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Updated: May 15, 2026

Local Anesthetic Thoracoscopy for Undiagnosed Pleural Effusion
Published on: November 10, 2023
New therapy of pleural empyema by deoxyribonuclease
Grzegorz Kacprzak1, Andrzej Majewski, Jerzy Kolodziej
1Wroclaw Thoracic Surgery Centre, Department of Thoracic Surgery of Lower Silesian Centre, Department of Thoracic Surgery of Medical University Wroclaw, Poland.
Abstract:
Empyema is a severe complication of different diseases and traumas. Management of this complication is difficult and should comprise general and local procedures. The general procedure is mainly based on administering wide-spectrum antibiotics. Local management depends on patient general condition, but in all cases the essential procedure is to insert a drain into the pleural cavity and to evacuate the pus. Sometimes pus is very thick and its evacuation and following re-expansion of the lung is rather impossible. In these patients surgical intervention is needed. The use of intrapleural enzymes to support the drainage was first described in 1949 by Tillett and Sherry using a mixture of streptokinase and streptococcal deoxyribonuclease. Nowadays, purified streptokinase has come into widespread use, but recent studies reported no streptokinase effect on pus viscosity. On the other side, deoxyribonuclease reduces pus viscosity and may be more useful in treatment. We report two cases of intrapleural administration of Pulmozyme (alfa dornase - deoxyribonuclease (HOFFMANN-LA ROCHE AG) in dosage 2×2.5mg with a significant improvement caused by changes in pus viscosity.
Insights
Intrapleural alfa dornase (Pulmozyme) effectively reduced pus viscosity in empyema cases, improving drainage and lung re-expansion. This enzyme therapy offers a promising alternative for managing thick pus in pleural infections.
Area of Science:
- Thoracic Surgery
- Pulmonary Medicine
- Infectious Diseases
Background:
- Empyema is a serious complication requiring both systemic antibiotics and local pleural drainage.
- Thick pus can obstruct drainage and hinder lung re-expansion, often necessitating surgical intervention.
- Intrapleural enzymes have been explored to aid pus evacuation, with varying success.
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