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Biomedical subjects

S Rubattu

Publications and source records attributed to S Rubattu.

64 records · Page 4Linked to original sources

The effects of aprotinin, a kallikrein inhibitor, on renin release and urinary sodium excretion in mild essential hypertensives.

The effects of aprotinin on renin release and renal function were evaluated in 24 male essential hypertensive patients, on unrestricted (n = 17) and on chronic low as well as on high sodium intake. Aprotinin (1 X 10(6) kallikrein inhibitor units) or saline (200 ml) were infused in all patients for 6 h. Blood samples were taken for plasma renin activity (PRA) and 6-h urine collections were obtained for active and inactive kallikrein, sodium and potassium excretion measurement. In patients on unrestricted sodium diet, aprotinin had no effect on blood pressure (BP), glomerular filtration rate, renal plasma flow, urinary sodium and potassium excretion. However, an inverse relationship was found between pretreatment urinary sodium excretion and the per cent reduction of the latter after aprotinin. A significant reduction in urinary sodium excretion was induced by aprotinin in patients on high sodium intake, whereas no change was observed in the same patients when on a low sodium diet. Aprotinin reduced the urinary excretion of active kallikrein by 81% and the active to total kallikrein ratio from 24 to 6%. Infusion of aprotinin induced a significant decline in active renin but did not modify inactive renin levels in patients on unrestricted sodium diet as well as in patients on low or high sodium intake. Our data suggest that the inhibition of kallikrein and/or other serine proteases by aprotinin can interfere with renal release of active renin and also support the hypothesis that the renal kallikrein system exerts a regulatory control on sodium excretion in salt replete hypertensives.

Adult↗

Role of renal kallikrein in modulating the antihypertensive effect of a single oral dose of captopril in normal- and low-renin essential hypertensives.

The antihypertensive efficacy of angiotensin converting enzyme (ACE) inhibitors may result from the blockade of angiotensin II formation but also, theoretically, from the inhibition of kinin breakdown. To test whether a blunted activity of the kallikrein-kinin system might account for the failure of ACE inhibitors in lowering blood pressure (BP) in patients in whom the renin-angiotensin system (RAS) is not enhanced, 31 essential hypertensives with normal or low plasma renin activity (PRA) were evaluated before and after a single oral dose (50 mg) of captopril. A significant fall, in both systolic and diastolic BP, was obtained in the subgroup of patients who were classified as 'normal-kallikrein hypertensives' according to whether their pretreatment urinary kallikrein excretion was within the normal range, while no significant change in BP was observed in 'low-kallikrein hypertensives'. Furthermore, the mean percentage fall in mean BP, throughout the 2 h following captopril administration, was significantly related to the basal value of urinary kallikrein excretion (r = 0.47, P less than 0.05) in all the patients. Our results suggest that blunted activity of the kallikrein system might be responsible for failure of captopril to lower BP in some hypertensive patients.

Adult↗

Natriuretic effect of acute nifedipine administration is not mediated by the renal kallikrein-kinin system.

Despite their vasodilating action, calcium antagonists increase renal sodium excretion. To ascertain whether renal kallikrein plays a role in the renal effects of calcium antagonists, nifedipine (N) (10 mg orally) or placebo (P) was given to 17 male patients with mild to moderate essential hypertension during a 6-h infusion of either saline (S) or aprotinin (A) (2 X 10(6) KIU in 200 ml of saline). Blood pressure (BP) and heart rate (HR) were measured every 10 min, and blood samples were taken at -10, 0, 30, 60, 120, 240, 360 min for plasma renin activity (PRA), creatinine, and osmolarity determinations. Urinary kallikrein, aldosterone, creatinine, and electrolytes were measured in 6-h urine collections. The acute administration of N induced a significant systolic BP (SBP) and diastolic (DBP) fall and a transient PRA increase that peaked at 30 min and were not modified by A infusion. Urinary volume (+47%), Na+ (+54%) and Cl- (+58%) excretion were significantly enhanced by N. There were less pronounced and statistically not significant increases in urinary excretion of Ca2+ (+38%) and K+ (+29%). Infusion of A did not interfere with the natriuretic effect of N. Our data do not support the hypothesis that the kallikrein-kinin system plays an important role in mediating the renal effects of nifedipine in humans.

Adult↗

Comparison of sublingual and oral captopril in hypertension.

The use of sublingual captopril has been recently suggested in hypertensive crisis on the assumption of a faster absorption and thus a more rapid effect on blood pressure than with the oral route. To verify this hypothesis we have compared the hypotensive effect of oral and sublingual captopril in 40 essential hypertensives who were randomly allocated to either route of administration. Captopril was administered orally dissolved in water or allowed to dissolve under the tongue. After 5, 10, 20, 30, 40, 60 and 90 minutes blood pressure, Plasma Renin Activity (PRA) and Angiotensin Converting Enzyme (ACE) were measured. No significant differences were found between the two groups in the time course of blood pressure decrease, PRA increase and ACE inhibition. The changes of the parameters studied was superimposable irrespective of the route of administration thus not supporting the hypothesis that sublingual captopril might be absorbed more rapidly.

Administration, Oral↗

Relation between urinary kallikrein excretion and blood pressure response to a single oral dose of captopril.

Thirty-one essential hypertensives with normal or low PRA were evaluated before and after a single oral dose (50 mg) of captopril. A significant fall both in systolic and diastolic blood pressure (BP) was obtained in the subgroup of patients who were classified as "normal kallikrein hypertensives", while no significant change in BP was observed in "low kallikrein hypertensives". Furthermore the mean percentage fall in mean BP, throughout the 2 hours following captopril administration, was significantly related to the basal value of urinary kallikrein excretion (r = 0.47 p less than 0.05) in the entire group of patients. Our results suggest that a blunted activity of the kallikrein system might be responsible for failure of captopril in lowering BP in patients in whom the renin-angiotensin system is not pathogenetically implicated.

Adult↗

Angiotensin converting enzyme inhibition reduces ACTH release due to hypoglycaemia.

To investigate the role of Angiotensin II in the release of ACTH, the response of adrenocorticotrophic hormone to hypoglycaemia was studied before and during treatment with an angiotensin converting enzyme inhibitor, enalapril, in 15 male patients with essential hypertension. Plasma levels of ACTH were measured before and 60, 90 and 120 min after an i.v. bolus of normal saline, as placebo, and, 3 days later, after an i.v. bolus of regular insulin (0.15 U/Kg b.w.). Enalapril treatment was then started and both placebo and hypoglycaemic tests were repeated 15 days thereafter. No changes in ACTH plasma levels were observed after acute normal saline either before or during enalapril treatment. On the contrary, hypoglycaemia induced a sharp increase of ACTH before enalapril (from 19.5 +/- 4.1 to 74.4 +/- 13.0 pg/ml, p less than 0.01 60 min after insulin) but not during ACE inhibition (from 26.1 +/- 6.2 to 34.6 +/- 5.9 pg/ml, NS, at min 60 of the study). The present data confirm our previous observation on the reduction of the hypoglycaemic-induced ACTH release during ACE inhibition with captopril and support the hypothesis that circulating Ang II may exert a facilitating role on adrenocorticotrophic hormone release.

Adrenocorticotropic Hormone↗

Effect of nifedipine and verapamil on carbohydrate metabolism in hypertensive patients with impaired glucose tolerance.

Intracellular Ca2+ influx is an essential step in insulin (I) release. Calcium antagonists are reported to reduce I release in vitro and in patients with impaired glucose tolerance (IGT) during acute administration. Their effects during long-term therapy are still controversial. To evaluate the effects of chronic verapamil (V) and nifedipine (N) on carbohydrate metabolism, 12 hypertensive patients (WHO II; aged 37-64 years) with IGT underwent intravenous glucose tolerance tests (IVGTT) (0.33 g/kg body weight in 3 min), arginine (A) infusion (30 g/30 min), and hypoglycemic stress (regular insulin 0.15 U/kg body weight) during which blood levels of glucose (G), I, growth hormone (GH), glucagon (IRG), and cortisol (C) were measured. The patients were then randomized to V (120 mg b.i.d.) or N (20 mg b.i.d.) treatment and, 1 month later, both IVGTT and A infusion were repeated. Hormone determinations were performed by the radioimmunoassay (RIA) and G by the enzymatic method. The patients were maintained on their usual diet for the duration of the study. The rate of decline of G during IVGTT was expressed as Conard's K coefficient (K; normal values greater than 1.3). I and GH during IVGTT were evaluated as the differences between basal and peak values. I, IRG, and GH during A infusion were analyzed as incremental areas. Our results show that neither V nor N impaired carbohydrate metabolism in hypertensive patients with IGT.

Adult↗

Prokallikrein and kallikrein inhibitors in human urine.

Kallikrein activity (KA) and kallikrein inhibitors (KI) were evaluated in urine from normal subjects and essential hypertensives. Kallikrein inhibitors were almost completely removed by dialysis against water, confirming previous reports of their low molecular size. The negative relationship found between KA and KI in urine samples from 12 normal subjects suggests that KI might play a role in the modulation of KA excreted by the kidney. Heating (85 degrees C for 20 min) partially reduced (-52%) KI, indicating thermostable substances other than peptides as KI. When cations were evaluated as possible KI, by adding different salts to dialysed salt-free urine, only sodium was able to inhibit KA by 20% at a concentration not far from the physiological range. Trypsin added to dialysed urine produced a striking increase in KA without significant changes in Km and pH optimum. These findings, together with the observation that acid dialysis did not increase KA, strongly support the hypothesis that trypsin-activatable kallikrein might be a pro-enzyme. A lower urinary excretion of active kallikrein was found in 48 essential hypertensives when compared with 31 normotensive controls. However, trypsin-activatable kallikrein excretion was similar in the two groups, suggesting that low KA in hypertensives might not reflect a defective conversion of the pro-enzyme into the active form.

Adult↗

Hypertension and heart failure: role of neurohormonal mechanisms.

Hypertension represents the most common associated cause of heart failure, and it is frequently involved in the pathogenesis of left ventricular dysfunction and its progression towards congestive heart failure. A common pathophysiological link of hypertension to heart failure is represented by the abnormalities of the neurohormonal profile and its impact on cardiac function, systemic hemodynamics and salt/water balance. This article synthetically reviews this aspect together with a specific analysis of the significance of measurements of neurohormones for diagnosis and prognostic stratification in heart failure.

Heart Failure↗