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Biomedical subjects

D G Perrier

Publications and source records attributed to D G Perrier.

22 records · Page 2Linked to original sources

Relationship between plasma concentration and dose of digoxin in patients with and without renal impairment.

The purpose of this study was to determine if there is a linear relationship between oral doses of digoxin and various measurements of steady-state digoxin plasma concentration and urinary excretion in patients with wide range of renal function. Ten patients (mean age 58 years) with creatinine clearances greater than 50 ml/min/1.73 m2 BSA (mean creatinine clearance 80 ml/min/1.73 m2 BSA) and nine patients mean age 61 years) with creatinine clearances less than 50 ml/min/1.73 m2 BSA (mean creatinine clearance 20 ml/min/1.73 m2 BSA) were given digoxin tablets orally at two or three different dose levels (dose range 0.0313--0.5 mg/day). After a dosing period equal to at least five half-lives, three to four consecutive daily digoxin plasma concentrations were determined. Plasma concentrations and urinary digoxin excretion were measured during one 24-hour dosing interval at each dose level. Digoxin plasma and urine concentrations were determined in triplicate using radioimmunoassay. Individual patient plots provided evidence of linearity for: digoxin 24-hour steady-state plasma concentration vs dose; digoxin 24-hour cumulative urinary excretion versus dose; and area under the digoxin plasma concentration-time curve during a 24-hour dosing interval vs dose. Absolute values for these various parameters indicated substantial interpatient variation probably due to patient differences in both digoxin absorption and digoxin total body clearance. These results indicate that there is a linear relationship between digoxin plasma concentration and dose in patients with normal and decreased renal function. This linearity is support for dose-independent pharmacokinetics of digoxin in man. We conclude from these data that a change in digoxin dose should result in a proportional change in digoxin plasma concentration over the dose range examined.

Administration, Oral↗

Bioavailability and single-dose pharmacokinetics of intramuscular phenytoin.

Comparison of phenytoin plasma concentrations in an intravenous and intramuscular crossover study in 12 healthy ambulant, male subjects indicates that phenytoin administered intramuscularly is absorbed over a period of approximately five days. A model simulating precipitation and redissolution of the drug at the injection site has been shown to satisfactorily fit observed plasma concentration data following intramuscular administration. It is proposed that this model will be useful in the selection of an appropriate dosing regimen in situations in which intramuscular administration of phenytoin is indicated.

Adult↗

Methotrexate: bioavailability and pharmacokinetics.

Six adult patients with squamous cell carcinoma of the head and neck were treated with single low doses of methotrexate (MTX) (30 mg/m2) iv, im, and orally in the form of commercial tablets. A randomized crossover design was employed. Plasma concentrations were measured by a modified EMIT assay over a period of 24 hours following each dose. The mean (+/- SD) parameters following iv MTX were as follows: total-body clearance, 124 (36) ml/minute; Vss, 0.56 (0.18) L/kg; V lambda, 0.69 (0.24) L/kg; and beta-half-life, 3.20 hours. The absolute systemic bioavailability of the oral tablets was 36% (+/- 10%). After im administration, the systemic bioavailability was 93% (+/- 14%). Dose-dependent gastrointestinal absorption is suggested as the mechanism for the low availability of the oral tablets. Administration of MTX by the oral route will require further study to determine the optimal method of dosing.

Absorption↗

Practice functions necessary for the delivery of pharmaceutical care.

Pharmaceutical care is a concept outlining the responsibilities of individual pharmacists to individual patients. Although widely accepted on a philosophical basis, there is a lack of comprehensive information about the functions and responsibilities pharmacists undertake when providing pharmaceutical care. Pharmacy educators and practitioners at the faculty of pharmacy, University of Toronto, developed and informally tested a process that details the practice functions required of pharmacists when providing pharmaceutical care as originally defined.

Humans↗