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Biomedical subjects

J Biollaz

Publications and source records attributed to J Biollaz.

At least 109 records · Page 6Linked to original sources

[The treatment of cardiac insufficiency with vasodilators].

Vasodilators currently prescribed in the treatment of congestive heart failure represent a wide class of drugs. In acute heart failure, the therapeutic choice should be based on considerations about the mechanisms of drug action as well as the site of action on the vascular bed, together with the patient's hemodynamic and clinical characteristics. For medium-to long-term treatment the choice should be oriented towards drugs which do not activate compensatory or feedback regulation mechanisms. Use of therapeutic agents such as inhibitors of the angiotensin converting enzyme will avoid the development of physiological tolerance.

Angiotensin-Converting Enzyme Inhibitors↗

Tolerability and pharmacokinetics of L-648,051. A leukotriene D4-receptor antagonist, in healthy volunteers.

Two formulations of L-648,051 (L) were studied [intravenous (i.v.) and aerosol (A)] in two separate trials. Study I (i.v.) involved 4 normal male subjects in a single blind dose ranging study where good systemic tolerability and safety was shown. However, dose dependent local irritation at the injection site was observed at all dose levels (35, 52.5 and 70 mg/5 min infusion). L has a high systemic clearance rate (1.2 1/min), a small volume of distribution (4.41) and a short plasma half-life (2.4 min). Study II (A) involved 16 normal male volunteers who received incremental aerosolized doses of L from 0.1 to 1.6 mg in a double-blind, placebo controlled, dose ranging study. Complaints of mild local irritation or discomfort in the upper respiratory tract were the only significant findings. No dose relationship of these complaints could be shown. In conclusion, L is a safe and well tolerated drug when administered by aerosol. It causes dose related local, but not systemic, adverse experiences when administered i.v. In view of this tolerability and of its demonstrated activity against LTD4-challenge in animals, clinical efficacy studies with the aerosol formulation are warranted.

Adult↗

Lactitol: gastrointestinal absorption and effect on blood lactate in healthy volunteers and patients with cirrhosis.

The gastrointestinal absorption of lactitol has been studied in 6 healthy volunteers and 8 patients with cirrhosis. Following administration of lactitol 0.5 g/kg, no lactitol was found in serum. The urinary excretion of lactitol over 24 h ranged from 0.1 to 1.4% of the administered dose (0.46% in cirrhotics and 0.35% in healthy volunteers). Blood D- and L-lactate and plasma glucose did not increase following lactitol. The data indicate that lactitol was poorly absorbed from the gastrointestinal tract in healthy volunteers and patients with cirrhosis, and that the disaccharide did not disturb glucose or lactate homeostasis.

Adult↗

Hemofiltration clearance of flecainide in a patient with acute renal failure.

Flecainide, a new antiarrhythmic drug, has been shown not no be removed to a significant extent by hemodialysis or peritoneal dialysis, in spite of a high renal clearance. Its systemic and hemofiltrate clearances, measured in a patient under continuous hemofiltration, were 402 and 19.7 ml/min respectively. The clearance ratio of less than 5% makes the contribution of hemofiltration to the elimination of flecainide clinically negligible.

Acute Kidney Injury↗

Grand mal seizure after extradural morphine analgesia.

Following an elective Caesarean section under extradural anaesthesia, a 30-yr-old known epileptic woman (gravida 4, para 3) developed a tonic-clonic seizure, 6 h after the administration of morphine 3 mg into the extradural space. Possible aetiological factors are discussed.

Cesarean Section↗

Infusion of atrial natriuretic peptide to patients with congestive heart failure.

Atrial natriuretic peptides (ANP) exert vasodilating and natriuretic actions. The present study was undertaken to test the effect of low dose infusions of synthetic ANP on hemodynamic and humoral variables of patients with severe heart failure. Eight patients, aged 26 to 71 years, with severe congestive heart failure due to ischemic heart disease or idiopathic dilated cardiomyopathy were included in the study. Synthetic human (3-28) ANP was infused at doses ranging from 0.5 to 2 micrograms/min for up to 3 h. Pulmonary capillary wedge pressure fell from 24 +/- 1 to 16 +/- 2 mm Hg (mean +/- SEM) (p less than 0.01) and cardiac index tended to rise from 2 +/- 0.2 to 2.3 +/- 0.2 L/min/m2 (NS), while blood pressure and heart rate did not change. One patient experienced a marked drop in pulmonary capillary wedge and arterial blood pressure that necessitated the administration of saline. ANP infusion did not alter plasma renin activity or plasma aldosterone, norepinephrine, or vasopressin levels. It decreased plasma epinephrine levels from 0.472 +/- 0.077 to 0.267 +/- 0.024 nmol/L (p less than 0.05). Plasma ANP levels were markedly elevated in all patients before initiating the infusion. They had no predictive value for the hemodynamic response to exogenous ANP. No correlation was observed between the hemodynamic effects of ANP and those induced by the subsequently administered converting enzyme inhibitor captopril, which seemed to improve cardiac function more consistently.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Hemodynamic, renal, and endocrine effects of 4-h infusions of human atrial natriuretic peptide in normal volunteers.

A synthetic human atrial natriuretic peptide of 26 aminoacids [human (3-28)ANP or hANP] was infused into normal male volunteers. Six subjects were infused for 4 h at 1-wk intervals with either hANP at the rate of 0.5 or 1.0 microgram/min or its vehicle in a single-blind randomized order. Human (3-28)ANP at the dose of 0.5 microgram/min raised immunoreactive plasma ANP levels from 104 +/- 17 to 221 +/- 24 pg/ml (mean +/- SEM), but it induced no significant change in blood pressure, heart rate, effective renal plasma flow, glomerular filtration rate, or renal electrolyte excretion. At the rate of 1.0 microgram/min, human (3-28)ANP increased immunoreactive plasma ANP levels from 89 +/- 12 to 454 +/- 30 pg/ml. It reduced effective renal plasma flow from 523 +/- 40 to 453 +/- 38 ml/min (P less than 0.05 vs. vehicle), but left glomerular filtration rate unchanged. Natriuresis rose from 207 +/- 52 to 501 +/- 69 mumol/min (P less than 0.05 vs. vehicle) and urinary magnesium excretion from 3.6 +/- 0.5 to 5.6 +/- 0.5 mumol/min (P less than 0.01 vs. vehicle). The excretion rate of the other electrolytes, blood pressure, and heart rate were not significantly modified. At both doses, human (3-28)ANP tended to suppress the activity of the renin-angiotensin-aldosterone system. In 3 additional volunteers, the skin blood flow response to human (3-28)ANP, infused for 4 h at the rate of 1.0 microgram/min, was studied by means of a laser-doppler flowmeter. The skin blood flow rose during the first 2 h of peptide administration, then fell progressively to values below baseline. After the infusion was discontinued, it remained depressed for more than 2 h. Thus, in normal volunteers, human (3-28)ANP at the dose of 1.0 microgram/min produced results similar to those obtained previously with rat (3-28)ANP. It enhanced natriuresis without changing the glomerular filtration rate while effective renal plasma flow fell. It also induced a transient vasodilation of the skin vascular bed.

Adult↗

[Clinical experiences with atrial natriuretic factor].

Myocardial cells of mammals release a peptide with diuretic, natriuretic and vasodilating properties into the circulation. This peptide, called atrial natriuretic factor, is also involved in the regulation of plasma volume and, in addition, is instrumental in suppressing the activity of the renin-angiotensin-aldosterone system. The renal effects of the atrial natriuretic factor become less pronounced when systemic blood pressure is lowered. The auricular natriuretic factor seems to play an important role in cardiovascular regulation due to both its renal and extrarenal actions.

Animals↗

Pharmacokinetics of synthetic atrial natriuretic peptides in normal men.

The kinetics of atrial natriuretic peptides (ANP) and the kinetic profile of their effect on blood pressure and renal hemodynamic and electrolyte excretion were investigated in 20 salt-loaded healthy volunteers during and after constant rate infusion. At steady state, mean plasma concentrations of ANP were measured at 210, 430, and 2990 pg/ml and mean systemic clearance was 2.6, 2.5, and 1.7 L/min for ANP infusion rates of 0.5, 1, and 5 micrograms/min, respectively, which corresponds to the clearance rate of other vasoactive peptide hormones. The apparent volume of distribution averaged 17 L and the mean half-life was 4.5 minutes. ANP induced dose-related effects on systemic and renal hemodynamic, as well as urinary electrolyte excretion, albeit with a time lag between onset and full effect.

Adult↗

Site of the action of a synthetic atrial natriuretic peptide evaluated in humans.

The renal site of the natriuretic effect of human, atrial natriuretic peptide (hANP) was studied using clearance techniques in eight salt-loaded normal volunteers undergoing maximal water diuresis. Lithium was used as a marker of proximal sodium reabsorption. According to a two-way, single blind, crossover design, hANP (Met12-(3-28)-eicosahexapeptide, (2 micrograms/min) or its vehicle (Ve) were infused for two hours, followed by a two-hour recovery period. Blood pressure, heart rate and insulin clearance remained unchanged. During hANP infusion, the filtration fraction increased slightly from 19.6 to 24.3% (P less than 0.001), fractional water excretion rose transiently at the beginning of the infusion. Fractional excretion of sodium increased markedly from 2.2% to 7.4% (P less than 0.001) but remained unchanged with Ve. ANP increased fractional excretion of lithium slightly from 46 to 58% (P less than 0.01), while it remained stable at 47% during Ve. The distal tubular rejection fraction of sodium calculated from sodium and lithium clearances rose markedly from 4.7 to 13% (P less than 0.001) and returned to 6.2% at the end of the recovery period. Thus, under salt loading and water diuresis conditions, hANP infusion did not alter GFR, but reduced proximal reabsorption of sodium, and markedly enhanced the fraction of sodium escaping distal tubular reabsorption, suggesting that hANP-induced natriuresis is due, for an important part, to inhibition of sodium reabsorption in the distal nephron.

Adult↗

Lack of angiotensin I accumulation after converting enzyme blockade by enalapril or lisinopril in man.

In nine normal volunteers, a series of five venous blood samples was obtained before and up to 24 h after converting enzyme inhibition by a single oral dose of enalapril or lisinopril. Plasma renin activity and blood angiotensin I were measured. A close linear relationship was found between the increase in plasma renin activity and the increase in blood angiotensin I. The linear correlation between plasma renin activity and blood angiotensin I remained after converting enzyme inhibition. Thus, the rise in angiotensin I after inhibition of the conversion of angiotensin I to angiotensin II is due to an enhanced release of renin rather than to accumulation of angiotensin I.

Adult↗

[Extrarenal effects of the atrial natriuretic factor].

The synthesis of peptides which have the natriuretic and vasodilator properties of the atrial natriuretic factor has made it possible to study the physiological role of this recently discovered hormonal system. In addition to renal effects, atrial natriuretic peptides exert vascular, hemodynamic and endocrine actions which may participate in the regulation of plasma and interstitial volume as well as arterial blood pressure. Its acute hypotensive effect, which was observed in normal volunteers and in patients with cardiac failure or hypertension, is not entirely explained by its direct vasodilator effect. The complexity of its role is demonstrated by its inhibiting action on the synthesis and/or the activity of other vasoactive hormones. The observed increase in hematocrit suggests that vascular permeability may be enhanced; the resulting consequences, e.g. on blood viscosity, still need to be elucidated. When infusing atrial natriuretic peptides, there exists a clear delay between the moment steady-state plasma levels are achieved and peak effect occurs. This renders the interpretation of the results very difficult. At this moment, the physiological role of atrial natriuretic peptides as well as their potential future use as therapeutic agents cannot yet be fully appreciated.

Atrial Natriuretic Factor↗

[Effects of perfusion of human atrial natriuretic factor in normal volunteers].

The renal and systemic effects of a synthetic atrial natriuretic peptide (ANP) corresponding to the sequence of the human hormone was investigated in normal volunteers. Each subject was infused for 4 hours on 3 different days at a one week interval with either ANP (0.5 or 1 microgram/min) or its vehicle. ANP enhanced natriuresis without simultaneously modifying glomerular filtration rate. ANP did, however, reduce effective renal plasma flow. In spite of the increased natriuresis, the activity of the renin-angiotensin-aldosterone system was reduced during ANP infusion. ANP induced a transient increase in skin blood flow. No change in blood pressure and heart rate occurred in the course of the experiment.

Adult↗

Effect of oral triiodothyronine during amiodarone treatment for ventricular premature complexes.

Whether there is a link between the antiarrhythmic efficacy of amiodarone and its blocking effect on the peripheral conversion of tetraiodothyronine (T4) to triiodothyronine (T3) is uncertain. If such a link exists, oral intake of T3 during amiodarone treatment could reverse, at least partially, the antiarrhythmic efficacy of amiodarone. To assess the safety of oral intake of T3 during amiodarone treatment and gain further insight into the relation between the antiarrhythmic action of amiodarone and its metabolic effect on T4, 7 patients (aged 32 to 62 years) with multiple ventricular premature complexes (VPCs) but no underlying heart disease were studied. Antiarrhythmic treatment was indicated for symptomatic relief only. Each patient underwent a 48-hour ambulatory electrocardiographic recording, electrocardiography and thyroid function tests, including plasma T4, T3, reverse T3 (rT3), free T4, free T3 and thyroid-stimulating hormone without treatment (baseline) after 1 month of amiodarone therapy and after a second month of amiodarone therapy with increasing doses of oral T3 (up to 75 micrograms/day). Treatment with amiodarone resulted in a decrease in plasma T3 and free T3, an increase in plasma rT3, a marked diminution in the frequency of VPCs and a prolongation of the corrected QT interval (QTc). During treatment with amiodarone and T3, plasma T3 and free T3 increased and plasma T4, free T4 and rT3 levels decreased; the frequency of VPCs remained low despite shortening of the QTc to values not different from baseline. Thus, in patients with frequent VPCs and no underlying heart disease, oral intake of T3 during amiodarone treatment is safe and does not abolish the antiarrhythmic efficacy of amiodarone, despite a shortening of the QTc.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Oral↗

Atrial natriuretic peptides: reproducibility of renal effects and response of liver blood flow.

To assess the variability of the response to exogenous atrial natriuretic peptide (ANP), it was infused at the rate of 1 microgram/min for 2 h in 6 salt-loaded normal volunteers under controlled conditions on 2 occasions at an interval of 1 week. The effect on solute excretion and the haemodynamic and endocrine actions were highly reproducible. The constant ANP infusion caused a delayed and prolonged excretion of sodium, chloride and calcium, no change in potassium or phosphate excretion or in glomerular filtration rate but a marked decrease in renal plasma flow. Blood pressure, heart rate and the plasma levels of angiotensin II, aldosterone, arginine vasopressin and plasma renin activity were unaltered. The effect of a 2-h infusion of ANP 0.5 microgram/min or its vehicle on apparent hepatic blood flow (HBF) was also studied in 14 normal volunteers by measuring the indocyanine green clearance. A 21% decrease in HBF was observed in subjects who received the ANP infusion (p less than 0.01 vs vehicle). Thus, ANP infused at a dose that did not lower blood pressure decreased both renal and liver blood flow in normotensive volunteers. The renal and endocrine responses to ANP were reproducible over a 1-week interval.

Adult↗