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Updated: Oct 8, 2025

Three-Dimensional Phase Resolved Functional Lung Magnetic Resonance Imaging
Published on: June 21, 2024
Deposition of Inhaled Levofloxacin in Cystic Fibrosis Lungs Assessed by Functional Respiratory Imaging
Carsten Schwarz1, Claudio Procaccianti2, Benjamin Mignot3
1CF Center, 14467 Potsdam, Germany.
Insights
Inhaled levofloxacin shows significant lung deposition in cystic fibrosis (CF) patients, but deposition is influenced by breathing patterns. Functional Respiratory Imaging (FRI) predicts deposition and reveals airway differences in mild versus moderate CF.
Area of Science:
- Respiratory Medicine
- Pharmacology
- Medical Imaging
Background:
- Pseudomonas aeruginosa (PA) pulmonary infections are a major cause of morbidity in cystic fibrosis (CF) patients.
- Levofloxacin is approved for PA infections in Europe, but inhaled lung deposition data is lacking.
- Understanding drug deposition is crucial for optimizing inhaled therapies in CF.
Purpose of the Study:
- To predict inhaled levofloxacin lung deposition in CF patients using Functional Respiratory Imaging (FRI).
- To investigate the influence of breathing patterns and CF severity on levofloxacin deposition.
- To analyze structural airway differences in mild versus moderate CF.
Main Methods:
- Developed 3D airway models from CT scans of 20 CF patients.
- Characterized levofloxacin aerosols according to pharmacopeia standards.
- Performed computational fluid dynamics (CFD) simulations using patient-specific breathing patterns.
Main Results:
- Levofloxacin deposition was reduced by low inspiratory times and high flow rates.
- Intrathoracic deposition was 37.0% (moderate CF) and 39.5% (mild CF).
- A correlation was found between the central-to-peripheral deposition ratio and FEV1; structural airway differences were noted.
Conclusions:
- FRI effectively predicts significant intrathoracic deposition of inhaled levofloxacin in CF.
- Deposition is influenced by breathing mechanics and CF severity (FEV1).
- FRI can identify structural airway changes related to CF severity.
Abstract:
Pulmonary infections caused by Pseudomonas aeruginosa (PA) represent the leading cause of pulmonary morbidity in adults with cystic fibrosis (CF). In addition to tobramycin, colistin, and aztreonam, levofloxacin has been approved in Europe to treat PA infections. Nevertheless, no lung deposition data on inhaled levofloxacin are yet available. We conducted a Functional Respiratory Imaging (FRI) study to predict the lung deposition of levofloxacin in the lungs of patients with CF. Three-dimensional airway models were digitally reconstructed from twenty high-resolution computed tomography scans obtained from historical patients' records. Levofloxacin aerosols generated with the corresponding approved nebuliser were characterised according to pharmacopeia. The obtained data were used to inform a computational fluid dynamics simulation of levofloxacin lung deposition using breathing patterns averaged from actual CF patients' spirometry data. Levofloxacin deposition in the lung periphery was significantly reduced by breathing patterns with low inspiratory times and high inspiratory flow rates. The intrathoracic levofloxacin deposition percentages for moderate and mild CF lungs were, respectively, 37.0% ± 13.6 and 39.5% ± 12.9 of the nominal dose. A significant albeit modest correlation was found between the central-to-peripheral deposition (C/P) ratio of levofloxacin and FEV1. FRI analysis also detected structural differences between mild and moderate CF airways. FRI revealed a significant intrathoracic deposition of levofloxacin aerosols, which distributed preferentially to the lower lung lobes, with an influence of the deterioration of FEV1 on the C/P ratio. The three-dimensional rendering of CF airways also detected structural differences between the airways of patients with mild and moderate CF.
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