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L H Booij

Publications and source records attributed to L H Booij.

9 recordsLinked to original sources

4-Aminopyridine potentiates neostigmine and pyridostigmine in man.

To elucidate the interaction of 4-aminopyridine with neostigmine and pyridostigmine, the authors studied 57 anesthetized surgical patients using a technique of constant infusion of pancuronium to quantitate antagonist activity. 4-Aminopyridine, 0.15 or 0.35 mg/kg, produced no antagonism, while 0.5 mg/kg produced a mean 24 +/- 6 per cent (peak) antagonism. The dose that produced 50 per cent antagonism (ED50) of neostigmine alone was 22 micrograms/kg; with 0.35 mg/kg 4-aminopyridine, it was 7 micrograms/kg. The ED50 of pyridostigmine alone was 110 micrograms/kg; with 0.35 mg/kg 4-aminopyridine, it was 27 micrograms/kg. 4-Aminopyridine prolonged the onset times of both neostigmine and pyridostigmine, but prolonged the duration of action of neostigmine only. At a given level of antagonism of pancuronium, adding 4-aminopyridine 0.35 mg/kg, to neostigmine and to pyridostigmine decreased the amounts of atropine needed to prevent a change in heart rate by 68 and 70 per cent, respectively. The authors conclude that 4-aminopyridine potentiates antagonism of a pancuronium-induced neuromuscular blockade by neostigmine or pyridostigmine. Also, less atropine is needed to prevent cardiac muscarinic stimulation when 4-aminopyridine is used with either neostigmine or pyridostigmine.

Adult

Effect of different anesthetics on the pharmacokinetics and pharmacodynamics of pancuronium in the cat.

To investigate the effect of different anesthetics on the pharmacokinetics and pharmacodynamics of pancuronium, 120 microgram/kg i.v., cats were anesthetized with either pentobarbital (N = 4), ketamine (N = 4), enflurane (N = 5), or halothane (N = 5). A longer onset time and duration of neuromuscular blockade occurred during enflurane and halothane anesthesia. The apparent elimination half-life was longer and the total voluem of distribution at steady state larger during halothane anesthesia. The plasma concentration of pancuronium required for neuromuscular blockades was less during enflurane than during the other three anesthetics. We conclude that inhalation anesthetics may prolong a neuromuscular blockade by altering both the pharmacokinetics and pharmacodynamics of pancuronium.

Adjuvants, Anesthesia

The comparative influence of gamma-hydroxy butyric acid, althesin and etomidate on the neuromuscular blocking potency of pancuronium in man.

The potentiating effect of gamma-hydroxy butyric acid (GHB), Althesin and etomidate on pancuronium was studied in man. GHB proved to influence pancuronium the least whereas Althesin and etomidate potentiate considerably. It is concluded that the amount of non-depolarizing relaxant needed depends on the type of anesthesia given. For neuromuscular blocking studies, GHB and/or thiopentone anesthesia seem to be preferable.

Alfaxalone Alfadolone Mixture

Potentiation of neostigmine and pyridostigmine by 4-aminopyridine in the rat.

The interaction between 4-aminopyridine and neostigmine or pyridostigmine was studied in vivo in the rat sciatic nerve-anterior tibialis preparation using the constant infusion of pancuronium technique. The ED50 (dose of drug which produced a 50% antagonism) of neostigmine, pyridostigmine and 4-aminopyridine were 18, 49 and 440 microgram kg(-1) respectively. The addition of 100 microgram kg(-1) of 4-aminopyridine, which produced no antagonism by itself, decreased the neostigmine ED50 to 7.4 microgram kg(-1). The addition of 200 microgram kg(-1) of 4-aminopyridine, which produced a 30% antagonism by itself, decreased the ED50 of pyridostigmine to 11 microgram kg(-1). We conclude that both neostigmine and pyridostigmine interact with 4-aminopyrine synergistically.

Aminopyridines

Hypothermia and the pharmacokinetics and pharmacodynamics of pancuronium in the cat.

We tested the effect of hypothermia on the pharmacokinetics and pharmacodynamics of pancuronium in the cat. In 14 cats given pancuronium, 120 microgram/kg i.v., we found that neuromuscular block lasted between 2.5 and 3.0 times longer at 29 degrees C (N = 5) than at 34 degrees C (N = 5) or 39 degrees C (N = 4). The apparent plasma elimination half-life was 46 +/- 7 min (S.E.) at 29 degrees C as compared to 21 +/- 2 and 25 +/- 6 min at 34 and 39 degrees C, respectively. The volume of distribution of the central compartment and total volume of distribution at steady state were less at 29 and 34 dgrees C than at 39 degrees C. Total plasma clearance was 4.3 +/- 0.4 ml/kg/min at 29 degrees C and 10.7 +/- 0.9 and 10.9 +/- 1.5 ml/kg/min at 34 and 39 degrees C, respectively. The reduced plasma clearance resulted at least in part from a markedly reduced biliary and urinary excretion of pancuronium at 29 degrees C as compared to 34 and 39 degrees C. In four other cats, the plasma concentration of pancuronium was correlated with depression of twitch tension under steady-state conditions. The ED50 of pancuronium (plasma concentration required for a 50% depression of twitch tension) was 0.035 and 0.073 microgram/ml at 29 and 38 degrees C, respectively. We conclude that a pancuronium neuromuscular block is prolonged at 29 degrees C because of an increased sensitivity of the neuromuscular junction to pancuronium and delayed biliary and urinary excretion.

Animals

The comparative potency and pharmacokinetics of pancuronium and its metabolites in anesthetized man.

To determine the potency of pancuronium and its metabolites, 3-OH-, 17-OH- and 3,17-OH-pancuronium, cumulative dose-response curves were determined in five anesthetized patients with each drug. Pancuronium (ED50 = 0.041 mg/kg) was 2 times more potent than 3-OH-pancuronium (ED50 = 0.082 mg/kg), 50 times more potent than 17-OH-pancuronium (ED50 = 2.0 mg/kg) and 54 times more potent than 3,17-OH--pancuronium (ED50 = 2.15 mg/kg). In 21 other patients, one equipotent dose of either pancuronium or one of its metabolites was given as an i.v. bolus. Onset time and duration of neuromuscular blockade from 3-OH- and 3,17-OH-pancuronium did not differ significantly from that of pancuronium; 17-OH-pancuronium had a shorter duration of action than did pancuronium. Although pancuronium tended to have a slightly longer elimination half-life, the pharmacokinetics of the four drugs did not differ significantly. The elimination half-lifes were 110, 68, 73 and 71 min for pancuronium and its 3-OH, 17-OH and 3,17-OH derivatives, respectively. We conclude that although pancuronium is more potent than its 3-OH, 17-OH and 3,17-OH metabolites, the pharmacokinetics of these three metabolites do not differ from each other and from that of pancuronium.

Dose-Response Relationship, Drug

Neostigmine and 4-aminopyridine antagonism of lincomycin-pancuronium neuromuscular blockade in man.

Seven anesthetized patients were studied to determine the interaction between pancuronium and lincomycin and the ability of neostigmine and 4-aminopyridine to antagonize the block. Lincomycin 600 mg given IV alone did not decrease twitch tension. An 8 to 10% decrease in twitch tension occurred when lincomycin was given after neostigmine antagonism of pancuronium. Lincomycin augmented a partial pancuronium neuromuscular blockade. The combined lincomycin-pancuronium neuromuscular blockade was effectively antagonized by both neostigmine and 4-aminopyridine although the latter produced a slower rate of antagonism. The authros conclude that lincomycin, 600 mg IV, augments a pancuronium neurovascular blockade. 4-Aminopyridine offers no advantage over neostigmine and, in fact, may offer a disadvantage because of a slower rate of antagonism.

Adolescent

Antagonism of pancuronium and its metabolites by neostigmine in cats.

Antagonism by neostigmine of neuromuscular blockade produced by pancuronium or its metabolites was studied in the cat anterior or tibialis muscle-peroneal nerve preparation using constant infusions of muscle relaxants. The ED50 of neostigmine (dose which caused a 50% antagonism) was 16, 11, 29, and 26 micrograms/kg for pancuronium, 3-hydroxypancuronium, 17-hydroxypancuronium, and 3, 17-hydroxypancuronium, respectively. Times of onset of neostigmine action were shorter when antagonizing 17-hydroxypancuronium neuromuscular blockade. Duration of neostigmine action when antagonizing 17- or 3, 17-hydroxypancuronium blockade was shorter than with pancuronium or 3-hydroxypancuronium. We conclude that more neostigmine is required to antagonize 17- or 3,17-hydroxypancuronium neuromuscular blockade than is required to antagonize pancuronium. Conversely, less neostigmine was required to antagonize 3-hydroxypancuronium blockade.

Animals