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Biomedical subjects

R E Kates

Publications and source records attributed to R E Kates.

At least 73 records · Page 4Linked to original sources

Clinical pharmacology and antiarrhythmic efficacy of encainide in patients with chronic ventricular arrhythmias.

We determined the pharmacokinetics, efficacy and therapeutic plasma concentration of encainide, a new antiarrhythmic drug that affects His-Purkinje conduction but not ventricular refractoriness. Nine patients with frequent and complex premature ventricular complexes were studied in a 3-day double-blind protocol. Each day, each patient received 75 mg of i.v. or oral encainide or placebo. Frequent blood samples for encainide plasma concentration determination and continuous ambulatory ECGs were obtained. There was a marked intersubject variation in bioavailability (mean 42 +/- 24%, range 7.4-82%), clearance (13.2 +/- 5.6 ml/min/kg, range 3.75-22.1 ml/min/kg) and half-life (3.4 +/- 1.7 hours i.v., 2.5 +/- 0.8 hours oral). Eight of nine patients had more than 90% suppression of premature ventricular complexes for 3-36 hours. Minimal antiarrhythmic plasma concentration was higher (39 +/- 54 ng/ml, range 3.5-170 ng/ml) after i.v. dosing than after oral dosing (14 +/- 16 ng/ml, range 1.5-48 ng/ml), suggesting an active metabolite after oral dosing in many patients. Minimal side effects were seen despite high peak plasma concentrations (range 794-1556 ng/ml i.v., 36-495 ng/ml oral). The minimal ratio of toxic to therapeutic plasma concentration ranged from 4.3-326 (median 23) after oral dosing. Antiarrhythmic action was associated with an 11-44% widening of the QRS complex that was not associated with other adverse effects. We conclude that encainide effectively suppresses ventricular arrhythmias. Despite a variable bioavailability, high clearance and short half-life, its wide ratio of toxic to therapeutic concentration and probable active metabolite permit a long duration of action, which should allow a reasonable dose schedule in most patients during chronic oral dosing.

Aged↗

Intravenous N-acetylprocainamide disposition kinetics in coronary artery disease.

N-Acetylprocainamide (NAPA) disposition kinetics was studied in eight patients with coronary artery disease. NAPA was given over a 45-min period by intravenous infusion, and blood samples were drawn at specified times for 24 hr. NAPA plasma levels were determined by a specific high-pressure liquid chromatography (HPLC) procedure and the concentration-time data were fit to a three-compartment model. Mean (+/- SD) values for the elimination half-life, the total body clearance, and the steady-state volume of distribution were 9.53 +/- 3.22 hr, 1.98 +/- 0.40 ml/min/kg, and 1.30 +/- 0.18 1/kg. There was moderate intersubject variability in disposition. The data reported here differ from those reported for normal subjects.

Acecainide↗

Influence of prolonged recumbency on drug disposition.

The disposition of lidocaine and penicillin was studied in normal subjects before and after 7 days of total recumbency. Penicillin (1,000,000 U) and lidocaine (100 mg) were administered intravenously. Lidocaine protein binding was also followed. Total body clearance, elimination half-life, and volume of distribution were calculated. There were no statistically significant differences in these disposition parameters before and after 7 days of recumbency. The binding of lidocaine also was not changed after bed rest. We conclude that the physiologic changes that occur during prolonged bed rest do not affect distribution or elimination of lidocaine or penicillin.

Bed Rest↗

Therapeutic monitoring of antiarrhythmic drugs.

Antiarrhythmic drugs are potent agents which generally have narrow therapeutic indices. The consequences of administering either too little or too much can be life-threatening. Consequently, monitoring of plasma concentrations of these agents is an important part of rational antiarrhythmic therapy. In using therapeutic plasma concentration range guidelines, one must be conscious of the fact that the relationship between measured plasma concentration and therapeutic response is influenced by several factors. The influence of active metabolites and variability in the degree of plasma protein binding are two important factors. In treating arrhythmias, one must take into account the pharmacokinetics of the particular drug being used and the factors which modulate its plasma concentration-response relationship.

Anti-Arrhythmia Agents↗

Atenolol: once-daily cardioselective beta blockade for angina pectoris.

The physiology, pharmacokinetics and efficacy of atenolol, a cardioselective beta-adrenergic blocking agent, were evaluated in 10 patients with stable angina pectoris in a single-blind, dose-ranging study. After a 1-month control placebo period, atenolol was administered once daily at dosages of 25, 50, 100 and 200 mg for 2-week periods. All patients had fewer anginal attacks and consumed fewer nitroglycerin tablets than mg for 2-week periods. All patients had fewer anginal attacks and consumed fewer nitroglycerin tablets than during the placebo period. Twenty-four-hour ambulatory ECG recordings showed a decrease in mean hourly heart rate throughout the dosing period, with preservation of diurnal variation. Maximal, symptom-limited, treadmill exercise tests performed 3 hours after drug ingestion showed significantly increased exercise time and decreased double products for all doses, but especially with 100-mg and 200-mg doses. Exercise time 24 hours after drug ingestion continued to show a decrease in maximum heart rate and double product, with 100-mg and 200-mg doses again being most effective. Atenolol serum levels correlated with percent reduction in exercise heart rate and increased exercise time. Serum levels rose linearly, with an average elimination half-life of about 10 hours after chronic oral dosing. Thus, atenolol was an effective antianginal agent and suppressed resting and exercise-stressed heart rate for 24 hours after ingestion when given in a 100-mg or 200-mg dose once daily.

Adult↗

A model to describe myocardial drug disposition in the dog.

A model, employing open-chested, anesthetized dogs, was developed to facilitate the study of myocardial drug disposition. Propranolol was employed as a model compound for initial investigation. Propranolol was administered as either a single i.v. bolus of 0.5 mg/kg or by a stepwise infusion protocol employing three rates: 2.6, 6.5 and 12.0 micrograms/kg/min. Blood and myocardial biopsy samples were obtained at specified times and the concentration of propranolol in tissue homogenates and plasma was determined by a high-pressure liquid chromotographic procedure. The concentration-time data obtained from the i.v. bolus studies were fitted to a three-compartment model where one of the compartments represented the myocardium. The model predicts that plasma and myocardial concentrations achieve distribution equilibrium within 2 min after administration. The myocardial-to-plasma concentration ratios ranged from 6.2 to 20.3 and were constant with time for each dog. The myocardial-to-plasma concentration ratios also remained constant during the infusion protocol, indicating linear accumulation up to myocardial concentrations of 6.7 micrograms/ml. To assess regional myocardial concentration differences, the concentration of drug in the right atrium was compared with the concentration of drug in the right atrium was compared with the concentration in the left ventricle at the end of the infusion protocol. The concentrations were not significantly different. The model developed will be used to study the myocardial disposition of several antiarrhythmic drugs and the factors which affect their rate and extent of accumulation.

Animals↗

Rapid high-pressure liquid chromatographic analysis of verapamil in blood and plasma.

A high-pressure liquid chromatographic assay procedure has been developed for verapamil in blood or plasma. A paired-ion solvent system with a reversed-phase column is employed. The procedure is specific for verapamil and the retention times of the major metabolites are identified. This procedure is sensitive to a lower blood concentration of 1 ng/ml and standard curves were found to be linear up to the highest concentration tested, 500 ng/ml. Several drugs were tested for interference with the assay, but none were found to cause any problems. The procedure is simple, rapid and permits the analysis of up to 25 samples per day.

Chromatography, High Pressure Liquid↗

The relationship between plasma dobutamine concentrations and cardiovascular responses in cardiac failure.

Plasma dobutamine concentrations and hemodynamic and noninvasive cardiac measurements were made during dobutamine infusions in eight patients with congestive cardiomyopathy and low output heart failure. Plasma concentrations correlated well with infusion rates (2.5, 5.0, 7.5 and 10 microgram/kg/min). Cardiac output and stroke volume increased linearly, whereas pulmonary capillary wedge pressure, and total pulmonary and systemic resistances decreased linearly with increasing dobutamine concentrations. No constant relationship existed between plasma dobutamine levels and changes in heart rate or mean arterial pressure. The noninvasive left ventricular function data (echocardiographic and systolic time intervals) correlated linearly with plasma concentrations and suggest that these noninvasive technics be employed in guiding the administration of this new inotropic agent.

Adult↗

Binding of quinidine to plasma proteins in normal subjects and in patients with hyperlipoproteinemias.

Quinidine in the plasma binds to various lipoproteins as well as to albumin. With the use of computer simulations the effect of varying the serum level of each of the lipoproteins as well as albumin was examined. The results suggested that the overall binding of quinidine is relatively insensitive to changes in any one serum protein provided the others are present in normal concentrations. Evaluation of the degree of protein binding of quinidine in plasma from normal subjects and patients with types IV and IIa hyperlipoproteinemias supported the computer predictions. The degree of protein binding in plasma from normal subjects and patients with types IV and IIA hyperlipoproteinemias were 71.2% +/- 11.4%, 75.9% +/- 8.7%, and 69.9% +/- 15.0%, respectively. The quinidine binding in plasma of patients with hyperlipoproteinemias did not differ statistically from that in the normal subjects.

Blood Proteins↗

Dobutamine pharmacokinetics in severe heart failure.

Dobutamine pharmacokinetics was investigated in 7 patients with severe cardiac failure. Dobutamine was administered by a constant intravenous infusion at rates of 2.5, 5.0, 7.5, and 10.0 microgram/kg/min. Steady-state plasma levels increased in proportion to the infusion rate, indicating that there was no saturation of the disposition processes. The average total body clearance was found to be 2.35 +/- 1.01 L/min/m2. After termination of the final infusion, plasma levels of dobutamine were monitored to determine the elimination half-life. The disappearance half-life of dobutamine was calculated to be 2.37 +/- 0.7 min and the distribution volume was 0.202 +/- 0.084 L/kg. The limited data suggest that the volume of distribution of dobutamine was related to the extent of edema.

Adult↗

Rapid high-pressure liquid chromatographic determination of quinidine and dihydroquinidine in plasma samples.

A high-pressure liquid chromatographic assay for quinidine and dihydroquinidine was developed. A cation-exchange column was utilized with an eluting solvent pH of about 9. The internal standard was cinchonine. The reproducibility and precision of this method were evaluated by analyzing replicate samples and by comparing results with those obtained from a TLC-fluorometric procedure. In addition, several drugs were evaluated to ascertain whether they interfered with the analysis of quinidine and dihydroquinidine.

Chromatography, High Pressure Liquid↗

High-pressure liquid chromatographic determination of plasma dobutamine concentrations.

A sensitive and specific high-pressure liquid chromatographic method was developed for measuring dobutamine in human plasma samples. Nylidrin is employed as an internal standard. Following extraction and separation on a C18 reversed-phase column, the drug is detected by a fluorescence detector with an excitation wavelength of 195 nm and a 330-nm emission cutoff filter. The retention times of dobutamine and nylidrin are 5.2 and 19.2 min, respectively. The minimum level of sensitivity is 10 ng/ml. Reproducibility was +/- 5% over a 25--300-ng/ml range. Several drugs were screened for possible interference, but none interfered with the dobutamine analysis.

Catecholamines↗

Safety and rationale for continuation of propranolol therapy during coronary bypass operation.

Thirty consecutive patients undergoing coronary bypass were studied. Oral propranolol therapy was maintained up to 4 to 10 hours before operation. Nineteen of the patients had a history of myocardial infarction (MI), 14 had hypoakinetic areas, and 8 had decreased ejection fraction indicating advanced coronary artery disease. Twenty-four-hour urinary epinephrine and norepinephrine obtained the day before operation were markedly increased at 136 +/- 12 microgram per 24 hours (normal, 39 +/- 4 microgram, rho less than 0.01). There were 4 perioperative MIs (13%) and no deaths. Plasma propranolol 1 hour before operation was 43.3 +/- 8 ng per milliliter, indicating good beta blockade. Propranolol was started within 24 hours postoperatively. There were no preoperative, intraoperative, or postoperative complications related to propranolol therapy. We conclude that because of markedly increased adrenergic tone the day before operation and transient hypersensitivity to adrenergic stimulation after withdrawal of propranolol, this agent should be continued through coronary bypass operation.

Adult↗