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Epidemiology of pleural empyema in English hospitals and the impact of influenza

David T. Arnold, Fergus W. Hamilton, Tim T. Morris, Tim Suri, Anna Morley, Vicky Frost, Ian B. Vipond, Andrew R. Medford, Rupert A. Payne, Peter Muir, Nick A. Maskell
European Respiratory Journal 2020; DOI: 10.1183/13993003.03546-2020
David T. Arnold
1Bristol Academic Respiratory Unit, Learning and Research Centre, Southmead Hospital, Bristol, United Kingdom
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  • For correspondence: arnold.dta@gmail.com
Fergus W. Hamilton
2Department of Microbiology, North Bristol NHS Trust, Bristol, United Kingdom
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Tim T. Morris
3MRC Integrative Epidemiology Unit, Bristol Medical School, University of Bristol, Bristol, United Kingdom
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  • ORCID record for Tim T. Morris
Tim Suri
4Public Health England South West Regional Laboratory, National Infection Service, Pathology Sciences Building, Science Quarter, Southmead Hospital, Bristol, United Kingdom
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Anna Morley
1Bristol Academic Respiratory Unit, Learning and Research Centre, Southmead Hospital, Bristol, United Kingdom
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Vicky Frost
4Public Health England South West Regional Laboratory, National Infection Service, Pathology Sciences Building, Science Quarter, Southmead Hospital, Bristol, United Kingdom
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Ian B. Vipond
4Public Health England South West Regional Laboratory, National Infection Service, Pathology Sciences Building, Science Quarter, Southmead Hospital, Bristol, United Kingdom
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Andrew R. Medford
1Bristol Academic Respiratory Unit, Learning and Research Centre, Southmead Hospital, Bristol, United Kingdom
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Rupert A. Payne
5Centre for Academic Primary Care, Population Health Sciences, Bristol Medical School, University of Bristol, Canynge Hall, Bristol, United Kingdom
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Peter Muir
4Public Health England South West Regional Laboratory, National Infection Service, Pathology Sciences Building, Science Quarter, Southmead Hospital, Bristol, United Kingdom
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Nick A. Maskell
1Bristol Academic Respiratory Unit, Learning and Research Centre, Southmead Hospital, Bristol, United Kingdom
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Abstract

Pleural empyema represents a significant healthcare burden due to extended hospital admissions and potential requirement for surgical intervention. This study aimed to assess changes in incidence and management of pleural empyema in England over the last 10 years and the potential impact of influenza on rates.

Hospital Episode Statistics (HES) data was used to identify patients admitted to English hospitals with pleural empyema between 2008 and 2018. Linear regression was used to analyse the relationship between empyema rates and influenza incidence recorded by Public Health England. The relationship between influenza and empyema was further explored using serological data from a prospective cohort study of patients presenting with pleural empyema.

Between April 2008 and March 2018 there were 55 530 patients admitted with pleural empyema. There was male predominance (67% versus 33%) which increased with age. Cases have significantly increased from 4447 in 2008 to 7268 in 2017. Peaks of incidence correlated moderately with rates of laboratory-confirmed influenza in children and young adults (r=0·30). For 9 of the 10 years studied the highest annual point incidence of influenza coincided with the highest admission rate for empyema (with a 2-week lag). In a cohort study of patients presenting to a single UK hospital with pleural empyema/infection, 24% (17/72) had serological evidence of recent influenza infection compared to 7% in seasonally matched controls with simple parapneumonic or cardiogenic effusions (p<0·001).

Rates of empyema admissions in England have steadily increased with a seasonal variation that is temporally related to influenza incidence. Patient-level serological data from a prospective study supports the hypothesis that influenza may play a pathogenic role in empyema development.

Footnotes

This manuscript has recently been accepted for publication in the European Respiratory Journal. It is published here in its accepted form prior to copyediting and typesetting by our production team. After these production processes are complete and the authors have approved the resulting proofs, the article will move to the latest issue of the ERJ online. Please open or download the PDF to view this article.

Conflict of interest: Dr. Arnold has nothing to disclose.

Conflict of interest: Dr. Hamilton has nothing to disclose.

Conflict of interest: Dr. Morris has nothing to disclose.

Conflict of interest: Dr. Suri has nothing to disclose.

Conflict of interest: Dr. Morley has nothing to disclose.

Conflict of interest: Dr. Frost has nothing to disclose.

Conflict of interest: Dr. Vipond has nothing to disclose.

Conflict of interest: Dr. Medford has nothing to disclose.

Conflict of interest: Dr. Payne has nothing to disclose.

Conflict of interest: Dr. Muir has nothing to disclose.

Conflict of interest: Dr. Maskell has nothing to disclose.

  • Received September 17, 2020.
  • Accepted November 25, 2020.
  • Copyright ©ERS 2020
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Epidemiology of pleural empyema in English hospitals and the impact of influenza
David T. Arnold, Fergus W. Hamilton, Tim T. Morris, Tim Suri, Anna Morley, Vicky Frost, Ian B. Vipond, Andrew R. Medford, Rupert A. Payne, Peter Muir, Nick A. Maskell
European Respiratory Journal Jan 2020, 2003546; DOI: 10.1183/13993003.03546-2020

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Epidemiology of pleural empyema in English hospitals and the impact of influenza
David T. Arnold, Fergus W. Hamilton, Tim T. Morris, Tim Suri, Anna Morley, Vicky Frost, Ian B. Vipond, Andrew R. Medford, Rupert A. Payne, Peter Muir, Nick A. Maskell
European Respiratory Journal Jan 2020, 2003546; DOI: 10.1183/13993003.03546-2020
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