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Biomedical subjects

H Ibsen

Publications and source records attributed to H Ibsen.

At least 91 records · Page 5Linked to original sources

Converting enzyme inhibition in mild and moderate essential hypertension. II.

In 24 patients with mild/moderate essential hypertension, we studied the effects of captopril with/without hydrochlorothiazide (Htz) on blood pressure, the renin-angiotensin system, blood bradykinin concentration (BBK), plasma volume, exchangeable sodium and glomerular filtration. Daily captopril doses of 75 and 150 mg were equally effective in reducing the blood pressure. Addition of Htz caused further blood pressure reductions. Nineteen patients attained a diastolic blood pressure less than or equal to 90 mmHg. Angiotensin converting enzyme inhibition with captopril led to a fall in plasma concentrations of angiotensin II (PAII) and renin substrate, and an increase in plasma concentrations of renin and angiotensin I. Patients starting with Htz had a higher PAII and subsequently a larger fall in blood pressure on captopril than untreated patients. BBK remained unchanged, indicating that the hypotensive action of captopril does not involve an accumulation of circulating kinin. Body fluid volumes and renal function were not affected by the various treatment regimens.

Adult↗

Lack of effect of nifedipine on counterregulatory mechanisms in essential hypertension.

The influence of long-term nifedipine treatment on body fluid compartments, renal function, the renin-angiotensin system, and the adrenergic system was studied in 18 patients with essential hypertension. A placebo period of 4 weeks was followed by a 6-week dose-titration period. Thereafter, the dose was kept constant for an additional 6 weeks (mean dose, 51 mg/day). As compared with placebo values, diastolic blood pressure decreased approximately 12% during nifedipine treatment. Plasma volume, extracellular fluid volume, and the ratio of plasma to interstitial fluid volume did not change significantly, either in the group as a whole or in a subgroup in which pedal edema developed. Plasma concentrations of epinephrine and norepinephrine increased slightly after 2 weeks of treatment, but they returned to control values after 6 weeks of therapy. Plasma concentrations of renin, angiotensin II, and aldosterone did not change significantly. Glomerular filtration rate and renal clearances of sodium and potassium were unchanged as well. These results indicate that long-term nifedipine treatment does not lead to activation of counterregulatory mechanisms, such as fluid retention or the renin-angiotensin or adrenergic systems. This may well be of importance for the antihypertensive efficacy of nifedipine treatment.

Adult↗

Converting enzyme inhibition in mild and moderate essential hypertension. I. Acute effects on blood pressure, the renin-angiotensin system and blood bradykinin after a single dose of captopril.

The acute effects of 25 mg captopril on blood pressure, heart rate, components of the renin-angiotensin system and blood concentration of bradykinin were followed in a single-blind placebo study of untreated (group A, n = 15) and thiazide-treated (group B, n = 13) patients with mild or moderate essential hypertension. A drug-related fall in blood pressure was seen in both groups. The blood pressure reduction was more marked in group B than in group A. Heart rate remained unchanged. Plasma concentrations of angiotensin II decreased significantly with concurrent increases in plasma concentrations of renin and angiotensin I, indicating the in vivo inhibition of converting enzyme. Blood concentrations of bradykinin showed no systemic changes. The magnitude of blood pressure reduction was correlated both with the pretreatment levels and the concurrent decreases in plasma angiotensin II. Inhibition of angiotensin II formation can explain a large part of the acute hypotensive pharmacological action of captopril. Other vasoactive systems may be involved. The kallikrein-kinin system does not appear to participate as indicated by the unchanged concentrations of kinin in blood.

Adult↗

Deterioration of renal function during angiotensin converting enzyme inhibition in hypertensive patients with a poorly functioning solitary kidney.

During treatment with the angiotensin converting enzyme inhibitor, Captopril, glomerular filtration rate (GFR) decreased in three unilaterally nephrectomized hypertensive patients with a poorly functioning remaining kidney. The fall in GFR was not related to changes in the blood pressure, and was reversed when Captopril was stopped. In a fourth nephrectomized patient the initially normal GFR was not affected by captopril. These observations point to a functional reduction in GFR due to a withdrawal of an intrarenal action of angiotensin II. Maintenance of GFR may become critically dependent on a functioning renin-angiotensin system when renal perfusion pressure is reduced to a certain degree. Inhibition of angiotensin II formation may lead to a decrease in GFR in patients with renal hypertension and pre-existing renal insufficiency.

Aged↗

The influence of nifedipine treatment on counter-regulatory mechanisms in essential hypertension.

The influence of nifedipine treatment on plasma (PV) and extracellular fluid volume (ECV), the ratio of plasma volume to interstitial fluid volume (PV:IF), glomerular filtration rate (GFR), renal clearances of Na+ and K+, plasma concentrations of renin (PRC), angiotensin II (pANG II), aldosterone (pAldo), adrenaline (PA) and noradrenaline (PNA) were studied in 18 consecutive patients with essential hypertension. A 4-week placebo period was followed by a 6-week dose-titration period (period A). Thereafter the dose was kept constant for an additional 6 weeks (period B), the mean dose being 51 mg/day. As compared with placebo, diastolic blood pressure (DBP) decreased from 105 +/- 7 to 93 +/- 9 mmHg at the end of period B. Extracellular fluid volume, PV, and PV:IF were not significantly changed at the end of period A or B, neither in the group as a whole nor in a subgroup, who developed pedal oedema. After 2 weeks on nifedipine, PA as well as PNA increased slightly but returned to control values after 6 weeks of therapy. Plasma renin concentration, pANG II, pAldo and GFR did not change significantly. Renal sodium handling was also unchanged. It is concluded that long-term nifedipine therapy (exceeding 6 weeks) does not lead to activation of counter-regulatory mechanisms such as fluid retention, activation of the renin-angiotensin system and the adrenergic system. Renal function is unaffected by nifedipine.

Adult↗

The renin-angiotensin system during converting enzyme inhibition with captopril in patients with severe treatment-resistant hypertension.

The effect of captopril on blood pressure (BP) and various components of the renin-angiotensin system was assessed in ten severely hypertensive patients. Captopril acutely reduced the BP with a maximum decrease of 23% at 90-120 min. Maintenance treatment with captopril alone could not control the BP in any of the patients. Addition of hydrochlorothiazide markedly reduced the BP, while supplementation with propranolol caused no consistent changes. Three patients attained a supine diastolic blood pressure (SDBP) less than or equal to 90 mmHg. Only two patients had a fall in SDBP less than 10 mmHg. One patient stopped because of taste disturbances. Monitoring the renin-angiotensin system showed suppressed plasma concentrations of angiotensin II and increased levels of angiotensin I and renin, indicating the inhibition of converting enzyme activity. Plasma concentration of renin substrate decreased significantly. This observation has important implications for the methodology of renin assays. Captopril is an effective alternative in the treatment of hypertensive patients not readily controlled with conventional therapy.

Adult↗

Contrasting effects of the renin-angiotensin system on renal function disclosed during converting enzyme inhibition in patients with renal hypertension.

In three unilaterally nephrectomized patients with a poorly functioning remaining kidney, a reversible decrease of glomerular filtration rate (GFR) was observed during treatment with captopril. Only modest decreases in blood pressure occurred. In four patients with various forms of malignant hypertension and impairment of renal function, GFR remained unchanged or even increased when the blood pressure was reduced by captopril. All patients had increased plasma concentrations of renin and angiotensin II prior to captopril. We hypothesize that an activation of the renin-angiotensin system in hypertensive patients with reduced GFR may either reflect a compensatory mechanism aiming at maintaining renal function, or imply an excessive angiotensin-mediated vasoconstriction causing a decrease in renal function. The use of angiotensin converting enzyme inhibitors may be damaging for renal function in the first situation and beneficial in the second.

Adult↗

Pharmacologic tools for assessment of adrenergic nerve activity in human hypertension.

Measurement of plasma norepinephrine concentration (plasma NE) has not resolved the role of the adrenergic system in the pathogenesis or maintenance of hypertension. A better picture is gained if plasma NE measurement is combined with the assessment of sympathetic drive and reactivity by the use of specific sympathetic antagonists and agonists. In mild hypertension, the decrease in heart rate and cardiac output after beta-adrenoceptor blockade correlates with the level of plasma NE. In established hypertension, the fall in blood pressure or peripheral vascular resistance after alpha-adrenoceptor blockade is related to plasma NE levels. Similarly, changes in forearm vascular resistance induced by local alpha-adrenoceptor blockage correlates with plasma NE in hypertension. Cardiovascular responsiveness to adrenergic agonists is altered in hypertension. The response to cardiac beta-receptor stimulation decreases during the course of the disease. To the contrary, vascular responses to exogenous NE increase with the progression of the hypertensive disease. Results with total autonomic blockade indicate that in some patients with early or borderline hypertension, increased sympathetic tone is involved in the maintenance of blood pressure. In established hypertension, there is no definite indication of increased sympathetic tone, but the sympathetic nervous system may nevertheless play a prominent role in the maintenance of the blood pressure. A vascular hyperreactivity to adrenergic stimulation is characteristically associated with established hypertension. The nature of this hyperreactivity has not been fully elucidated, but it is very likely that it reflects structural vascular changes in hypertension.

Autonomic Nervous System↗

Effects of amiloride on plasma and total body potassium, blood pressure, and the renin-angiotensin-aldosterone system in thiazide-treated hypertensive patients.

Total body potassium content, plasma potassium concentration, blood pressure, and plasma concentrations of renin, angiotensin II, and aldosterone were measured in patients with essential hypertension after a run-in period of 8 wk on a regimen of hydrochlorothiazide (median dosage 75 mg/day). Patients were then randomly assigned to continued hydrochlorothiazide therapy (group I) or to receive adjunctive treatment with amiloride (group II, median dosage 15 mg/day or 5 mg per 25 mg hydrochlorothiazide) for the following 3 mo. There were no changes in group I patients during 3 mo on hydrochlorothiazide in plasma potassium, total body potassium content, or the renin-angiotensin-aldosterone system. Blood pressure was also unchanged. In group II patients addition of amiloride to hydrochlorothiazide induced a rise in plasma and total body potassium of approximately 15% and 4%. The potassium-retaining effect was maintained throughout the 12-wk period, although the maximal changes were observed after 8 wk of treatment. Supine blood pressure did not change, but there was a significant decrease in standing systolic blood pressure. There was a marked rise in plasma concentrations of renin, angiotensin II, and aldosterone.

Adult↗

Cardiopulmonary mechanoreceptors and renin release in humans.

We investigated the hemodynamic determinants of the reflex release of renin to changes in posture and blood volume distribution in healthy humans to determine the relative contribution of arterial and cardiopulmonary mechanoreceptors to the reflex release of renin under physiological circumstances. In the first experiments, we induced a selective decrease of right atrial pressure by inflation of cuffs around the thighs. Renin increased and returned toward baseline on decompression. The renin increase was neurogenic because plasma norepinephrine increased, the response was abolished by beta blockade, and renin did not increase in patients with denervated transplanted kidneys. The second experiments were performed with tilting and later filling a pressure suit to counteract the effect of tilting on gravitational pooling of the blood. Tilting elicited increases of renin and norepinephrine; filling the suit abolished these increases. Right atrial pressure fell with tilting and rose after filling the suit. Because the neck was elevated above the heart equally in both conditions, it is concluded that the increase and decrease of renin reflected decrease and increase of the stretch of cardiopulmonary receptors. The third experiments were performed by elevating the upper trunk with the legs remaining in a horizontal position (sitting). This caused a heart-to-neck pressure difference and an increased sympathetic outflow through unloading arterial baroreceptors. Norepinephrine increased but renin did not. Cardiopulmonary receptors exhibit an important influence on the reflex release of renin.

Blood Pressure↗