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Neutrophil dysfunction in bronchiectasis: an emerging role for immunometabolism

Yan Hui Giam, Amelia Shoemark, James D Chalmers
European Respiratory Journal 2021; DOI: 10.1183/13993003.03157-2020
Yan Hui Giam
Division of Molecular and Clinical Medicine, University of Dundee, Ninewells Hospital and Medical School, Dundee, UK
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Amelia Shoemark
Division of Molecular and Clinical Medicine, University of Dundee, Ninewells Hospital and Medical School, Dundee, UK
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  • ORCID record for Amelia Shoemark
James D Chalmers
Division of Molecular and Clinical Medicine, University of Dundee, Ninewells Hospital and Medical School, Dundee, UK
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  • For correspondence: jchalmers@dundee.ac.uk
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Abstract

Bronchiectasis is a heterogenous disease with multiple underlying causes. The pathophysiology is poorly understood but neutrophilic inflammation and dysfunctional killing of pathogens is believed to be key. There are, however, no licensed therapies for bronchiectasis that directly target neutrophilic inflammation. In this review, we discuss our current understanding of neutrophil dysfunction and therapeutic targeting in bronchiectasis. Immunometabolic reprogramming, a process through which inflammation changes inflammatory cell behaviour by altering intracellular metabolic pathways, is increasingly recognised across multiple inflammatory and autoimmune disease. Here we show evidence that much of the neutrophil dysfunction observed in bronchiectasis is consistent with immunometabolic reprogramming. Previous attempts to develop therapies targeting neutrophils have focused on reducing neutrophil numbers, resulting in increased infections. New approaches are needed and we propose that targeting metabolism could theoretically reverse neutrophil dysfunction and dysregulated inflammation. As an exemplar, AMPK activation has already been shown to reverse phagocytic dysfunction and neutrophil extracellular trap formation in models of pulmonary disease. AMPK modulates multiple metabolic pathways including glycolysis which is critical for energy generation in neutrophils. AMPK activators can reverse metabolic reprogramming and are already in clinical use and/or development. We propose the need for a new immunomodulatory, rather than anti-inflammatory, approach to enhance bacterial clearance and reduce bronchiectasis disease severity.

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. Giam has nothing to disclose.

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

Conflict of interest: Dr. Chalmers reports grants and personal fees from Astrazeneca, grants and personal fees from Boehringer Ingelheim, personal fees from Chiesi, grants and personal fees from Glaxosmithkline, grants from Gilead Sciences, grants and personal fees from Insmed, personal fees from Novartis, personal fees from Zambon, outside the submitted work;.

  • Received August 15, 2020.
  • Accepted January 12, 2021.
  • ©The authors 2021. For reproduction rights and permissions contact permissions{at}ersnet.org
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Neutrophil dysfunction in bronchiectasis: an emerging role for immunometabolism
Yan Hui Giam, Amelia Shoemark, James D Chalmers
European Respiratory Journal Jan 2021, 2003157; DOI: 10.1183/13993003.03157-2020

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Neutrophil dysfunction in bronchiectasis: an emerging role for immunometabolism
Yan Hui Giam, Amelia Shoemark, James D Chalmers
European Respiratory Journal Jan 2021, 2003157; DOI: 10.1183/13993003.03157-2020
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