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Effects of in vitro amiodarone exposure on alveolar macrophage inflammatory mediator production
R J Zitnik1, J A Cooper, J A Rankin
1Pulmonary Section, Yale University School of Medicine, New Haven, Connecticut.
Abstract:
Administration of amiodarone, although often lifesaving, is associated with pulmonary side effects. Patients with amiodarone pulmonary toxicity can present with either a chronic disorder that suggests pulmonary fibrosis or a more acute process. Mechanisms of acute pulmonary injury resulting from amiodarone are unclear. Previous studies have demonstrated that the drug is preferentially concentrated in alveolar macrophages. In the present study, the authors examined whether in vitro exposure to amiodarone resulted in alteration of rat alveolar macrophage superoxide, leukotriene B4, or fibronectin release. In addition, the authors assessed whether macrophages were ultrastructurally altered by in vitro amiodarone exposure. Twenty four hour exposure to therapeutic tissue concentrations of amiodarone resulted in enhancement of phorbol myristate acetate-stimulated macrophage superoxide release. In addition, 48 hours exposure to amiodarone caused a dose-dependent inhibition of spontaneous fibronectin release by macrophages. Macrophages exposed to 48 hours of 10 micrograms/ml amiodarone were ultrastructurally abnormal, containing lamellar inclusions and demonstrating a large degree of vacuolization. The authors concluded that alveolar macrophages are very sensitive to therapeutic tissue concentrations of amiodarone. Alteration of macrophage mediator release by amiodarone may be one mechanism for lung damage induced by the drug.
Insights
Amiodarone exposure alters rat alveolar macrophage function, affecting superoxide and fibronectin release. These changes and observed ultrastructural damage suggest a role in amiodarone-induced lung injury.
Area of Science:
- Pulmonary Medicine
- Toxicology
- Cell Biology
Background:
- Amiodarone is a vital medication but can cause pulmonary toxicity.
- The mechanisms behind amiodarone-induced lung injury are not fully understood.
- Amiodarone accumulates in alveolar macrophages, suggesting their involvement.
Purpose of the Study:
- To investigate the effects of amiodarone on rat alveolar macrophage mediator release (superoxide, leukotriene B4, fibronectin).
- To assess ultrastructural changes in macrophages following amiodarone exposure.
- To explore potential mechanisms of amiodarone pulmonary toxicity.
Main Methods:
- In vitro exposure of rat alveolar macrophages to amiodarone at therapeutic concentrations.
- Measurement of superoxide release after phorbol myristate acetate stimulation.
- Quantification of fibronectin release.
- Ultrastructural examination of macrophages using electron microscopy.
Main Results:
- Amiodarone enhanced superoxide release from macrophages after 24 hours.
- Amiodarone inhibited spontaneous fibronectin release in a dose-dependent manner after 48 hours.
- Macrophages exposed to amiodarone showed ultrastructural abnormalities, including lamellar inclusions and vacuolization.
Conclusions:
- Alveolar macrophages are sensitive to therapeutic amiodarone concentrations.
- Amiodarone-induced alterations in macrophage mediator release may contribute to lung damage.
- These findings provide insight into the pathogenesis of amiodarone pulmonary toxicity.