2,766
Views
1
CrossRef citations to date
0
Altmetric
Pulmonary Medicine

Extracorporeal carbon dioxide removal for patients with acute respiratory failure: a systematic review and meta-analysis

ORCID Icon, , , , ORCID Icon &
Pages 746-759 | Received 13 Sep 2022, Accepted 20 Jan 2023, Published online: 01 Mar 2023

References

  • Villar J, Blanco J, Añón JM, ALIEN Network, et al. The ALIEN study: incidence and outcome of acute respiratory distress syndrome in the era of lung protective ventilation. Intensive Care Med. 2011;37(12):1932–1941.
  • Ko FW, Chan KP, Hui DS, et al. Acute exacerbation of COPD. Respirology. 2016;21(7):1152–1165.
  • Gregoretti C, Pisani L, Cortegiani A, et al. Noninvasive ventilation in critically ill patients. Crit Care Clin. 2015;31(3):435–457.
  • Beitler JR, Malhotra A, Thompson BT. Ventilator-induced lung injury. Clin Chest Med. 2016;37(4):633–646.
  • Fielding-Singh V, Matthay MA, Calfee CS. Beyond Low tidal volume ventilation: treatment adjuncts for severe respiratory failure in acute respiratory distress syndrome. Crit Care Med. 2018;46(11):1820–1831.
  • Rubenfeld GD, Cooper C, Carter G, et al. Hudson LD barriers to providing lung-protective ventilation to patients with acute lung injury. Crit Care Med. 2004;32(6):1289–1293.
  • Gattinoni L, Kolobow T, Tomlinson T, et al. Low-frequency positive pressure ventilation with extracorporeal carbon dioxide removal (LFPPV-ECCO2R): an experimental study. Anesth Analg. 1978;57(4):470–477.
  • Gattinoni L, Kolobow T, Tomlinson T, et al. Control of intermittent positive pressure breathing (IPPB) by extracorporeal removal of carbon dioxide. Br J Anaesth. 1978;50(8):753–758.
  • Cove ME, MacLaren G, Federspiel WJ, et al. Bench to bedside review: extracorporeal carbon dioxide removal, past present and future. Crit Care. 2012;16(5):232.
  • Morelli A, Del Sorbo L, Pesenti A, et al. Extracorporeal carbon dioxide removal (ECCO(2)R) in patients with acute respiratory failure. Intensive Care Med. 2017;43(4):519–530.
  • Moerer O, Quintel M. Quintel M protective and ultra-protective ventilation: using pumpless interventional lung assist (iLA). Minerva Anestesiol. 2011;77(5):537–544.
  • Davidson AC, Banham S, Elliott M, BTS Standards of Care Committee Member, British Thoracic Society/Intensive Care Society Acute Hypercapnic Respiratory Failure Guideline Development Group, On behalf of the British Thoracic Society Standards of Care Committee, et al. BTS/ICS guideline for the ventilatory management of acute hypercapnic respiratory failure in adults. Thorax. 2016;71 Suppl 2:ii1–35.
  • Page MJ, McKenzie JE, Bossuyt PM, et al. The PRISMA 2020 statement: an updated guideline for reporting systematic reviews. PLoS Med. 2021;18(3):e1003583.
  • Higgins JP, Altman DG, Gøtzsche PC, Cochrane Statistical Methods Group, et al. The Cochrane collaboration’s tool for assessing risk of bias in randomised trials. BMJ. 2011;343:d5928.
  • Stang A. Critical evaluation of the Newcastle-Ottawa scale for the assessment of the quality of nonrandomized studies in meta-analyses. Eur J Epidemiol. 2010;25(9):603–605.
  • Higgins JP, Thompson SG. Quantifying heterogeneity in a meta-analysis. Stat Med. 2002;21(11):1539–1558.
  • Higgins JP, Thompson SG, Deeks JJ, et al. Measuring inconsistency in meta-analyses. BMJ. 2003;327(7414):557–560.
  • Bein T, Weber-Carstens S, Goldmann A, et al. Lower tidal volume strategy (≈3 ml/kg) combined with extracorporeal CO2 removal versus 'conventional’ protective ventilation (6 ml/kg) in severe ARDS: the prospective randomized xtravent-study. Intensive Care Med. 2013;39(5):847–856.
  • McNamee JJ, Gillies MA, Barrett NA, REST Investigators, et al. Effect of lower tidal volume ventilation facilitated by extracorporeal carbon dioxide removal vs standard care ventilation on 90-Day mortality in patients with acute hypoxemic respiratory failure: the REST randomized clinical trial. Jama. 2021;326(11):1013–1023.
  • Morris AH, Wallace CJ, Menlove RL, et al. Randomized clinical trial of pressure-controlled inverse ratio ventilation and extracorporeal CO2 removal for adult respiratory distress syndrome. Am J Respir Crit Care Med. 1994;149(2 Pt 1):295–305.
  • Barrett NA, Hart N, Daly KJR, et al. A randomised controlled trial of non-invasive ventilation compared with extracorporeal carbon dioxide removal for acute hypercapnic exacerbations of chronic obstructive pulmonary disease. Ann Intensive Care. 2022;12(1):36.
  • Azzi M, Aboab J, Alviset S, et al. Extracorporeal CO(2) removal in acute exacerbation of COPD unresponsive to non-invasive ventilation. BMJ Open Respir Res. 2021;8(1):e001089. doi: 10.1136/bmjresp-2021-001089
  • Braune S, Sieweke A, Brettner F, et al. The feasibility and safety of extracorporeal carbon dioxide removal to avoid intubation in patients with COPD unresponsive to noninvasive ventilation for acute hypercapnic respiratory failure (I study): multicentre case-control study. Intensive Care Med. 2016;42(9):1437–1444.
  • Del Sorbo L, Pisani L, Filippini C, et al. Extracorporeal Co2 removal in hypercapnic patients at risk of noninvasive ventilation failure: a matched cohort study with historical control. Crit Care Med. 2015;43(1):120–127.
  • Kluge S, Braune SA, Engel M, et al. Avoiding invasive mechanical ventilation by extracorporeal carbon dioxide removal in patients failing noninvasive ventilation. Intensive Care Med. 2012;38(10):1632–1639.
  • İnal V, Efe S. S Extracorporeal carbon dioxide removal (ECCO2R) in COPD and ARDS patients with severe hypercapnic respiratory failure. A retrospective case-control study. Turk J Med Sci. 2021;51(4):2127–2135.
  • Fitzgerald M, Millar J, Blackwood B, et al. Extracorporeal carbon dioxide removal for patients with acute respiratory failure secondary to the acute respiratory distress syndrome: a systematic review. Crit Care. 2014;18(3):222.
  • Sklar MC, Beloncle F, Katsios CM, et al. Extracorporeal carbon dioxide removal in patients with chronic obstructive pulmonary disease: a systematic review. Intensive Care Med. 2015;41(10):1752–1762.
  • Bozkuş F, Bilal B, Öksüz H. H Extracorporeal carbondioxide removal (ECCO2R): case series and review of literature. Tuberk Toraks. 2018;66(3):258–265.
  • Schellongowski P, Riss K, Staudinger T, et al. Extracorporeal CO2 removal as bridge to lung transplantation in life-threatening hypercapnia. Transpl Int. 2015;28(3):297–304.
  • Akkanti B, Rajagopal K, Patel KP, et al. Low-Flow extracorporeal carbon dioxide removal using the hemolung respiratory dialysis system(®) to facilitate Lung-Protective mechanical ventilation in acute respiratory distress syndrome. J Extra Corpor Technol. 2017;49(2):112–114.
  • Combes A, Fanelli V, Pham T, European Society of Intensive Care Medicine Trials Group and the “Strategy of Ultra-Protective lung ventilation with Extracorporeal CO2 Removal for New-Onset moderate to severe ARDS” (SUPERNOVA) investigators, et al. Feasibility and safety of extracorporeal CO(2) removal to enhance protective ventilation in acute respiratory distress syndrome: the SUPERNOVA study. Intensive Care Med. 2019;45(5):592–600.
  • Grasselli G, Castagna L, Bottino N, et al. Practical Clinical application of an extracorporeal carbon dioxide removal system in acute respiratory distress syndrome and acute on chronic respiratory failure. Asaio J. 2020;66(6):691–697.
  • Godet T, Combes A, Zogheib E, et al. Novel CO2 removal device driven by a renal-replacement system without hemofilter. A first step experimental validation. Anaesth Crit Care Pain Med. 2015;34(3):135–140.
  • Allardet-Servent J, Castanier M, Signouret T, et al. Safety and efficacy of combined extracorporeal CO2 removal and renal replacement therapy in patients with acute respiratory distress syndrome and acute kidney injury: the pulmonary and renal support in acute respiratory distress syndrome study. Crit Care Med. 2015;43(12):2570–2581.
  • Darmon M, Clec’h C, Adrie C, et al. Acute respiratory distress syndrome and risk of AKI among critically ill patients. Clin J Am Soc Nephrol. 2014;9(8):1347–1353.
  • van den Akker JP, Egal M, Groeneveld AB. Invasive mechanical ventilation as a risk factor for acute kidney injury in the critically ill: a systematic review and meta-analysis. Crit Care. 2013;17(3):R98.
  • Wan X, Chen D, Tan Y, et al. Incidence, risk factors, and prognostic implications of acute kidney injury in patients with acute exacerbation of COPD. Int J Chron Obstruct Pulmon Dis. 2020;15:1085–1092.
  • Consales G, Zamidei L, Turani F, et al. Combined Renal-Pulmonary extracorporeal support with low blood flow techniques: a retrospective observational study (CICERO study). Blood Purif. 2022;51(4):299–308.
  • Chen Y, Wang S, Huang J, et al. Application of extracorporeal carbon dioxide removal combined with continuous blood purification therapy in ARDS with hypercapnia in patients with critical COVID-19. Clin Hemorheol Microcirc. 2021;78(2):199–207.
  • Cerdá J, Baldwin I, Honore PM, ADQI Consensus Group, et al. C Role of technology for the management of AKI in critically ill patients: from adoptive technology to precision continuous renal replacement therapy. Blood Purif. 2016;42(3):248–265.
  • Braune S, Burchardi H, Engel M, et al. The use of extracorporeal carbon dioxide removal to avoid intubation in patients failing non-invasive ventilation–a cost analysis. BMC Anesthesiol. 2015;15:160.