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Chlorhexidine-related ventilator-associated events: Toward recognition?

Published online by Cambridge University Press:  01 August 2018

Mieke Deschepper
Affiliation:
Strategic Policy Cell, Ghent University Hospital, Ghent, Belgium
Dirk Vogelaers
Affiliation:
Department of Internal Medicine, Ghent University, Ghent, Belgium
Stijn Blot*
Affiliation:
Department of Internal Medicine, Ghent University, Ghent, Belgium Burns, Trauma, and Critical Care Research Centre, The University of Queensland, Center for Clinical Research, Faculty of Medicine, Brisbane, Australia
*
Author for correspondence: Stijn Blot, Department of Internal Medicine, Ghent University, Campus UZ Gent, Corneel Heymanslaan 10, 9000 Ghent, Belgium. E-mail: [email protected]
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Abstract

Type
Letter to the Editor
Copyright
© 2018 by The Society for Healthcare Epidemiology of America. All rights reserved. 

To the Editor—Despite all the efforts in prevention, the concept of ventilator-associated events (VAEs), including but not restricted to ventilator-associated pneumonia, remains an important quality indicator in critically ill patients because these bundled events are associated with increased morbidity and possibly mortality.Reference Klompas, Branson and Eichenwald 1 Reference Myny, Depuydt, Colardyn and Blot 3 Ventilator care bundles have been widely implemented to target the optimization of adherence with evidence-based prevention measures. In a recent issue of Infection Control and Hospital Epidemiology, Harris et alReference Harris, Thomas, Greene, Spires and Talbot 4 explored the impact of ventilator bundle compliance on the risk of VAE by means of nested case-control study.

Control subjects were matched for type of ICU and exposure time on the ventilator prior to the VAE. Total bundle compliance was 73% for cases and was 70% for controls; compliance to individual components of the bundle ranged from 83% to 99%. No difference in VAE risk was observed between cases and controls, probably because of the insignificant differences in compliance between the 2 groups. Interestingly, however, higher compliance with chlorhexidine oral care (in the 3 days preceding the event) was associated with a higher risk for VAE in multivariate analysis adjusted for age and sex (odds ratio, 1.45; 95% confidence interval, 1.10–1.90). Restricting the analysis to infection-related ventilator-associated complications and probable ventilator-associated pneumonia revealed identical results.

As the authors themselves point out, the data must be interpreted cautiously because no adjustment was obtained for severity of illness. Nevertheless, this observation adds to the mounting controversy about chlorhexidine oral care and the suggestion of possible harm. Two meta-analyses of randomized controlled trials have indicated a potential link between chlorhexidine oral care and mortality.Reference Klompas, Speck, Howell, Greene and Berenholtz 5 , Reference Price, MacLennan and Glen 6 A retrospective cohort study evaluating associations between ventilator bundle components and outcomes found chlorhexidine oral care to be associated with increased ventilator mortality.Reference Klompas, Li, Kleinman, Szumita and Massaro 7 However, this observation is complicated by the absence of a convincing pathogenic mechanism. Microaspiration of chlorhexidine along folds in the endotracheal cuff wall resulting in VAEs has been proposed as an explanation, albeit without obvious proof.Reference Klompas, Speck, Howell, Greene and Berenholtz 5 , Reference Blot, Poelaert and Kollef 8 , Reference Bouadma, Karpanen and Elliott 9 Recently, Deschepper et alReference Deschepper, Waegeman, Eeckloo, Vogelaers and Blot 10 found increased mortality among patients exposed to chlorhexidine oral care in a large hospital-wide cohort, thereby broadening the scope of the issue to all hospitalized patients.Reference Deschepper, Waegeman, Eeckloo, Vogelaers and Blot 10 Notably, in this study, no adverse effect of chlorhexidine oral care was observed among ICU patients, either ventilated or nonventilated. Actually, the association of chlorhexidine oral care with mortality was strongest in categories with lower risk of mortality. In this regard, the study by Deschepper et al contradicts previous reports and thereby undermines the hypothesis of microaspiration being the pathogenic mechanism. Of course, the Deschepper study was observational and, as such, had a high risk of bias.Reference Ricard and Lisboa 11 However, in the light of accumulating reports warning of potential harm associated with chlorhexidine oral care, it is time to carefully reconsider this practice. Bouadma and Klompas stressed the relatively low evidence for the use of chlorhexidine in terms of pneumonia reduction.Reference Bouadma and Klompas 12 Indeed, chlorhexidine oral care has been perceived as inexpensive, logical, and completely safe, favoring promotion of the practice. However, the situation turns with increasing indications of associations with potentially deleterious effects. It is correct that warnings about safety of chlorhexidine oral care are derived from meta-analyses and observational cohorts, but how much evidence do we need to omit a potentially harmful practice for which the evidence in favor is also marginal? A significantly reduced risk of pneumonia has only been demonstrated in cardio-surgical patients, and when meta-analyses were restricted to blinded trials, no difference remained.Reference Klompas, Speck, Howell, Greene and Berenholtz 5 , Reference Bouadma and Klompas 12 , Reference Labeau, Van de Vyver, Brusselaers, Vogelaers and Blot 13

Several alternatives are available for chlorhexidine mouthwashes. Thus far, none of these have proven efficacious in reducing pneumonia risk. However, antiseptic mouthwash does have other indications as well, such as the care for patients with stomatitis or gingival-periodontal disease. Also, for these indications, the use of chlorhexidine should be questioned. In any case, oral care either in critically or noncritically ill populations needs to be reassessed and given new attention in research. Solid standard oral care, including 2–3 times daily mechanical cleaning and/or toothbrushing without the use of antiseptics, must be the starting basis for evaluation, against which the benefit of any other additional intervention should be measured.

Acknowledgments

Financial support

S.B. holds a research mandate of the Special Research Fund at Ghent University. No other financial support was provided relevant to this article.

Conflicts of interest

All authors declare that there are no potential conflicts of interest to disclose.

Footnotes

Cite this article: Deschepper M, et al. (2018). Chlorhexidine-related ventilator-associated events: Toward recognition?. Infection Control & Hospital Epidemiology 2018, 39, 1144–1145. doi: 10.1017/ice.2018.173

References

1. Klompas, M, Branson, R, Eichenwald, EC, et al. Strategies to prevent ventilator-associated pneumonia in acute care hospitals: 2014 update. Infect Control Hosp Epidemiol 2014;35:915936.Google Scholar
2. Sousa, AS, Ferrito, C, Paiva, JA. Intubation-associated pneumonia: an integrative review. Intensive Crit Care Nurs 2018;44:4552.Google Scholar
3. Myny, D, Depuydt, P, Colardyn, F, Blot, S. Ventilator-associated pneumonia in a tertiary care ICU: analysis of risk factors for acquisition and mortality. Acta Clin Belg 2005;60:114121.Google Scholar
4. Harris, BD, Thomas, GA, Greene, MH, Spires, SS, Talbot, TR. Ventilator bundle compliance and risk of ventilator-associated events. Infect Control Hosp Epidemiol 2018;39:637643.Google Scholar
5. Klompas, M, Speck, K, Howell, MD, Greene, LR, Berenholtz, SM. Reappraisal of routine oral care with chlorhexidine gluconate for patients receiving mechanical ventilation: systematic review and meta-analysis. JAMA Intern Med 2014;174:751761.Google Scholar
6. Price, R, MacLennan, G, Glen, J, SuDDICU Collaboration. Selective digestive or oropharyngeal decontamination and topical oropharyngeal chlorhexidine for prevention of death in general intensive care: systematic review and network meta-analysis. BMJ 2014;348(Mar 31 2):g2197g2197.Google Scholar
7. Klompas, M, Li, L, Kleinman, K, Szumita, PM, Massaro, AF. Associations between ventilator bundle components and outcomes. JAMA Intern Med 2016;176:12771283.Google Scholar
8. Blot, SI, Poelaert, J, Kollef, M. How to avoid microaspiration? A key element for the prevention of ventilator-associated pneumonia in intubated ICU patients. BMC Infect Dis 2014;14:119.Google Scholar
9. Bouadma, L, Karpanen, T, Elliott, T. Chlorhexidine use in adult patients on ICU. Intensive Care Med 2018;30(Suppl 1):S827S823.Google Scholar
10. Deschepper, M, Waegeman, W, Eeckloo, K, Vogelaers, D, Blot, S. Effects of chlorhexidine gluconate oral care on hospital mortality: a hospital-wide, observational cohort study. Intensive Care Med 2018;37:27092710.Google Scholar
11. Ricard, JD, Lisboa, T. Caution for chlorhexidine gluconate use for oral care: insufficient data. Intensive Care Med 2018;11:845–843.Google Scholar
12. Bouadma, L, Klompas, M. Oral care with chlorhexidine: beware! Intensive Care Med 2018;35(Suppl 2):915–913.Google Scholar
13. Labeau, SO, Van de Vyver, K, Brusselaers, N, Vogelaers, D, Blot, SI. Prevention of ventilator-associated pneumonia with oral antiseptics: a systematic review and meta-analysis. Lancet Infect Dis 2011;11:845854.Google Scholar