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Intrapleural Fibrinolytics Use in Children with Pleural Empyema: Safe and Effective
Carmen C M de Jong1,2, Ilia E Heijting3, Peter J F M Merkus3
1Department of Pediatric Pulmonology, Amalia Children's Hospital, Radboud University Medical Center, Nijmegen, The Netherlands, carmen.dejong@insel.ch.
Insights
Intrapleural fibrinolytic treatment is safe and effective for pediatric pleural empyema, potentially avoiding the need for video-assisted thoracoscopy (VATS) in children with poor drainage.
Area of Science:
- Pediatric Pulmonology
- Thoracic Surgery
- Infectious Diseases
Background:
- Pleural empyema is a significant pediatric respiratory infection.
- Video-assisted thoracoscopy (VATS) is an invasive treatment option.
- Standard therapy often involves chest drainage with or without intrapleural fibrinolytics.
Purpose of the Study:
- To evaluate the efficacy of intrapleural fibrinolytic treatment in avoiding VATS for pediatric pleural empyema.
- To assess the safety and outcomes of conservative management strategies.
Main Methods:
- Retrospective analysis of children referred for pleural effusion drainage (01/2022-04/2023).
- Inclusion criteria: pneumonia with respiratory distress and suspected pleural effusion or effusion size >20mm.
- Analysis of symptoms, diagnostic tests, and treatment outcomes.
Main Results:
- 33 children (0-16 years) treated for pleural effusion; 72% presented with fever, cough, and dyspnea.
- 11 (33%) had invasive group A Streptococcus infection.
- 84% received chest drains; 52% of those received intrapleural fibrinolytics, with no observed side effects. VATS was avoided in most cases.
Conclusions:
- Intrapleural fibrinolytic therapy is a safe and effective minimal invasive treatment for pediatric pleural empyema.
- This approach can successfully avoid the need for VATS in children with inadequate drainage.
- Conservative management with chest drainage and fibrinolytics is a valuable strategy.
Introduction:
We assessed the number of children with pleural empyema in which video-assisted thoracoscopy (VATS) could be avoided in a center where standard therapy is drainage using a chest drain with/without intrapleural fibrinolytics.
Methods:
We included all children referred for chest drainage of a pleural effusion to Radboud University Medical Center between January 2022 and April 2023. Children were referred in case of pneumonia with respiratory distress and suspected pleural effusion on the chest X-ray or an effusion size of >20 mm in the chest ultrasound, indicating the need for chest drainage or VATS. We analyzed symptoms, test results, and treatment.
Results:
Thirty-two children aged 0-16 years were referred for treatment of pleural effusion. Most children presented with fever, cough, and dyspnea (72%). Four children presented with abdominal pain (13%), which led to 2 appendectomies prior to referral. In 11 (33%) children, an invasive group A streptococcus was cultured from the pleural fluid. All patients were treated with antibiotics. One patient received VATS primarily. 27 (84%) patients received a chest drain, and 4 patients continued conservative treatment. 14 (52%) of the 27 children with a chest drain were treated with intrapleural fibrinolytics (alteplase or urokinase) because of persistent pleural effusion on ultrasound despite chest drainage. No side effects were observed. Two patients received VATS secondary to chest drainage without receiving prior intrapleural fibrinolytics.
Conclusion:
Intrapleural fibrinolytic treatment appeared safe and could avoid VATS in children with poor drainage, and is therefore a useful minimal invasive treatment in children with pleural empyema.
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