Fluid administration and monitoring in ARDS: which management?

Philippe Vignon, Bruno Evrard, Pierre Asfar, Mattia Busana, Carolyn S Calfee, Silvia Coppola, Julien Demiselle, Guillaume Geri, Mathieu Jozwiak, Greg S Martin, Luciano Gattinoni, Davide Chiumello

Journal: Intensive care medicine 2021;46(12):2252-2264

PMID: 33169217

Abstract

Modalities of fluid management in patients sustaining the acute respiratory distress syndrome (ARDS) are challenging and controversial. Optimal fluid management should provide adequate oxygen delivery to the body, while avoiding inadvertent increase in lung edema which further impairs gas exchange. In ARDS patients, positive fluid balance has been associated with prolonged mechanical ventilation, longer ICU and hospital stay, and higher mortality. Accordingly, a restrictive strategy has been compared to a more liberal approach in randomized controlled trials conducted in various clinical settings. Restrictive strategies included fluid restriction guided by the monitoring of extravascular lung water, pulmonary capillary wedge or central venous pressure, and furosemide targeted to diuresis and/or albumin replacement in hypoproteinemic patients. Overall, restrictive strategies improved oxygenation significantly and reduced duration of mechanical ventilation, but had no significant effect on mortality. Fluid management may require different approaches depending on the time course of ARDS (i.e., early vs. late period). The effects of fluid strategy management according to ARDS phenotypes remain to be evaluated. Since ARDS is frequently associated with sepsis-induced acute circulatory failure, the prediction of fluid responsiveness is crucial in these patients to avoid hemodynamically inefficient-hence respiratory detrimental-fluid administration. Specific hemodynamic indices of fluid responsiveness or mini-fluid challenges should be preferably used. Since the positive airway pressure contributes to positive fluid balance in ventilated ARDS patients, it should be kept as low as possible. As soon as the hemodynamic status is stabilized, correction of cumulated fluid retention may rely on diuretics administration or renal replacement therapy.

Address: Medical-Surgical ICU, Dupuytren Teaching Hospital, 87000, Limoges, France. [email protected].; Inserm CIC-1435, Dupuytren Teaching Hospital, 87000, Limoges, France. [email protected].; Faculty of Medicine, University of Limoges, 87000, Limoges, France. [email protected].; Réanimation Polyvalente, CHU Dupuytren, 2 Avenue Martin Luther King, 87042, Limoges, France. [email protected].; Medical-Surgical ICU, Dupuytren Teaching Hospital, 87000, Limoges, France.; Inserm CIC-1435, Dupuytren Teaching Hospital, 87000, Limoges, France.; Faculty of Medicine, University of Limoges, 87000, Limoges, France.; Service de Médecine Intensive Réanimation, Médecine Hyperbare, CHU Angers, 4 rue Larrey 49933, Angers Cedex 9, France.; Department of Anesthesiology and Intensive Care Medicine, University of Göttingen Medical Center, Göttingen, Germany.; Departments of Medicine and Anesthesia, Allergy and Sleep Medicine, Department of Medicine, University of California San Francisco, San Francisco, CA, USA.; SC Anestesia e Rianimazione, Ospedale San Paolo, Polo Universitario, ASST Santi Paolo e Carlo, Milan, Italy.; Dipartimento di Scienze Della Salute, Università Degli Studi Di Milano, Milan, Italy.; Centro Ricerca Coordinata di Insufficienza Respiratoria, Milan, Italy.; Medical-Surgical Intensive Care Unit, Ambroise Paré University Hospital, APHP, 9 avenue Charles de Gaulle, 92100, Boulogne-Billancourt, France.; Paris-Saclay University, Saint-Aubin, France.; Inserm UMR-1018, CESP, Villejuif, France.; Medical Intensive Care Unit, University Hospital, APHP, Centre, Cochin Hospital, 27 rue du faubourg Saint Jacques, 75014, Paris, France.; Paris University, Paris, France.; Division of Pulmonary, Allergy, Critical Care and Sleep Medicine, Department of Medicine, Emory University School of Medicine and Grady Memorial Hospital, Atlanta, GA, USA.
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