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Published on: February 29, 2020
Levofloxacin disposition in cerebrospinal fluid in patients with external ventriculostomy
Federico Pea1, Federica Pavan, Ennio Nascimben
1Institute of Clinical Pharmacology & Toxicology, Department of Experimental and Clinical Pathology and Medicine, Medical School, University of Udine, Udine, Italy. federico.pea@med.uniud.it
Abstract:
In vitro levofloxacin exhibits both potent or intermediate activity against most of the pathogens frequently responsible for acute bacterial meningitis and synergistic activity with some beta-lactams. Since levofloxacin was shown to penetrate the cerebrospinal fluid (CSF) during meningeal inflammation both in animals and in humans, the disposition of levofloxacin in CSF was studied in 10 inpatients with external ventriculostomy because of communicating hydrocephalus related to subarachnoid occlusion due to cerebral accidents who were treated with 500 mg of levofloxacin intravenously twice a day because of extracerebral infections. Plasma and CSF concentration-time profiles and pharmacokinetics were assessed at steady state. Plasma and CSF levofloxacin concentrations were analyzed by high-pressure liquid chromatography. The peak concentration of levofloxacin at steady state (C(max ss))was 10.45 mg/liter in plasma and 4.06 mg/liter in CSF, respectively, with the ratio of the C(max ss) in CSF to the C(max ss) in plasma being 0.47. The areas under the concentration-time curves during the 12-h dosing interval (AUC(0-tau)s) were 47.69 mg. h/liter for plasma and 33.42 mg. h/liter for CSF, with the ratio of the AUC(0-tau) for CSF to the AUC(0-tau) for plasma being 0.71. The terminal-phase half-life of levofloxacin in CSF was longer than that in plasma (7.02 +/- 1.57 and 5.51 +/- 1.36 h, respectively; P = 0.034). The ratio of the levofloxacin concentration in CSF to the concentration in plasma progressively increased with time, from 0.30 immediately after dosing to 0.99 at the end of the dosing interval. In the ventricular CSF of patients with uninflamed meninges, levofloxacin was shown to provide optimal exposure, which approximately corresponded to the level of exposure of the unbound drug in plasma. The findings provide support for trials of levofloxacin with twice-daily dosing in combination with a reference beta-lactam for the treatment of bacterial meningitis in adults. This cotreatment could be useful both for overcoming Streptococcus pneumoniae resistance and for enabling optimal exposure of the CSF to at least one antibacterial agent for the overall treatment period.
Insights
Levofloxacin effectively penetrates cerebrospinal fluid (CSF), achieving concentrations in patients with external ventriculostomy that support its use for bacterial meningitis treatment. This study highlights levofloxacin
Area of Science:
- Pharmacology and Infectious Diseases
- Neuroscience and Neurology
Background:
- Levofloxacin demonstrates potent in vitro activity against common bacterial meningitis pathogens and synergistic effects with beta-lactams.
- Previous studies confirmed levofloxacin's penetration into cerebrospinal fluid (CSF) during meningeal inflammation in both animal and human subjects.
Purpose of the Study:
- To investigate the pharmacokinetic profile and disposition of levofloxacin in the CSF of patients with external ventriculostomy.
- To assess the efficacy of levofloxacin in achieving therapeutic concentrations in the CSF for potential bacterial meningitis treatment.
Main Methods:
- Pharmacokinetic analysis of levofloxacin in plasma and CSF was performed in 10 inpatients receiving intravenous levofloxacin (500 mg twice daily) for extracerebral infections.
- Concentration-time profiles and pharmacokinetic parameters were determined at steady state using high-performance liquid chromatography.
- CSF and plasma samples were collected from patients with external ventriculostomy due to hydrocephalus secondary to subarachnoid hemorrhage.
Main Results:
- Steady-state peak CSF levofloxacin concentrations (Cmax ss) reached 4.06 mg/L, representing 47% of plasma concentrations.
- The area under the concentration-time curve (AUC) in CSF was 71% of that in plasma, indicating significant drug accumulation.
- The terminal-phase half-life of levofloxacin was longer in CSF (7.02 h) than in plasma (5.51 h), with CSF-to-plasma ratios increasing over the dosing interval.
Conclusions:
- Levofloxacin achieves optimal exposure in the CSF of patients with uninflamed meninges, comparable to unbound drug levels in plasma.
- The findings support further clinical trials investigating twice-daily levofloxacin in combination with beta-lactams for adult bacterial meningitis.
- This combination therapy may be crucial for overcoming Streptococcus pneumoniae resistance and ensuring adequate CSF drug exposure throughout treatment.
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