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Updated: Oct 10, 2025

Local Anesthetic Thoracoscopy for Undiagnosed Pleural Effusion
Published on: November 10, 2023
Optimizing the management of complicated pleural effusion: From intrapleural agents to surgery
Claudio Sorino1, Michele Mondoni2, Filippo Lococo3
1Division of Pulmonology, Sant'Anna Hospital of Como, University of Insubria, Varese, Italy.
Abstract:
Pleural effusion is a frequent complication of acute pulmonary infection and can affect its morbidity and mortality. The possible evolution of a parapneumonic pleural effusion includes 3 stages: exudative (simple accumulation of pleural fluid), fibropurulent (bacterial invasion of the pleural cavity), and organized stage (scar tissue formation). Such a progression is favored by inadequate treatment or imbalance between microbial virulence and immune defenses. Biochemical features of a fibrinopurulent collection include a low pH (<7.20), low glucose level (<60 mg/dl), and high lactate dehydrogenase (LDH). A parapneumonic effusion in the fibropurulent stage is usually defined "complicated" since antibiotic therapy alone is not enough for its resolution and an invasive procedure (pleural drainage or surgery) is required. Chest ultrasound is one of the most useful imaging tests to assess the presence of a complicated pleural effusion. Simple parapneumonic effusions are usually anechoic, whereas complicated effusions often have a complex appearance (non-anechoic, loculated, or septated). When simple chest tube placement fails and/or patients are not suitable for more invasive techniques (i.e. surgery), intra-pleural instillation of fibrinolytic/enzymatic therapy (IPET) might represent a valuable treatment option to obtain the lysis of fibrin septa. IPET can be used as either initial or subsequent therapy. Further studies are ongoing or are required to help fill some gaps on the optimal management of parapneumonic pleural effusion. These include the duration of antibiotic therapy, the risk/benefit ratio of medical thoracoscopy and surgery, and new intrapleural treatments such as antibiotic-eluting chest tubes and pleural irrigation with antiseptic agents.
Insights
Complicated parapneumonic pleural effusion, characterized by low pH and glucose, often requires invasive procedures beyond antibiotics. Intrapleural fibrinolytic/enzymatic therapy (IPET) offers a valuable treatment option for fibrin septa lysis when chest tubes fail.
Area of Science:
- Pulmonology
- Infectious Diseases
- Critical Care Medicine
Background:
- Pleural effusion is a common complication of acute pulmonary infections, impacting patient morbidity and mortality.
- Parapneumonic effusions progress through exudative, fibropurulent, and organized stages, with inadequate treatment or host-pathogen imbalance accelerating progression.
- Fibropurulent effusions are considered complicated, necessitating invasive procedures due to antibiotic therapy alone being insufficient.
Purpose of the Study:
- To review the characteristics and management of parapneumonic pleural effusions.
- To highlight the role of chest ultrasound in identifying complicated effusions.
- To discuss intrapleural fibrinolytic/enzymatic therapy (IPET) as a treatment option.
Main Methods:
- Review of biochemical markers (pH, glucose, LDH) for effusion characterization.
- Assessment of chest ultrasound findings for distinguishing simple from complicated effusions.
- Evaluation of intrapleural fibrinolytic/enzymatic therapy (IPET) for fibrin septa lysis.
Main Results:
- Complicated effusions exhibit low pH (<7.20), low glucose (<60 mg/dl), and high LDH.
- Chest ultrasound reveals simple effusions as anechoic and complicated ones as non-anechoic, loculated, or septated.
- IPET is a potential treatment for lysis of fibrin septa when chest tube placement is insufficient or not feasible.
Conclusions:
- Parapneumonic pleural effusion management requires timely intervention, often beyond antibiotics for complicated cases.
- Chest ultrasound is crucial for diagnosing complicated effusions.
- IPET presents a valuable therapeutic strategy for managing complex pleural space infections, with ongoing research into optimal treatment protocols.
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