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Biomedical subjects

D W Shoeman

Publications and source records attributed to D W Shoeman.

At least 37 records · Page 2Linked to original sources

The interaction between halofenate and propranolol.

The effect of halofenate on beta adrenergic blockade by propranolol was studied in 4 subjects during chronic drug administration in a randomized, double-blind study. The plasma propranolol concentration was significantly lower during treatment with halofenate than with placebo. The reduction in propranolol levels correlated with a decrease in beta adrenergic blockade. The mechanism for the decrease in plasma concentration has not been determined.

Adult↗

Diphenylhydantoin: correlation between protein binding and albumin concentration.

The unbound fraction of diphenylhydantoin is inversely correlated with the patient's serum albumin concentration and can be accurately estimated graphically without binding analyses. The data for this relationship was obtained from a study in which we observed that the unbound fraction of diphenylhydantoin was two times higher in patients with the nephrotic syndrome. However, in these patients it was not necessary to diminish the dosage since the absolute concentration of unbond drug was unchanged due to a compensatory increase in the apparent volume of distribution and plasma clearance.

Half-Life↗

Pharmacokinetics of drugs in patients with the nephrotic syndrome.

Since the binding of drugs to plasma proteins can significantly after the intensity of pharmacological and toxicological effects of drugs, we studied the pharmacokinetics of three drugs in patients with hypoalbuminemia secondary to the nephrotic syndrome, but with relatively normal renal function. No significant differences were seen in the pharmacokinetic parameters observed for antipyrine, a drug which is less than 10% bound to plasms proteins. The percentage of unbound diphenylhydantoin, a highly plasms protein-bound drug, was found in patients with the nephrotic syndrome to be twice that of healthy individuals (19,2 vs. 10.1%, P smaller than 0.001). However, there was also a lower steady-state plasma concentration of diphenylhydantoin (2.9 plus or minus 0.6 vs. 6.8 plus or minus 0.6 mug/ml, P smaller than 0.001) secondary to an increase in the plasms clearance (0.048 plus or minus 0.019 vs. 0.022 plus or minus 0.006 liter/kg.h, P smaller than 0.001) in the nephrotic patients. The net effect is no difference in the absolute concentration of unbound diphenylhydantoin in healthy individuals (0.69 plus or minus 0.05 mug/ml) and patients with the nephrotic syndrome (0.59 plus or minus 0.06 mug/ml). Qualitatively, similar differences were observed with clofibrate. The dose of these drugs need not be routinely reduced in patients with the nephrotic syndrome as long as they have reasonably normal renal function (creatinine clearance greater than 50 ml/min). With all highly bound acidic drugs, knowledge of the concentration of unbound drug is essential to the proper interpretation of total blood levels and subsequent treatment of the patient.

Adult↗

Separation and quantitative analysis of furosemide and 4-chloro-5-sulfamoylanthranilic adid (CSA) by high pressure liquid chromatography.

After extraction by ether from acidified plasma or urine and concentration into basic phosphate buffer, furosemide and 4-chloro-5-sulfamoylanthranilic acid (CSA) were separated on a high pressure liquid ion-exchange system and measured fluorometrically. Sensitivity is 0.2 mug/ml of ether compound in plasma and 0.1 mug/ml in urine with an 8% coefficient of variation. Interference by porphyrins in urine was eliminated by subtracting a second fluorometric measurement at a different wave-length from that used for furosemide. No quenching at this wave-length is seen with concentrations of furosemide up to 50 mug/ml. Standard curves of furosemide and CSA are linear from 0.2 mug/ml to 50 mug/ml.

Chromatography↗

Diphenylhydantoin potency and plasma protein binding.

Rats were given diphenylhydantoin (DPH) orally, and its potency in protecting against maximal electroshock seizures was determined. The effect of an intravenous dose of 100 mg of phenylbutazone per kg 1 hour before testing on the potency and on the total and unbound plasma concentration of DPH was then measured. Phenylbutazone treatment increased the potency of DPH in terms of dose and total drug concentration but did not affect the potency of unbound DPH. The anticonvulsant action of DPH depends upon the concentration of unbound drug in plasma and not upon total plasma concentration nor upon dose.

Administration, Oral↗