PubMed Health⌕ Search

Biomedical subjects

H R Angelo

Publications and source records attributed to H R Angelo.

52 records · Page 3Linked to original sources

Displacement of lidocaine from human plasma proteins by disopyramide.

Displacement from human plasma proteins of lidocaine by disopyramide was investigated in serum from nine patients receiving lidocaine treatment because of severe ventricular arrhythmias. From each patient disopyramide in concentrations of 5.9 and 14.7 mumol/l was added to three different serum concentrations of lidocaine and the displacement was examined. At a serum concentration of disopyramide of 14.7 mumol/l the percentage of unbound lidocaine increased from 30.4 +/- 0.2 to 36.3 +/- 0.2% (mean +/- S.E.M., P less than 0.001) at an average total serum concentration of lidocaine of 22.7 mumol/l. The study implies a stronger binding affinity of disopyramide than lidocaine to alpha-1-acid glycoprotein. We recommend caution when using disopyramide immediately after an infusion of lidocaine. With the dosage regimen used serum concentrations considerably above the suggested therapeutic level were achieved in the majority of patients.

Aged↗

Haemodynamic effects of disopyramide using a new model of intravenous administration.

Intravenous treatment with disopyramide is usually performed by administration of a bolus injection of 150 mg given over 5 min. followed by a continuous infusion of 18-24 mg hour-1. A decrease in cardiac output is associated with this rapid bolus injection. Seven patients with ischaemic heart disease entered an open randomised cross-over trial to elucidate if an extension of the bolus injection time to 20 min. resulted in a smaller decrease in cardiac output. Cardiac index decreased significantly (P less than 0.001) in both situations, with maximum decrease observed at time 5 and 20 min., respectively (equivalent to the ending of the administration of 150 mg disopyramide). The decrease in Cardiac index (mean +/- S.E.M.) was identical in the two situations (2.56 +/- 0.23 to 1.78 +/- 0.21 l/min. X m2 (30%) and 2.66 +/- 0.17 to 1.94 +/- 0.19 l/min. X m2 (27%], respectively. Blood pressure was unchanged, while heart-rate (P less than 0.025) and preejection period index (P less than 0.005) increased significantly and to the same extent in the two situations. Significant correlations between the log free and log total serum concentration of disopyramide and the relative change in preejection period index of r = 0.840 (P less than 0.01) and 0.919 (P less than 0.01), respectively, were observed giving disopyramide over 5 min. A significant anticlockwise hysteresis was observed extending the time of administration to 20 min. As no haemodynamic advantages are achieved by the slower way of administration we would still recommend the bolus injection to be given over 5 min.

Disopyramide↗

Haemodynamic effects and kinetics of concomitant intravenous disopyramide and atenolol in patients with ischaemic heart disease.

The haemodynamic effects of concomitant intravenous administration of disopyramide (Norpace) and atenolol (Tenormin) were studied in a cross-over trial in 7 patients with ischaemic heart disease. Following 150 mg disopyramide i.v. the cardiac index (CI) and stroke volume index (SVI) decreased by 14% and 26%, respectively and the heart rate (HR) and preejection period index (PEPI) increased by 13% and 19%, respectively. A decrease in CI of 14% and HR of 21%, respectively were noted after intravenous administration of 7.5 mg atenolol; PEPI increased by 10% whereas SVI remained unchanged. The cardiac Index (CI) fell by 33% following the administration of both drugs. The effect on CI of the two drugs was additive. The effect of disopyramide and atenolol on HR, SVI and PEPI was not significantly modified by coadministration of the other drug. No change in blood pressure was observed after disopyramide or atenolol. A correlation (rho) of 0.540 and 0.387 was observed between the change in PEPI and the log free and total serum concentrations of disopyramide, respectively. Combined intravenous use of the two drugs in patients with incipient or overt heart failure is not recommended, unless it is due to the arrhythmia to be treated.

Aged↗

Kinetics of disopyramide in decreased hepatic function.

The elimination kinetics of disopyramide was studied in 9 patients with decreased hepatic function (DHF) due to histologically verified cirrhosis of the liver, and in 11 patients with ischaemic heart disease (IHD). Disopyramide 100 and 150 mg was given intravenously as a bolus to the patients with IHD and DHF, respectively, followed by a continuous infusion of disopyramide 0.3 (DHF group) and 0.4 mg X min-1 (IHD group) until steady-state was achieved. A significant (p less than 0.001) positive correlation between the percentage unbound and total serum concentration of disopyramide was demonstrated in both groups. The percentage of unbound disopyramide at a total serum concentration of 5.9 mumol X l-1 was 45.5% and 19.4% in the DHF and IHD groups, respectively. A negative correlation (r = -0,751, p less than 0.05, and r = -0.827, p less than 0.01 in the IHD and DHF patients, respectively) between the free fraction of disopyramide and alpha 1-acid glycoprotein was observed. The serum concentration of alpha 1-acid glycoprotein, the major binding protein of disopyramide, was significantly lower in the patients with DHF. The clearance of unbound disopyramide and its total volume of distribution and half-life were significantly lower in the DHF patients. No difference in total elimination clearance could be demonstrated. The clinical implication of the present findings appear to be that the dosage of disopyramide should be reduced by 25% when it is given intravenously to patients with decreased hepatic function.

Adult↗

Severe acute propoxyphene overdose: plasma concentrations of propoxyphene and norpropoxyphene and the effect of dopamine on circulatory failure.

Twelve patients with cardiovascular failure because of propoxyphene self-poisoning were treated with dopamine. The patients responded favourably to dopamine infusion (2-17 micrograms/kg/min) with a dose-dependent rise in systolic arterial blood pressure and a fall in central venous pressure and copious urinary output. Side effects during infusion were few, and in periods where dopamine infusion exceeded 10 micrograms/kg/min no tachyarrhythmias were seen. Eleven of the patients were treated on a respirator. Two patients were discharged from the ICU with signs of hypoxic brain damage, one of whom recovered completely after 2 weeks. Serum propoxyphene and norpropoxyphene were measured in nine patients. All but one patient had either propoxyphene or norpropoxyphene concentrations above 3 mumol/l.

Adult↗

A HPLC method for the simultaneous determination of disopyramide, lidocaine and their monodealkylated metabolites.

This paper describes a simple high-performance liquid chromatographic method for the determination of disopyramide and lidocaine simultaneously with their dealkylated metabolites. After basic tert-butyl methyl ether extraction and back-extraction with phosphoric acid, the drugs and their metabolites were injected into a Supelcosil CN column and the absorbance of the eluate was measured at 215 nm. The sensitivity was 0.3 mumol/l and the obtained precision, selectivity and stability during storage were adequate for the performed clinical studies in patients therapeutically treated with disopyramide and/or lidocaine. Some results from the clinical studies are briefly presented.

Chromatography, High Pressure Liquid↗

Atenolol inhibits the elimination of disopyramide.

The effect of atenolol on the total elimination of disopyramide and its main dealkylated metabolite was studied in 6 patients and 3 volunteers. During administration of 50 mg atenolol b.i.d. the clearance of disopyramide decreased significantly (p less than 0.02) from 1.90 +/- 0.71 (mean +/- SD) to 1.59 +/- 0.68 ml/kg/min, while its half-life, concentration of the metabolite, and the volume of distribution remained unchanged. The reduction in the clearance of disopyramide by atenolol might contribute to the alleged pharmacodynamic interaction between disopyramide and beta-blocking drugs.

Adult↗

The influence of age and smoking on the elimination of disopyramide.

The influences of smoking and age on the elimination kinetics of disopyramide were studied in 27 subjects. Total elimination clearance of disopyramide was measured after an infusion to steady state. The total elimination clearance was significantly (P less than 0.05) decreased in elderly non-smoking patients compared with young non-smoking subjects (1.54 +/- 0.33 vs 2.12 +/- 0.67 ml kg-1 min-1) (mean +/- s.d.). Smoking more than 20 cigarettes per day significantly (P less than 0.05) increased total elimination clearance in elderly (2.02 +/- 0.35 vs 1.54 +/- 0.33 ml kg-1 min-1), while no significant induction by tobacco was observed in young healthy persons. Serum concentrations of alpha 1-acid glycoprotein, the major binding protein of disopyramide, were significantly higher (P less than 0.001) in the elderly patients. However, the volume of distribution (V) was significantly (P less than 0.001) greater in the elderly patients (2.44 +/- 0.64 vs 1.16 +/- 0.15 1 kg-1). Steady-state serum concentrations of the free drug were significantly (P less than 0.01) lower in the young volunteers (0.75 +/- 0.13 micrograms ml-1) than in the elderly (0.90 +/- 0.10 micrograms ml-1). The half-life of disopyramide was significantly shorter (P less than 0.01) in the young volunteers than in the elderly patients. No difference was observed in the relationship between the serum concentration of disopyramide and its main dealkylated metabolite in the groups studied. The results indicate that it might be advisable to reduce the dosage of disopyramide by approximately 30% in elderly non-smokers compared with young subjects.

Adult↗

Kinetics of disopyramide after intravenous infusion to patients with myocardial infarction and heart failure.

Total body clearance, half-life and volume of distribution of disopyramide (Norpace, Searle G.D.) was measured during a six to eight hour infusion to steady state in twenty four patients with either congestive heart failure or acute myocardial infarction and compared to eleven patients without these diseases. All patients were given a bolus injection of 150 mg disopyramide followed by a continuous infusion of 18-24 mg per hour. Serum concentration of disopyramide and its main dealkylated metabolite were determined by HPLC. The clearance in patients without myocardial infarction or congestive heart failure was 1.71 +/- 0.60 ml/min./kg (mean +/- S.D.), not significantly different from those who had either myocardial infarction, congestive heart failure or both. Half-life was 798 min. in patients without heart failure, not significantly different from the values in the other groups. The ratio between disopyramide and its metabolite varied between 3 to 10. Twenty-six % of the steady state serum concentrations of disopyramide were outside the recommended therapeutic range (2-5 micrograms/ml), but no adverse haemodynamic effects were observed in any of the patients. The suggested dosage regimen of disopyramide seems to result in a satisfactory response.

Aged↗

Progabide: a controlled trial in partial epilepsy.

Progabide (SL 76002) was studied in a randomized double-blind crossover trial using 20 outpatients suffering from partial complex seizures. Progabide was added to the concomitant antiepileptic treatment in a fixed dosage schedule. The design included an open therapy control unit. No significant difference was established between the number of partial seizures during treatment with progabide and placebo. A trend was observed for lower seizure frequency of secondary generalized seizures during treatment with progabide. Only mild and transient side effects were observed. There was no difference between the side effects of progabide and placebo.

Anticonvulsants↗

Gas chromatographic method for the simultaneous determination of hydralazine and its acetylated metabolite in serum using a nitrogen-selective detector.

A relatively simple gas chromatographic method has been developed for the quantitative determination of hydralazine simultaneously with its acetylated metabolite, 3-methyl-s-triazolo[3,4-alpha]phthalazine (MTP). The proteins were removed by means of sulfosalicylic acid and Sure-Sep. On treatment with formic acid, hydralazine and its internal standard were converted into their formylated derivatives. These derivatives, MTP and its internal standard were extracted with toluene and determined by gas chromatography with a nitrogen-selective detector. The lower limits of detection for hydralazine and MTP were 0.13 and 0.27 mumol/l, respectively.

Acetylation↗