Selected article for: "case report and venous system"

Author: Gacitúa, Ignacio; Frías, Alondra; Sanhueza, María E.; Bustamante, Sergio; Cornejo, Rodrigo; Salas, Andrea; Guajardo, Ximena; Torres, Katherine; Figueroa Canales, Enzo; Tobar, Eduardo; Navarro, Rocío; Romero, Carlos
Title: Extracorporeal CO(2) removal and renal replacement therapy in acute severe respiratory failure in COVID‐19 pneumonia: Case report
  • Cord-id: nz94fxpd
  • Document date: 2021_5_10
  • ID: nz94fxpd
    Snippet: The COVID‐19 pandemic significates an enormous number of patients with pneumonia that get complicated with severe acute respiratory distress syndrome (ARDS), some of them with refractory hypercapnia and hypoxemia that need mechanical ventilation (MV). Those patients who are not candidate to extracorporeal membrane oxygenation (ECMO), the extracorporeal removal of CO(2) (ECCO(2)R) can allow ultra protective MV to limit the transpulmonary pressures and avoid ventilatory induced lung injury (VILI
    Document: The COVID‐19 pandemic significates an enormous number of patients with pneumonia that get complicated with severe acute respiratory distress syndrome (ARDS), some of them with refractory hypercapnia and hypoxemia that need mechanical ventilation (MV). Those patients who are not candidate to extracorporeal membrane oxygenation (ECMO), the extracorporeal removal of CO(2) (ECCO(2)R) can allow ultra protective MV to limit the transpulmonary pressures and avoid ventilatory induced lung injury (VILI). We report a first case of prolonged ECCO(2)R support in 38 year male with severe COVID‐19 pneumonia refractory to conventional support. He was admitted tachypneic and oxygen saturation 71% without supplementary oxygen. The patient's clinical condition worsens with severe respiratory failure, increasing the oxygen requirement and initiating MV in the prone position. After 21 days of protective MV, PaCO(2) rise to 96.8 mmHg, making it necessary to connect to an ECCO(2)R system coupled continuous veno‐venous hemodialysis (CVVHD). However, due to the lack of availability of equipment in the context of the pandemic, a pediatric gas exchange membrane adapted to CVVHD allowed to maintain the removal of CO(2) until completing 27 days, being finally disconnected from the system without complications and with a satisfactory evolution.

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