourteen subjects with untreated essential hypertension were subjected to 2-h water immersion (WI) study. They were then randomly assigned to two distinct oral antihypertensive regimens with either calcium-channel blocker nifedipine (group 1, n = 7) or the angiotensin-converting enzyme (ACE) inhibitor lisinopril (group 2, n = 7). Three months later, a WI study identical to the first was repeated in the same hypertensive subjects. In group 1, treatment with nifedipine gastrointestinal therapeutic system (30 mg daily) significantly enhanced the natriuretic response to volume expansion by WI (peak value 405 +/- 82 mumol/min during WI plus nifedipine vs. 291 +/- 52 mumol/min during WI alone, p < 0.05). In group 2, treatment with lisinopril (20 mg daily) was associated with a blunted natriuretic response to volume expansion by WI (peak value 189 +/- 54 mumol/min during WI plus lisinopril vs. 320 +/- 53 mumol/min during WI alone; p < 0.025). A significant direct correlation between urinary sodium excretion (delta UNa V) and mean arterial pressure (delta MAP) was noted during WI plus nifedipine. Each long-term drug treatment was associated with a decrease in BP and hormonal changes of the same magnitude. Our data suggest that calcium antagonists could act as "diuretic agents" capable of counteracting the antinatriuretic effect of reduced renal perfusion pressure.

Adult↗

Water immersion and salt-sensitivity in essential hypertension.

It has been demonstrated that an exaggerated natriuretic response to central hypervolaemia is not necessarily associated with hypertension; many hypertensive subjects manifest either an appropriate or a blunted natriuresis in response to ECFV expansion attained by head-out water immersion. In this study, we tested the hypothesis that an underlying condition of salt-sensitivity may explain the heterogeneity of the natriuretic response of essential hypertension. Both salt-sensitivity tests and 2h water-immersion studies were randomly performed in 18 untreated essential hypertensives under a selected and controlled diet. Salt-sensitivity was defined as a significant drop in mean arterial pressure of 10% or greater, calculated as the difference between the average of the 25 readings under the high and the low salt period. Water immersion did result in a significant natriuretic and calciuretic response in the whole hypertensive group (n = 18, p < 0.001 and p < 0.05, respectively), while the examination of the individual excretion disclosed either exaggerated and appropriate or blunted urinary response. When the hypertensive group was classified in relation to salt-sensitivity, the greater fall in mean arterial pressure during low salt diet (salt-sensitivity) was associated with the more pronounced natriuretic response during water immersion (r = -0.66, p < 0.003). An identical correlation (r = -0.58, p < 0.01) was also found between changes in mean arterial pressure (low salt diet) and urinary calcium excretion (water immersion) in the same hypertensives. The water immersion-induced suppression of plasma aldosterone and the increase in plasma atrial natriuretic peptide did result from comparable magnitude in the salt-sensitive and in salt-resistant subjects.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Renin-angiotensin system unresponsiveness in phaeochromocytoma.

Water immersion to the neck is able to provoke a profound suppression of the renin-angiotensin system in several clinical conditions associated with hyper-reninaemia. Both hyper-reninaemia and secondary aldosteronism have sometimes been described in phaeochromocytoma. We report on two patients, with surgically proven phaeochromocytoma, in whom water immersion, performed before surgery, failed to induce any significant change in plasma renin activity.

Adrenal Gland Neoplasms↗

A new diagnostic test for primary aldosteronism.

Isotonic-isooncotic central volume expansion by head-out water immersion was induced in six aldosterone-producing adenoma subjects and in six patients with idiopathic hyperaldosteronism. Plasma renin activity and plasma aldosterone levels did not significantly change during water immersion while serum cortisol was significantly suppressed (P less than .001) and the aldosterone-cortisol ratio increased (P less than .02) in aldosterone-producing adenoma patients. Water immersion also revealed the failure of plasma aldosterone levels to decrease below 10 ng/dL in these subjects, thus confirming previous results obtained during isotonic saline infusion. Otherwise, plasma renin activity and plasma aldosterone were significantly reduced (P less than .05 and P less than .01 respectively) by water immersion and plasma aldosterone invariably fell below 10 ng/dL in patients with idiopathic aldosteronism. In view of the diagnostic reliability of such a suppression test we conclude that water immersion is suitable for discriminating between the two forms of primary aldosteronism. We therefore suggest its use for assessing renin-aldosterone responsiveness in primary aldosteronism.

Adenoma↗

[Antihypertensive treatment: a combination of delapril, a new ACE-inhibitor, and indapamide].

The controlled study was carried out on 15 patients with essential hypertension not sufficiently controlled after one month of monotherapy with an ACE-inhibitor. To the above therapy was therefore associated a low dosage diuretic (indapamide 2.5 mg/day). The observation period was of 12 weeks. The delapril-indapamide combination was found to be very effective in reducing blood pressure values; no significant metabolic adverse effects were observed.

Adult↗

Dopaminergic modulation of acute renal effects of nicardipine.

In order to investigate whether dopamine receptors are involved in the acute natriuretic effects of calcium channel blockade, experiments were carried out in humans with uncomplicated essential hypertension. In 8 hypertensives 5 mg intravenous nicardipine produced a large decrease in blood pressure and renal vascular resistance, a slight but significant increase in glomerular filtration rate (GFR) and marked natriuresis. When a second identical experiment was performed in the same subjects with the addition of 10 mg metoclopramide as dopamine blocker, changes in sodium excretion and vascular resistance were the same, but GFR did not increase during nicardipine. In a second set of experiments (n = 5) the same design was used, but nicardipine was infused at a dose of 0.01 mg/kg, ie, seven times less than in previous experiments. Under these conditions, blood pressure, renal vascular resistance and GFR did not change, but significant natriuresis occurred. Natriuresis was almost completely prevented by metoclopramide. In 5 additional hypertensives, metoclopramide alone was infused and 0.01 mg/kg nicardipine was added to the infusion. No change in any parameter was observed. Our findings suggest that the dopaminergic system participates in maintaining or increasing GFR during blood pressure reduction by calcium antagonists, although renal vasodilation and natriuresis are largely independent of dopamine receptor activity. In addition, when low doses of calcium antagonists produce natriuresis in the absence of renal or systemic hemodynamic changes (direct tubular effect), dopamine blockade is able to blunt this effect. This indicates a modulation by dopaminergic receptors of the direct tubular action of calcium antagonists.

Blood Pressure↗

Sodium homeostasis and hormonal responses during dopaminergic blockade in normal humans.

Six normal subjects were submitted to 2 h water immersion (WI) with and without pharmacological dopaminergic (DA) blockade with metoclopramide (MCP). Urinary sodium excretion showed a marked increase during WI alone while it was blunted during WI plus DA blockade. Plasma aldosterone was significantly suppressed by WI alone but remained unchanged during WI plus MCP. Plasma atrial natriuretic factor showed similar augmentation during WI alone and during WI plus MCP. The reduced sodium and 6-keto-PGF1 alpha excretion, observed during WI plus MCP administration, suggests that dopamine might induce prostacyclin synthesis in the kidney during WI.

Adult↗

Increased urinary 6-keto-PGF1 alpha excretion during water immersion is blunted by metoclopramide in normal man.

Urinary excretion of 6-keto-PGF1 alpha and 2,3 dinor-6-keto-PGF1 alpha, as indices of the renal and systemic production of prostaglandins, was measured during water immersion in a group of 6 healthy volunteers both in the presence and absence of dopamine blockade by the dopamine receptor antagonist, metoclopramide. Urinary flow rate and excretion of both sodium and 6-keto-PGF1 alpha increased during water immersion, while plasma renin activity and plasma aldosterone were reduced. Urinary kallikrein and 2,3 dinor-6-keto-PGF1 alpha also tended to increase during water immersion. Administration of metoclopramide significantly reduced 6-keto-PGF1 alpha and sodium excretion during water immersion, but produced no changes in plasma renin activity or in 2,3 dinor-6-keto-PGF1 alpha. Plasma aldosterone concentrations after metoclopramide were similar to those observed in the pre-immersion period. An increased synthesis of the vasodilator and natriuretic prostacyclin in the kidney might play a role in the response to water immersion. The reduced sodium and 6-keto-PGF1 alpha excretion observed after metoclopramide administration suggests that dopamine might induce prostacyclin synthesis in the kidney during water immersion.

6-Ketoprostaglandin F1 alpha↗