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Biomedical subjects

S R Cox

Publications and source records attributed to S R Cox.

At least 19 recordsLinked to original sources

Multi-Polygenic prediction of Frailty and its Trajectories highlights Chronic Pain, Rheumatoid Arthritis, and Educational Attainment pathways.

Frailty is a complex ageing-related trait with a growing evidence base for genetic influence. While a single polygenic score (PGS) for frailty has shown predictive value, few studies have examined the joint effect of multiple genetic risks. This study used a multi-polygenic score (MPS) approach to evaluate the combined and relative contributions of 26 PGSs to frailty, measured via the Frailty Index (FI), in two UK cohorts aged 65 and older: the English Longitudinal Study of Ageing (ELSA) and the Lothian Birth Cohort 1936 (LBC1936). Using elastic net regression with repeated cross-validation, we identified chronic pain and depressive symptoms PGSs as the strongest risk predictors of cross-sectional frailty status, while educational attainment, parental longevity, and rheumatoid arthritis PGSs were protective. Compared to single PGS models, MPS models provided improved prediction of frailty levels, explaining up to 4.7% of variance in frailty status - an improvement over the best single PGS (2.5%). To assess whether PGSs also predicted longitudinal frailty progression, we applied generalized additive mixed models (GAMMs) to model age-related trajectories. In ELSA, five PGSs (chronic pain, depressive symptoms, rheumatoid arthritis, educational attainment, and parental death) significantly interacted with age, influencing the rate of frailty change. In LBC1936, consistent though weaker effects were observed for chronic pain and education PGSs. These findings show that polygenic liability shapes both frailty levels and trajectories in later life. Our results support the use of multi-trait genomic models to improve risk prediction and understanding of frailty's complex aetiology.

Journal Article↗

Adaptation of the RAQoL for use in Australia.

Quality of life is an important patient-reported outcome of rheumatoid arthritis (RA) in addition to structural and functional outcomes. The RAQoL (Rheumatoid Arthritis Quality of Life questionnaire) was developed in the UK and the Netherlands as a disease-specific tool. It was adapted for use in the Australian social context and the reliability and validity was tested. A lay panel assessed the UK version and adapted the wording for use within Australia. Reliability and validity were assessed by a postal survey of the RAQoL and comparator questionnaires to 100 patients with RA. The RAQoL was easily adapted into Australian-English. Test-retest reliability was high with a Spearman rank correlation coefficient of 0.93. RAQoL scores correlated well with patient-perceived disease activity and severity--indicating good validity. The Australian version of the RAQoL is a valid and reliable tool for the assessment of quality of life. It is practical, easy to administer and has good potential for use in clinical settings and trials in Australia.

Adult↗

Isolated pulmonary hypertension in scleroderma.

BACKGROUND: Isolated pulmonary hypertension (PHT) is now the most frequent cause of disease-related death in limited cutaneous scleroderma, the commonest disease variant of this disabling connective tissue disorder. Endothelin-1 receptor antagonists provide symptomatic benefit but to date have not been shown to prolong survival. AIM: To determine the frequency, disease characteristics and survival of symptomatic patients with isolated PHT in our cohort of scleroderma patients. METHODS: Systematic review of the clinical course of all patients registered on the South Australian Scleroderma Register, a population-based register of 374 living and 234 deceased patients with scleroderma. RESULTS: Thirty-four patients were identified with isolated PHT, the majority with limited scleroderma. From our deceased register, we estimate that >11% of patients with this limited variant will develop this complication. Isolated PHT occurs as a late-stage complication approximately 20 years after the first symptoms of scleroderma. Patients with isolated PHT were characterized by the presence of multiple telangiectasia, reduced nailfold capillary density, digital ulceration, gross reduction of diffusing capacity for carbon monoxide and echocardiographic evidence of elevated pulmonary artery pressure. Survival was significantly shortened as compared with those patients without this complication (P=0.002), with a mean survival of 2.5 years from symptomatic onset of PHT. CONCLUSION: Isolated PHT occurs as a late-stage complication in > or =11% of patients with limited cutaneous scleroderma and leads to rapid death from right heart failure. The early use of endothelin-1 receptor antagonists may change the natural history of this fatal complication.

Aged↗

Steady-state pharmacokinetics of delavirdine in HIV-positive patients: effect on erythromycin breath test.

OBJECTIVE: The steady-state kinetics of delavirdine and desisopropyldelavirdine were evaluated in human immunodeficiency virus-positive patients after escalating oral doses and after repeated oral administrations at the same dose level. STUDY DESIGN: Patients (n = 8 males) were given escalating oral doses of delavirdine mesylate, in a sequential fashion, over 14 days for phases 1 (200 mg every 8 hours), 2 (300 mg every 8 hours), and 3 (400 mg every 8 hours). Control patients (n = 4 males) were given 300 mg oral doses of drug every 8 hours for all three phases. Hepatic CYP3A activity was evaluated with the erythromycin breath test (ERMBT). RESULTS: In the escalating-dose group, delavirdine displayed nonlinear kinetics as indicated by the decreasing oral clearance, maximum steady-state plasma concentration/minimum steady-state plasma concentration ratio, and log-linear terminal rate constant, as well as by increasing half-life at higher doses; the ratio of desisopropyl-delavirdine formation clearance to elimination clearance was also reduced. In the control group, the kinetics of delavirdine and desisopropyl-delavirdine were unchanged. Plasma protein binding was linear for delavirdine in the escalating-dose and control groups; on average, the fraction unbound was about 2.3% and 2.0%, respectively. Hepatic CYP3A activity was markedly reduced after short- and long-term exposure to all doses of delavirdine mesylate. Delavirdine could maximally inhibit 70% to 75% of predose ERMBT values, with an IC50 of about 0.9 mumol/L. CONCLUSION: Delavirdine is a potent and reversible inhibitor of hepatic CYP3A; it is also a substrate for this CYP450 isoform. It is likely that delavirdine will exhibit drug-drug interactions when coadministered with other CYP3A substrates.

Administration, Oral↗

Single-dose pharmacokinetics of delavirdine mesylate and didanosine in patients with human immunodeficiency virus infection.

Delavirdine is a nonnucleoside reverse transcriptase inhibitor with in vitro activity against human immunodeficiency virus type 1 (HIV-1) that is currently being evaluated in combination regimens with various nucleoside analogs, including didanosine. Due to the pH-dependent solubility of delavirdine, the buffering agents in didanosine formulations may reduce delavirdine absorption. To evaluate the potential interaction between these agents, 12 HIV-infected patients (mean [+/- standard deviation] CD4+ cell count, 304 +/- 213/mm3) were enrolled in a three-way crossover single-dose study. Didanosine (125 to 200 mg given as buffered tablets) and delavirdine mesylate (400 mg) pharmacokinetics were evaluated when each drug was given alone (treatments A and B, respectively), when the two drugs were given concurrently (treatment C), and when didanosine was given 1 h after delavirdine (treatment D). Delavirdine exposure was reduced by concurrent administration of didanosine. The maximum drug concentration in serum (Cmax) was reduced from 7.22 +/- 4.0 to 3.51 +/- 1.9 microM, and the area under the concentration-time curve from 0 h to infinity (AUC0-->infinity) was reduced from 22.5 +/- 14 to 14 +/- 5.7 microM.h. The extent of N-dealkylation, as indicated by the ratio of the N-dealkylated delavirdine AUC0-->infinity to the delavirdine AUC0-->infinity, was unchanged across study treatments (P = 0.708). Reductions in didanosine exposure were observed during concurrent administration with delavirdine with a Cmax reduction from 4.65 +/- 2.0 to 3.22 +/- 0.59 microM and an AUC0-->infinity reduction from 7.93 +/- 3.9 to 6.54 +/- 2.3 microM.h. Thus, concurrent administration of delavirdine and didanosine may reduce the AUC0-->infinity of both drugs, although the clinical significance of this reduction is unknown. Administration of delavirdine 1 h before didanosine avoided the interaction. Due to the single-dose nature of this study, these findings require further evaluation at steady state.

Acquired Immunodeficiency Syndrome↗

Effect of fluconazole on the steady-state pharmacokinetics of delavirdine in human immunodeficiency virus-positive patients.

Fluconazole, an inhibitor of certain human cytochrome P-450 isozymes, is used for the prevention and treatment of a broad range of fungal infections that predominantly affect immunocompromised individuals. This study evaluated the influence of fluconazole on the steady-state pharmacokinetics of delavirdine, a nonnucleoside inhibitor of human immunodeficiency virus type 1 (HIV-1) reverse transcriptase, in 13 HIV-1-infected patients with CD4 counts ranging from 186 to 480/mm3. Both the control group (n = 5) and the fluconazole group (n = 8) received 300 mg of delavirdine mesylate every 8 h for 30 days; subjects in the fluconazole group took a 400-mg, once-daily dose of fluconazole on study days 16 to 30. Harvested plasma from serial blood samples collected on days 15, 16, and 30 were assayed for concentrations of delavirdine and its N-desalkyl metabolite by a reversed-phase high-pressure liquid chromatography (HPLC) method. Blood samples obtained on days 16 and 30 were also assayed for fluconazole by HPLC. Delavirdine mesylate alone and in combination with fluconazole was well tolerated. There were no significant differences (P > 0.16) in delavirdine pharmacokinetic parameters between treatment groups on day 15 or day 30. After coadministration of fluconazole and delavirdine mesylate for 2 weeks (day 30), no significant differences (P > 0.058) were observed in any delavirdine pharmacokinetic parameters relative to those after receiving delavirdine mesylate alone (day 15) after in the fluconazole group. Fluconazole pharmacokinetic parameters were similar to those previously reported for healthy volunteers and HIV-positive patients. On the basis of these findings, fluconazole and delavirdine mesylate may be taken concurrently without adjustment of the dose of either drug.

Adult↗

Randomized, controlled phase I/II, trial of combination therapy with delavirdine (U-90152S) and conventional nucleosides in human immunodeficiency virus type 1-infected patients.

Delavirdine mesylate (DLV) is a potent nonnucleoside reverse transcriptase inhibitor with activity specific for human immunodeficiency virus type 1. In the present phase I/II study we evaluated the safety, toxicity, pharmacokinetics, and antiretroviral activities of two-drug and three-drug combinations of DLV and conventional doses of nucleoside analogs compared with those of both DLV monotherapy and two-drug nucleoside analog therapy. A total of 85 human immunodeficiency virus type 1 infected patients with CD4 counts of 100 to 300 cells per mm3 were enrolled in two periods: in the first period patients were randomized to receive either zidovudine (ZDV) plus didanosine (group 1) or ZDV plus didanosine plus escalating doses (400 to 1,200 mg/day) of DLV (group 2). In the second period, patients were randomized to receive either 1,200 mg of DLV alone per day (group 3) or ZDV plus 1,200 mg of DLV per day (group 4). DLV demonstrated good oral bioavailability at all five doses tested. The major toxicity was a transient mild rash which appeared in 44% of all DLV recipients. Overall, group 2 patients demonstrated more sustained improvements in CD4 counts, percent CD4 cells, branched DNA levels, p24 antigen levels, and virus titers in plasma than group 1, 3, or 4 patients. The magnitude of the response correlated with the intensity of prior nucleoside analog treatment, the non-syncytium-inducing or syncytium-inducing viral phenotype at baseline, and the presence of a wild-type codon at amino acid position 215 in the baseline reverse transcriptase genotype. Despite a transient rash, DLV therapy was well tolerated. Combination therapy with DLV and nucleoside analogs appears promising, with the three-drug combination appearing to be more potent that either two-drug combinations or monotherapy.

Adult↗

Single- and multiple-dose-response relationships of beta-carotene in cystic fibrosis.

Concentrations of carotenoids are low in patients with cystic fibrosis (CF) and are associated with essential fatty acid deficiency and increased markers of inflammation. We conducted single- and multiple-dose studies of beta-carotene supplementation in patients with CF. Dose-proportional increases in beta-carotene concentrations were found, although clearance was independent of dose. Large doses of beta-carotene were necessary to achieve normal plasma levels.

Adjuvants, Immunologic↗

Safety, tolerance, and pharmacokinetics of atevirdine mesylate (U-87201E) in asymptomatic human immunodeficiency virus-infected patients.

Atevirdine mesylate (U-87201E) is a new nonnucleoside (bisheteroarylpiperazine) inhibitor of human immunodeficiency virus type 1 reverse transcriptase. In a double-blind, escalating single-dose study the safety, tolerance, and pharmacokinetics of atevirdine mesylate were investigated in 24 asymptomatic human immunodeficiency virus-seropositive male patients. Each patient received one single oral dose of atevirdine mesylate and placebo separated by an interval of 1 to 3 weeks. For each dose level (400, 800, 1,200, and 1,600 mg) six patients received drug and placebo on separate occasions. Blood samples were collected before dosing and at intervals afterward for safety evaluation and estimation of atevirdine and metabolite levels. The concentrations of atevirdine and its principal metabolite (U-89255) in serum were determined by high-performance liquid chromatography. The results of the study showed that atevirdine mesylate is well tolerated at all dose levels. No clinically significant effects on vital signs, electrocardiograms, or laboratory tests were observed. Occasional headache and nausea were reported both in the drug group and in the placebo group. The times to peak values were relatively short (0.5 to 1.0 h), suggesting a rapid absorption. The maximum concentrations of drug in serum were 1.4 microM (400 mg), 4.2 microM (800 mg), 7.3 microM (1,200 mg), and 5.8 microM (1,600 mg). The values of the pharmacokinetic parameters for atevirdine were found to have relatively large intersubject variabilities, and consequently, the study had little power to detect dose-dependent changes in the values of the pharmacokinetic parameters. The oral clearance of atevirdine tended to increase by 90% as the atevirdine mesylate doses increased from 400 to 1,600 mg, but this change in oral clearance was not statistically significant. The values of the pharmacokinetic parameters determined in the study were similar to those found in a previous single-dose study in healthy volunteers.

Adult↗

Hypoxia regulates vascular endothelial growth factor gene expression in endothelial cells. Identification of a 5' enhancer.

Vascular endothelial growth factor (VEGF) is a potent mitogen specific for endothelial cells. Its expression is dramatically induced by low oxygen tension in a variety of cell types, and it has been suggested to be a key mediator of hypoxia-induced angiogenesis. Although VEGF action is targeted to endothelial cells, it is generally believed that these cells do not express VEGF. In addition, the mechanisms by which hypoxia regulates VEGF production remain unclear. We report in the present study that pulmonary artery endothelial cells do not express VEGF under basal conditions; however, significant VEGF mRNA levels accumulate when these cells are exposed to hypoxia. Using a DNA fragment containing human VEGF promoter sequence, we identified a 28-bp element that is necessary and sufficient to upregulate transcription in response to hypoxia. This element can act as a hypoxia-specific enhancer when placed upstream or downstream from a heterologous promoter. The enhancer includes, in addition to an octamer homologous to the hypoxia-inducible factor-1 (HIF-1) consensus, a sequence that resides 3' to the consensus. Although this sequence may not be involved in the binding of HIF-1, it is absolutely required for the enhancer activity and may be the binding site for certain constitutive binding proteins. The expression of VEGF by endothelial cells in response to hypoxia may provide an important mechanism by which endothelial cell permeability and proliferation is regulated in an autocrine manner.

Animals↗

The effect of competitive and non-linear plasma protein binding on the stereoselective disposition and metabolic inversion of ibuprofen in healthy subjects.

The stereoselective disposition and metabolic inversion of ibuprofen were studied in 12 healthy subjects under conditions of competitive and non-linear plasma protein binding. Each subject received each of four oral treatments according to a Latin-square design: 300 mg R(-)-ibuprofen, 300 mg S(+)-ibuprofen, 300 mg R(-)(-)+300 mg S(+)-ibuprofen, and 300 mg R(-)(-)+600 mg S(+)-ibuprofen. For a given treatment, the partial clearance of S(+)-ibuprofen was greater than that of R(-)-ibuprofen for all stereoisomeric drug species. Likewise, the unbound partial clearances of S(+)-ibuprofen were greater for most stereoisomeric drug species. There was also less difference among treatment groups when partial clearances were referenced to unbound as opposed to total plasma concentrations of enantiomer. The unbound intrinsic clearance and fractional inversion of R(-)-ibuprofen were unchanged across the four treatments, and chiral inversion was systemic, averaging 69%. In conclusion, stereoselective differences exist for the partial and composite clearances of R(-)- and S(+)-ibuprofen even when corrected for differences in plasma protein binding. However, differences among treatment groups for a particular elimination pathway are largely due to ibuprofen's non-linear binding.

Administration, Oral↗

Use of recombinant soluble CD4 Pseudomonas exotoxin, a novel immunotoxin, for treatment of persons infected with human immunodeficiency virus.

Single and multiple doses of sCD4-PE40, a soluble recombinant fusion toxin selectively toxic to gp120-expressing cells, were evaluated in persons infected with human immunodeficiency virus type 1 (HIV-1). Seventeen of 24 patients who completed a single-dose safety trial were given either 1, 5, 10, or 15 micrograms/kg of sCD4-PE40 by intravenous bolus once a month for 2 months, then weekly for 6 weeks. The weekly maximally tolerated dose was 10 micrograms/kg. The major toxicity was a transient dose-dependent elevation in hepatic aminotransferases peaking 48 h after infusion. Anti-Pseudomonas exotoxin antibody developed in 58% of recipients, and sera from 13 of 17 showed neutralizing activity against sCD4-PE40. No consistent changes in immunologic or virologic markers were observed. Weekly infusions of < or = 10 micrograms/kg of sCD4-PE40 are generally well tolerated, but additional studies correlating optimal dosing and frequency of administration with efficacy will be needed to define the role of this novel agent in the management of HIV-1-infected patients.

ADP Ribose Transferases↗

Stereoselective, competitive, and nonlinear plasma protein binding of ibuprofen enantiomers as determined in vivo in healthy subjects.

The plasma protein binding and competitive inhibition parameters of R(-)- and S(+)-ibuprofen were determined in vivo in 12 healthy subjects. Subjects participated in a 4 x 4 Latin square design in which oral solutions of drug were administered as 300 mg R(-)-ibuprofen, 300 mg S(+)-ibuprofen, 300 mg R(-)- + 300 mg S(+)-ibuprofen, and 300 mg R(-)- + 600 mg S(+)-ibuprofen. Unlabeled ibuprofen enantiomers were quantitated using a stereospecific reversed-phase HPLC assay, and plasma protein binding experiments were performed using radiolabeled 14C-enantiomers and an ultrafiltration method at 37C. At therapeutic drug concentrations, the protein binding of each enantiomer was greater than 99%. Furthermore, the binding of ibuprofen enantiomers was stereoselective and mutually competitive, as well as nonlinear. The bound-free data were fitted to a model in which the non-linearity of plasma protein binding and competition between enantiomers for binding sites could be accommodated. There were substantial differences in the affinity of ibuprofen enantiomers for protein binding sites (RP2 = 0.358 +/- 0.185 vs. SP2 = 0.979 +/- 0.501 micrograms/ml; mean +/- SD) but no differences in their binding capacity (RP1 = 160 +/- 86 vs. SP1 = 161 +/- 63 micrograms/ml). Although statistically significant, the differences in competitive inhibition parameters were more modest (SKI = 0.661 +/- 0.363 vs. RKI = 0.436 +/- 0.210 micrograms/ml). As a result, the intrinsic binding (i.e., P1/P2) of R(-)-ibuprofen was greater than S(+)-ibuprofen, and the unbound fraction was significantly greater for S-enantiomer vs. R-enantiomer after a given dose of R-ibuprofen or racemate.

Adult↗

New high-performance liquid chromatographic method for the determination of alprazolam and its metabolites in serum: instability of 4-hydroxyalprazolam.

A high-performance liquid chromatographic method was developed for the determination of alprazolam (ALP) and its active metabolites, alpha-hydroxyalprazolam (AOH) and 4-hydroxyalprazolam (4OH) in human serum. During assay development, the instability of 4OH was revealed. Factors affecting stability of 4OH were then investigated. In this report, the assay methodology for the determination of ALP and AOH, the instability of 4OH, subsequent interference of 4OH breakdown products with AOH quantification, and factors affecting 4OH stability are described. The clinical significance of our findings are reported.

Alprazolam↗

Pharmacokinetics of the R(-) and S(+) enantiomers of ibuprofen in the serum and synovial fluid of arthritis patients.

Eight patients with arthritis and knee effusions received 13 doses of a single 800-mg ibuprofen tablet every 8 hours. Serum and synovial fluid samples were obtained after the first and last doses and assayed for the R(-) and S(+) enantiomers of ibuprofen by a stereospecific assay. Since only S(+)-ibuprofen inhibits cyclo-oxygenase, a description of the time course of this isomer in synovial fluid is needed for the development of suitable pharmacodynamic models. The isomers were significantly different with respect to peak concentrations and areas under the concentration-time curves (AUC) in synovial fluid levels. No significant accumulation of either isomer was observed in serum or synovial fluid levels between the first and the last doses. The steady-state concentration of both isomers fluctuated less in synovial fluid than in plasma, and the synovial fluid concentrations of the S(+) isomer were about twice that of the R(-) isomer. The mean synovial albumin concentration was about 60% of the serum albumin concentration, and the steady-state isomer AUC values in synovial fluid were significantly correlated with the corresponding serum values after the differences between the two fluids with respect to albumin concentration were corrected. The authors conclude that binding of the isomers to albumin and the serum-synovial fluid albumin ratio controls the steady-state distribution of the ibuprofen isomers into synovial fluid. The ramifications of these findings in the development of satisfactory concentration-response relationships are discussed.

Adult↗

Stereoselective disposition of ibuprofen enantiomers in the isolated perfused rat kidney.

The renal clearance of ibuprofen enantiomer was studied separately in the isolated perfused rat kidney at initial perfusate concentrations of 10 micrograms/ml (n = 4) and 100 micrograms/ml (n = 4). Perfusate and urine samples were measured for R(-) and S(+)-ibuprofen using a stereospecific HPLC assay; urine samples were also analyzed after alkaline hydrolysis. Functional viability of the kidney was assured by determining the fractional excretion of glucose and glomerular filtration rate (GFR) at similar perfusion pressures. The clearance of ibuprofen was equivalent to the apparent formation clearance of conjugated enantiomer since unchanged ibuprofen could not be detected in the urine. At 10 and 100 micrograms/ml, the clearance (+/- SD) of R(-)-ibuprofen was 2.50 +/- 1.28 and 2.19 +/- 1.42 microliters/min, respectively. At 100 micrograms/ml, the clearance of S(+)-ibuprofen was 0.805 +/- 0.290 microliters/min. The protein binding of ibuprofen was found to be concentration dependent and favored the R(-)-enantiomer. The excretion ratio (clearance corrected for free fraction and GFR) of R(-)-ibuprofen was 0.398 +/- 0.209 and 0.295 +/- 0.209 for perfusate concentrations of 10 and 100 micrograms/ml, respectively. The excretion ratio of S(+)-ibuprofen was 0.0886 +/- 0.0335 for perfusate concentrations of 100 micrograms/ml. These results demonstrate that the sum of renal mechanisms involved for the clearance of R(-)- and S(+)-ibuprofen was net reabsorption. Ibuprofen was recovered in the urine solely as conjugated material and no evidence of R(-) to S(+) conversion was observed. In addition, the data suggest that R(-)-ibuprofen is cleared through the kidney faster than its S(+)-enantiomer.

Animals↗

Effect of ranitidine on the disposition of orally and intravenously administered triazolam.

The effect of orally administered ranitidine on the pharmacokinetic properties of orally and intravenously administered triazolam was determined. Twelve healthy males with a mean age of 35 years were enrolled in this four-way, randomized, crossover study. Each subject received a total of four treatments, each separated by one week. The treatments consisted of (1) one orally administered 0.25-mg triazolam tablet after treatment with ranitidine; (2) one orally administered 0.25-mg triazolam tablet, with no ranitidine pretreatment; (3) a 0.25-mg intravenous dose of triazolam after treatment with ranitidine; and (4) a 0.25-mg intravenous dose of triazolam, with no ranitidine pretreatment. Ranitidine pretreatment consisted of five 150-mg oral doses (as the hydrochloride salt) given every 12 hours; the last dose was given two hours before triazolam was administered. Blood samples were taken at intervals up to 12 hours after triazolam treatment. Serum triazolam concentrations were measured by modified high-performance liquid chromatography, and pharmacokinetic values were calculated. Pretreatment with ranitidine had no effect on the disposition of intravenously administered triazolam but significantly increased the area under the serum drug concentration-time curve of oral triazolam. Ranitidine pretreatment had no effect on triazolam's terminal elimination rate constant or on the time to reach maximum serum triazolam concentration. Ranitidine pretreatment increased the systemic availability of triazolam by increasing its absorption.

Administration, Oral↗

Influence of H2 receptor antagonists on the disposition of flurbiprofen enantiomers.

The effect of oral cimetidine or ranitidine on the pharmacokinetics of the R and S enantiomers of the nonsteroidal anti-inflammatory drug flurbiprofen and its major metabolite, 4'-hydroxyflurbiprofen, was evaluated. Nine healthy volunteers participated in a randomized crossover design study with the following treatments: (A) flurbiprofen 200 mg; (B) flurbiprofen 200 mg plus ranitidine 150 mg bid for 7 days before and for 2 days after receiving flurbiprofen and (C) flurbiprofen 200 mg plus cimetidine 300 mg qid for 7 days before and for 2 days after receiving flurbiprofen. Blood and urine samples were collected at various intervals during a 48-hour period. These samples were assayed stereospecifically for flurbiprofen and its metabolite. Small but statistically significant differences in the terminal elimination rate constant (K), maximum peak serum drug concentration (Cmax), time to reach peak concentration (tmax), oral clearance (Cl/F) and area under the curve (AUC) were noted for flurbiprofen enantiomers. No significant treatment*isomer interactions were observed, indicating that neither cimetidine nor ranitidine interacted stereospecifically with flurbiprofen. Cimetidine, but not ranitidine, resulted in small (less than or equal to 15%) but statistically significant changes in flurbiprofen pharmacokinetic parameters. The interaction between H2-antagonists and flurbiprofen is unlikely to be clinically important.

Adult↗