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Hypercapnia outcome in COVID-19 acute respiratory distress syndrome patients on mechanical ventilator: A retrospective observational cohort

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31. Jan. 2025

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Bernard GR, Artigas A, Brigham KL, et al. The American-European Consensus Conference on ARDS. Definitions, mechanisms, relevant outcomes, and clinical trial coordination. Am J Respir Crit Care Med. 1994;149(3):818–824. BernardGR ArtigasA BrighamKL The American-European Consensus Conference on ARDS. Definitions, mechanisms, relevant outcomes, and clinical trial coordination Am J Respir Crit Care Med 1994 149 3 818 824 Search in Google Scholar

Thakur V, Ratho RK, Kumar P, et al. Multi-Organ Involvement in COVID-19: Beyond Pulmonary Manifestations. J Clin Med. 2021;10(3):446. ThakurV RathoRK KumarP Multi-Organ Involvement in COVID-19: Beyond Pulmonary Manifestations J Clin Med 2021 10 3 446 Search in Google Scholar

Parsons PE, Eisner MD, Thompson BT, et al. Lower tidal volume ventilation and plasma cytokine markers of inflammation in patients with acute lung injury. Crit Care Med. 2005;33(1):232. ParsonsPE EisnerMD ThompsonBT Lower tidal volume ventilation and plasma cytokine markers of inflammation in patients with acute lung injury Crit Care Med 2005 33 1 232 Search in Google Scholar

Hickling KG. Low volume ventilation with permissive hypercapnia in the Adult Respiratory Distress Syndrome. Clin Intensive Care. 1992;3(2):67–78. HicklingKG Low volume ventilation with permissive hypercapnia in the Adult Respiratory Distress Syndrome Clin Intensive Care 1992 3 2 67 78 Search in Google Scholar

Máca J, Jor O, Holub M, et al. Past and Present ARDS Mortality Rates: A Systematic Review. Respir Care. 2017;62(1):113–122. MácaJ JorO HolubM Past and Present ARDS Mortality Rates: A Systematic Review Respir Care 2017 62 1 113 122 Search in Google Scholar

Horie S, Ansari B, Masterson C, et al. Hypercapnic acidosis attenuates pulmonary epithelial stretch-induced injury via inhibition of the canonical NF-κB pathway. Intensive Care Med Exp. 2016;4(1):8. HorieS AnsariB MastersonC Hypercapnic acidosis attenuates pulmonary epithelial stretch-induced injury via inhibition of the canonical NF-κB pathway Intensive Care Med Exp 2016 4 1 8 Search in Google Scholar

Gibson PG, Qin L, Puah SH. COVID-19 acute respiratory distress syndrome (ARDS): clinical features and differences from typical pre-COVID-19 ARDS. Med J Aust. 2020;213(2):54–56. GibsonPG QinL PuahSH COVID-19 acute respiratory distress syndrome (ARDS): clinical features and differences from typical pre-COVID-19 ARDS Med J Aust 2020 213 2 54 56 Search in Google Scholar

Oppenheimer BW, Bakker J, Goldring RM, et al. Increased Dead Space Ventilation and Refractory Hypercapnia in Patients With Coronavirus Disease 19: A Potential Marker of Thrombosis in the Pulmonary Vasculature. Crit Care Explor. 2020;2(9):e0208. OppenheimerBW BakkerJ GoldringRM Increased Dead Space Ventilation and Refractory Hypercapnia in Patients With Coronavirus Disease 19: A Potential Marker of Thrombosis in the Pulmonary Vasculature Crit Care Explor 2020 2 9 e0208 Search in Google Scholar

Nin N, Angulo M, Briva A. Effects of hypercapnia in acute respiratory distress syndrome. Ann Transl Med. 2018;6(2):37. NinN AnguloM BrivaA Effects of hypercapnia in acute respiratory distress syndrome Ann Transl Med 2018 6 2 37 Search in Google Scholar

Nin N, Muriel A, Peñuelas O, et al. Severe hypercapnia and outcome of mechanically ventilated patients with moderate or severe acute respiratory distress syndrome. Intensive Care Med. 2017;43(2):200–208. NinN MurielA PeñuelasO Severe hypercapnia and outcome of mechanically ventilated patients with moderate or severe acute respiratory distress syndrome Intensive Care Med 2017 43 2 200 208 Search in Google Scholar

Tsonas AM, Botta M, Horn J, et al. Clinical characteristics physiological feature due to COVID-19 insights from Pro VENT-COVID study. J Crit Care Med. 2022; 69: 1–20. TsonasAM BottaM HornJ Clinical characteristics physiological feature due to COVID-19 insights from Pro VENT-COVID study J Crit Care Med. 2022 69 1 20 Search in Google Scholar

Matthay MA, Arabi Y, Arroliga AC, et al. A new global definition of acute respiratory distress syndrome. Am J Respir Crit Care Med. 2024 ;209(1):37–47. MatthayMA ArabiY ArroligaAC A new global definition of acute respiratory distress syndrome Am J Respir Crit Care Med. 2024 209 1 37 47 Search in Google Scholar

Robins JM, Hernán MA, Brumback B. Marginal structural models and causal inference in epidemiology. Epidemiology. 2000;11(5):550–560. RobinsJM HernánMA BrumbackB Marginal structural models and causal inference in epidemiology Epidemiology 2000 11 5 550 560 Search in Google Scholar

Kregenow DA, Rubenfeld GD, Hudson LD, Swenson ER. Hypercapnic acidosis and mortality in acute lung injury. Crit Care Med. 2006;34(1):1–7. KregenowDA RubenfeldGD HudsonLD SwensonER Hypercapnic acidosis and mortality in acute lung injury Crit Care Med 2006 34 1 1 7 Search in Google Scholar

Maamar A, Delamaire F, Reizine F, et al. Impact of Arterial CO2 Retention in Patients with Moderate or Severe ARDS. Respir Care. 2023;68(5):582–591. MaamarA DelamaireF ReizineF Impact of Arterial CO2 Retention in Patients with Moderate or Severe ARDS Respir Care 2023 68 5 582 591 Search in Google Scholar

Tonna JE, Abrams D, Brodie D, et al. Management of Adult Patients Supported with Venovenous Extracorporeal Membrane Oxygenation (VV ECMO): Guideline from the Extracorporeal Life Support Organization (ELSO). ASAIO J. 2021;67(6):601–610. TonnaJE AbramsD BrodieD Management of Adult Patients Supported with Venovenous Extracorporeal Membrane Oxygenation (VV ECMO): Guideline from the Extracorporeal Life Support Organization (ELSO) ASAIO J 2021 67 6 601 610 Search in Google Scholar

Millar JE, Boyle AJ, Drake TM, et al. Extracorporeal carbon dioxide removal in acute hypoxaemic respiratory failure: a systematic review, Bayesian meta-analysis, and trial sequential analysis. Eur Respir Rev. 2022;31(166):1–12. MillarJE BoyleAJ DrakeTM Extracorporeal carbon dioxide removal in acute hypoxaemic respiratory failure: a systematic review, Bayesian meta-analysis, and trial sequential analysis Eur Respir Rev 2022 31 166 1 12 Search in Google Scholar

Kluis A, Shih E, Squiers JJ, et al. Directed Hypercapnia as a Strategy to Wean Extracorporeal Membrane Oxygenation in COVID-19 Pneumonia. Ann Thorac Surg. 2022;114(5):e307–e309. KluisA ShihE SquiersJJ Directed Hypercapnia as a Strategy to Wean Extracorporeal Membrane Oxygenation in COVID-19 Pneumonia Ann Thorac Surg 2022 114 5 e307 e309 Search in Google Scholar

Melberg MB, Flaa A, Andersen, et al. Cardiovascular changes induced by targeted mild hypercapnia after out of hospital cardiac arrest. A sub-study of the TAME cardiac arrest trial. Resuscitation. 2023;193(109970):1–20. MelbergMB FlaaA Andersen Cardiovascular changes induced by targeted mild hypercapnia after out of hospital cardiac arrest. A sub-study of the TAME cardiac arrest trial Resuscitation 2023 193 109970 1 20 Search in Google Scholar

Liu, X., Jiang, Y., Jia, X. et al. Identification of distinct clinical phenotypes of acute respiratory distress syndrome with differential responses to treatment. Crit Care. 2021;25(320):1–11 LiuX. JiangY. JiaX Identification of distinct clinical phenotypes of acute respiratory distress syndrome with differential responses to treatment Crit Care 2021 25 320 1 11 Search in Google Scholar

Jaitovich A, Angulo M, Lecuona E, et.al. High CO2 levels cause skeletal muscle atrophy via AMP-activated kinase (AMPK), FoxO3a protein, and muscle-specific Ring finger protein 1 (MuRF1). Journal of Biological Chemistry. 2015;290(14):91–94. JaitovichA AnguloM LecuonaE High CO2 levels cause skeletal muscle atrophy via AMP-activated kinase (AMPK), FoxO3a protein, and muscle-specific Ring finger protein 1 (MuRF1) Journal of Biological Chemistry 2015 290 14 91 94 Search in Google Scholar

Kryvenko V, Vadász I. Antianabolic effects of hypercapnia: no country for strong men. American Journal of Respiratory Cell and Molecular Biology. 2020;62(1):8–9. KryvenkoV VadászI Antianabolic effects of hypercapnia: no country for strong men American Journal of Respiratory Cell and Molecular Biology 2020 62 1 8 9 Search in Google Scholar

Herridge MS, Tansey CM, Matté A, et al. Functional disability 5 years after acute respiratory distress syndrome. N Engl J Med. 2011;364(14):1293–1304. HerridgeMS TanseyCM MattéA Functional disability 5 years after acute respiratory distress syndrome N Engl J Med 2011 364 14 1293 1304 Search in Google Scholar

Gates KL, Howell HA, Nair A, et al. Hypercapnia impairs lung neutrophil function and increases mortality in murine pseudomonas pneumonia. Am J Respir Cell Mol Biol. 2013;49(5):821–828. GatesKL HowellHA NairA Hypercapnia impairs lung neutrophil function and increases mortality in murine pseudomonas pneumonia Am J Respir Cell Mol Biol 2013 49 5 821 828 Search in Google Scholar

Roedl K, Jarczak D, Thasler L, et al. Mechanical ventilation, and mortality among 223 critically ill patients with coronavirus disease 2019: A multicentric study in Germany. Aust Crit Care. 2021;34(2):167–175. RoedlK JarczakD ThaslerL Mechanical ventilation, and mortality among 223 critically ill patients with coronavirus disease 2019: A multicentric study in Germany Aust Crit Care 2021 34 2 167 175 Search in Google Scholar

Khan MA, Shahbaz H, Noorali AA, et al. Disparities in adult critical care resources across Pakistan: findings from a national survey and assessment using a novel scoring system. Crit Care. 2022;26(1):209. KhanMA ShahbazH NooraliAA Disparities in adult critical care resources across Pakistan: findings from a national survey and assessment using a novel scoring system Crit Care 2022 26 1 209 Search in Google Scholar

Chaudhry RM, Minhas S, Khan MA, et al. COVID-19 Testing Trend: A Retrospective Analysis of the Three Major Pandemic Waves in Punjab, Pakistan. Cureus. 2024;16(1):e52309. ChaudhryRM MinhasS KhanMA COVID-19 Testing Trend: A Retrospective Analysis of the Three Major Pandemic Waves in Punjab, Pakistan Cureus 2024 16 1 e52309 Search in Google Scholar

Horie S, Gonzalez HE, Laffey JG, Masterson CH. Cell therapy in acute respiratory distress syndrome. J Thorac Dis. 2018;10(9):5607–5620. HorieS GonzalezHE LaffeyJG MastersonCH Cell therapy in acute respiratory distress syndrome J Thorac Dis 2018 10 9 5607 5620 Search in Google Scholar