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Published in: Critical Care 4/2012

Open Access 01-08-2012 | Research

Metformin attenuates ventilator-induced lung injury

Authors: George Tsaknis, Ilias I Siempos, Petros Kopterides, Nikolaos A Maniatis, Christina Magkou, Matina Kardara, Stefania Panoutsou, Anastasia Kotanidou, Charis Roussos, Apostolos Armaganidis

Published in: Critical Care | Issue 4/2012

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Abstract

Introduction

Diabetic patients may develop acute lung injury less often than non-diabetics; a fact that could be partially ascribed to the usage of antidiabetic drugs, including metformin. Metformin exhibits pleiotropic properties which make it potentially beneficial against lung injury. We hypothesized that pretreatment with metformin preserves alveolar capillary permeability and, thus, prevents ventilator-induced lung injury.

Methods

Twenty-four rabbits were randomly assigned to pretreatment with metformin (250 mg/Kg body weight/day per os) or no medication for two days. Explanted lungs were perfused at constant flow rate (300 mL/min) and ventilated with injurious (peak airway pressure 23 cmH2O, tidal volume ≈17 mL/Kg) or protective (peak airway pressure 11 cmH2O, tidal volume ≈7 mL/Kg) settings for 1 hour. Alveolar capillary permeability was assessed by ultrafiltration coefficient, total protein concentration in bronchoalveolar lavage fluid (BALF) and angiotensin-converting enzyme (ACE) activity in BALF.

Results

High-pressure ventilation of the ex-vivo lung preparation resulted in increased microvascular permeability, edema formation and microhemorrhage compared to protective ventilation. Compared to no medication, pretreatment with metformin was associated with a 2.9-fold reduction in ultrafiltration coefficient, a 2.5-fold reduction in pulmonary edema formation, lower protein concentration in BALF, lower ACE activity in BALF, and fewer histological lesions upon challenge of the lung preparation with injurious ventilation. In contrast, no differences regarding pulmonary artery pressure and BALF total cell number were noted. Administration of metformin did not impact on outcomes of lungs subjected to protective ventilation.

Conclusions

Pretreatment with metformin preserves alveolar capillary permeability and, thus, decreases the severity of ventilator-induced lung injury in this model.
Appendix
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Metadata
Title
Metformin attenuates ventilator-induced lung injury
Authors
George Tsaknis
Ilias I Siempos
Petros Kopterides
Nikolaos A Maniatis
Christina Magkou
Matina Kardara
Stefania Panoutsou
Anastasia Kotanidou
Charis Roussos
Apostolos Armaganidis
Publication date
01-08-2012
Publisher
BioMed Central
Published in
Critical Care / Issue 4/2012
Electronic ISSN: 1364-8535
DOI
https://doi.org/10.1186/cc11439

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