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Biomedical subjects

Douglas N Fish

Publications and source records attributed to Douglas N Fish.

22 records · Page 2Linked to original sources

Synergic activity of cephalosporins plus fluoroquinolones against Pseudomonas aeruginosa with resistance to one or both drugs.

Owing to increasing resistance in Pseudomonas aeruginosa, empirical drug regimens may include agents to which some strains may be resistant. The purpose of this study was to evaluate the in vitro activities of different combinations of cephalosporin plus fluoroquinolone against P. aeruginosa isolates with varying susceptibility to the study drugs. Broth microdilution susceptibility testing was performed with 10 clinical isolates of P. aeruginosa. The bactericidal activity of cefepime or ceftazidime alone and in combination with ciprofloxacin, levofloxacin, gatifloxacin or moxifloxacin was evaluated using time-kill methods. Colony counts were determined at 0, 4, 8 and 24 h, using antimicrobial concentrations of 0.5 x MIC. All procedures were performed in duplicate. Synergy was defined as a >2-log decrease in cfu/mL at 24 h compared with the single most active agent. The MICs for tested strains were: ceftazidime 0.75-32, cefepime 0.125-8, ciprofloxacin 0.0078-8, levofloxacin 0.023-16, gatifloxacin 0.023-16 and moxifloxacin 0.0521-32 mg/L. Four strains were susceptible to all drugs, two strains were cephalosporin susceptible and fluoroquinolone resistant, and two strains were cephalosporin resistant and fluoroquinolone susceptible. Two strains were resistant or intermediately susceptible to all drugs. Various cephalosporin and fluoroquinolone combinations were synergic against P. aeruginosa, including strains resistant to one or both agents in combination. No synergy was observed in two strains susceptible to all drugs. There were no differences noted between different cephalosporin and fluoroquinolone combinations. Concentrations used in this study are clinically achievable with recommended regimens in most cases.

Analysis of Variance↗

Pharmacokinetics of intravenous and oral levofloxacin in critically ill adults in a medical intensive care unit.

STUDY OBJECTIVE: To characterize the pharmacokinetic disposition of intravenous and oral levofloxacin in critically ill adults. DESIGN: Prospective, open-label study. SETTING: University teaching hospital. PATIENTS: Thirty critically ill patients in a medical intensive care unit (ICU). INTERVENTIONS: All patients received levofloxacin as part of their routine medical care. Pharmacokinetic evaluations were performed in 28 patients receiving intravenous levofloxacin. Ten of these patients subsequently were switched to oral levofloxacin and underwent a second pharmacokinetic evaluation during oral therapy. MEASUREMENTS AND MAIN RESULTS: Mean +/- SD levofloxacin half-life, clearance at steady state, and volume of distribution in all 28 patients were 8.0 +/- 1.7 hours, 134 +/- 35 ml/minute, and 1.2 +/- 0.3 L/kg, respectively Maximum and minimum serum concentrations (Cmax and Cmin) and area under the serum concentration-time curve from 0-24 hours (AUC(0-24)) in patients receiving levofloxacin 500 mg intravenously were 7.5 +/- 0.8 mg/L, 1.0 +/- 0.5 mg/L, and 66.1 +/- 15.7 mg x hour/L, respectively Observed Cmax, Cmin, and time at which maximum concentration was achieved after oral doses of levofloxacin 500 mg were 5.5 +/- 1.1 mg/L, 0.8 +/- 0.4 mg/L, and 1.3 +/- 0.4 hours, respectively. These values were significantly different (p < 0.05) from those observed after intravenous dosing in the same patients; other pharmacokinetic parameters were similar. Statistically significant increases (p < 0.05) in Cmax, Cmin, half-life, and AUC(0-24) were found in critically ill patients administered multiple doses of intravenous levofloxacin compared with historical data from healthy volunteers. CONCLUSIONS: The dosage regimen of intravenous levofloxacin 500 mg once/day appears adequate for most pathogens found in critically ill patients with normal renal function. Less susceptible pathogens may require an increased daily dose for more optimal therapy. Orally administered levofloxacin appears to be well absorbed in selected ICU patients and has pharmacokinetics similar to those of intravenously administered levofloxacin.

Administration, Oral↗

Pharmacology, clinical efficacy, and safety of drotrecogin alfa (activated).

The protein C pathway, which plays an important role in maintaining normal hemostasis and is a critical link between the inflammatory and procoagulant host responses to infection, is involved in modulating the coagulation and inflammation associated with severe sepsis. Recombinant human activated protein C (APC), or drotrecogin alfa (activated), shares the intrinsic pharmacologic activity of endogenous APC. In the Recombinant Human Activated Protein C Worldwide Evaluation in Severe Sepsis (PROWESS) trial, drotrecogin alfa (activated) decreased absolute mortality by 6% and relative risk of mortality by 19% compared with placebo. Drotrecogin alfa (activated) is an important advancement in the treatment of adult patients with severe sepsis.

APACHE↗

Pharmacokinetics and safety of valaciclovir in children with Epstein-Barr virus illness.

OBJECTIVE: Valaciclovir has in vitro activity against Epstein-Barr virus (EBV) and, because of improved absorption with higher achievable serum concentrations, may be more effective than aciclovir in the treatment of EBV. No studies to date have evaluated the efficacy, safety or proper dosing of valaciclovir in children for the treatment of EBV infection. The objectives of this study were to determine the pharmacokinetics and safety of valaciclovir tablets and suspension in children with EBV illness. METHODS: 24 children with EBV illness were randomised to receive valaciclovir suspension 10 mg/kg or 20 mg/kg; eight children subsequently were crossed over and also received valaciclovir 500 mg tablets. Doses of either suspension or tablets were administered every 8 hours for four doses, and pharmacokinetic studies were performed to determine aciclovir serum concentrations. Samples for drug assay were obtained at 0, 0.5, 1, 2, 4, 6, 8 and 24 hours. Samples were assayed by high performance liquid chromatography (HPLC) methods and aciclovir pharmacokinetics determined using non-compartmental analysis. RESULTS: Valaciclovir pharmacokinetic parameters (mean +/- SD) in children who received tablets and suspension (normalised to 500 mg dose) were: maximum serum concentration (C(max)) 3.16 +/- 1.30 and 2.42 +/- 0.74 mg/L, time to maximum serum concentration (t(max)) 1.88 +/- 0.99 and 1.31 +/- 0.53 hours, half-life (t 1/2) 1.72 +/- 0.41 and 1.94 +/- 0.60 hours, apparent total systemic clearance (CL/F) 20.01 +/- 6.61 and 15.58 +/- 3.34 ml/min/kg, volume of distribution/bioavailability (Vd/F) 3.04 +/- 1.26 and 2.58 +/- 0.81 L/kg, and area under the concentration-time curve (AUC) 10.13 +/- 3.47 and 8.59 +/- 2.52 mg x h/L, respectively. There were no statistically significant differences in the pharmacokinetics of valaciclovir tablets versus suspension. The relative bioavailability of the valaciclovir tablets compared with the suspension was 115 +/- 32%. Valaciclovir was well tolerated, with gastrointestinal disturbances and headache being the most common adverse effects in a small number of subjects. CONCLUSIONS: Valaciclovir is absorbed and achieves concentrations in children that appear to be effective for the treatment of herpes lesions. The pharmacokinetics of valaciclovir suspension and tablets are similar, and the pharmacokinetics of aciclovir after administration of valaciclovir to children are similar to historical observations of aciclovir pharmacokinetics in adults. Valaciclovir has a good safety profile and was well tolerated after oral administration in this group of children.

Acyclovir↗