Skip to main navigation Skip to search Skip to main content

Carbocisteine or Hypertonic Saline for Acute Respiratory Failure

  • Bronwen Connolly
  • , Naomi Dickson
  • , Christina Campbell
  • , Judy M. Bradley
  • , Brenda O’Neill
  • , Ashley Agus
  • , Mike Barker
  • , Jeremy S. Bewley
  • , Bronagh Blackwood
  • , Mark Borthwick
  • , Luigi Camporota
  • , Marc Chikhani
  • , Mike Clarke
  • , Paul Dark
  • , Lisa Higgins
  • , Penelope Lambert
  • , Thomas Lunn
  • , Cliona McDowell
  • , Margaret McFarland
  • , Una McShane
  • Reena Mehta, Ben Messer, Ben Morton, Nehal Patel, Gavin D. Perkins, Deborah Rowley, Murali Shyamsundar, Jonathan A. Silversides, Gordon Sturmey, John Warburton, Barry Williams, Ranjit Lall, Daniel F. McAuley

Research output: Contribution to journalArticlepeer-review

108 Downloads (Pure)

Abstract

BACKGROUND: Mucoactive agents are widely used in patients with acute respiratory failure despite limited evidence of their effectiveness or safety. METHODS: We conducted a multicenter, open-label, randomized trial with a 2-by-2 factorial design that involved critically ill, mechanically ventilated participants 16 years of age or older with acute respiratory failure and difficult-to-clear secretions. All participants received usual care along with carbocisteine (750 mg three times daily enterally), 6% or 7% nebulized hypertonic saline (HTS) (4 ml four times daily), both interventions, or usual care alone for up to 28 days. The primary outcome was duration of mechanical ventilation (from randomization to first successful unassisted breathing). The primary comparisons were between any carbocisteine and no carbocisteine and between any HTS and no HTS, with each comparison comprising two treatment groups. RESULTS: A total of 1956 participants underwent randomization: 486 were assigned to carbocisteine, 485 to HTS, 492 to both treatments, and 493 to usual care alone (472, 474, 479, and 478, respectively, were included in the primary analysis). No evidence of treatment interaction was found (hazard ratio, 1.01, 95% confidence interval [CI], 0.83 to 1.22; P = 0.91). The median duration of mechanical ventilation was 186.1 hours (95% CI, 168.3 to 196.6) with carbocisteine and 172.7 hours (95% CI, 165.2 to 190.4) with no carbocisteine (adjusted hazard ratio, 0.96; 95% CI, 0.87 to 1.05; P = 0.34) and 184.5 hours (95% CI, 165.6 to 194.1) with HTS and 174.3 hours (95% CI, 166.9 to 192.7) with no HTS (adjusted hazard ratio, 1.00; 95% CI, 0.91 to 1.10; P = 0.98). Clinically important upper gastrointestinal bleeding occurred significantly more often with carbocisteine than with no carbocisteine (13 of 965 [1.4%] vs. 2 of 966 [0.2%]; risk ratio, 6.51; 95% CI, 1.47 to 28.76; P = 0.01). Bronchoconstriction leading to bronchodilator use occurred significantly more often with HTS than with no HTS (23 of 967 [2.4%] vs. 4 of 964 [0.4%]; risk ratio, 5.73; 95% CI, 1.99 to 16.52; P = 0.001), as did hypoxemia during nebulization (40 of 967 [4.1%] vs. 3 of 964 [0.3%]; risk ratio, 13.29; 95% CI, 4.12 to 42.83; P<0.001). One serious adverse reaction was reported in the combination group. CONCLUSIONS: Among critically ill patients with acute respiratory failure, neither carbocisteine nor HTS significantly reduced the duration of mechanical ventilation, and each was associated with harm. (Funded by the NIHR Health Technology Assessment Programme and the Belfast Health and Social Care Trust Charitable Trust Fund; MARCH ISRCTN Registry number, ISRCTN17683568.).

Original languageEnglish
Pages (from-to)739-752
Number of pages14
JournalNew England Journal of Medicine
Volume395
Issue number8
Early online date10 Jun 2026
DOIs
Publication statusPublished (in print/issue) - 20 Aug 2026

Bibliographical note

Publisher Copyright:
Copyright © 2026 Massachusetts Medical Society.

Data Availability Statement

A data sharing statement provided by the authors is available with the full text of this article at NEJM.org.

Funding

Supported by a grant (NIHR130454) from the National Institute for Health and Care Research (NIHR) Health Technology Assessment Programme and by a grant (J-2425-505) from the Belfast Health and Social Care Trust Charitable Trust Fund.

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • clinical medicine general
  • critical care
  • hospital-based clinical medicine
  • mechanical ventilation
  • Pulmonary/Critical Care General

Fingerprint

Dive into the research topics of 'Carbocisteine or Hypertonic Saline for Acute Respiratory Failure'. Together they form a unique fingerprint.

Cite this