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Crucial role for lung iron level and regulation in the pathogenesis and severity of asthma.

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Title: Crucial role for lung iron level and regulation in the pathogenesis and severity of asthma.
Authors: Ali, MK
Kim, RY
Brown, AC
Mayall, JR
Karim, R
Pinkerton, JW
Liu, G
Martin, KL
Starkey, MR
Pillar, A
Donovan, C
Pathinayake, PS
Carroll, OR
Trinder, D
Tay, HL
Badi, YE
Kermani, NZ
Guo, Y-K
Aryal, R
Mumby, S
Pavlidis, S
Adcock, IM
Weaver, J
Xenaki, D
Oliver, BG
Holliday, EG
Foster, PS
Wark, PA
Johnstone, DM
Milward, EA
Hansbro, PM
Horvat, JC
Item Type: Journal Article
Abstract: Accumulating evidence highlights links between iron regulation and respiratory disease. Here, we assessed the relationship between iron levels and regulatory responses in clinical and experimental asthma.We show that cell-free iron levels are reduced in the bronchoalveolar lavage (BAL) supernatant of severe or mild-moderate asthma patients and correlate with lower forced expiratory volume in 1 s (FEV1). Conversely, iron-loaded cell numbers were increased in BAL in these patients and with lower FEV1/forced vital capacity (FEV1/FVC). The airway tissue expression of the iron sequestration molecules divalent metal transporter 1 (DMT1) and transferrin receptor 1 (TFR1) are increased in asthma with TFR1 expression correlating with reduced lung function and increased type 2 (T2) inflammatory responses in the airways. Furthermore, pulmonary iron levels are increased in a house dust mite (HDM)-induced model of experimental asthma in association with augmented Tfr1 expression in airway tissue, similar to human disease. We show that macrophages are the predominant source of increased Tfr1 and Tfr1+ macrophages have increased Il13 expression. We also show that increased iron levels induce increased pro-inflammatory cytokine and/or extracellular matrix (ECM) responses in human airway smooth muscle (ASM) cells and fibroblasts ex vivo and induce key features of asthma, including airway hyper-responsiveness and fibrosis and T2 inflammatory responses, in vivoTogether these complementary clinical and experimental data highlight the importance of altered pulmonary iron levels and regulation in asthma, and the need for a greater focus on the role and potential therapeutic targeting of iron in the pathogenesis and severity of disease.
Issue Date: 23-Apr-2020
Date of Acceptance: 28-Jan-2020
URI: http://hdl.handle.net/10044/1/77654
DOI: 10.1183/13993003.01340-2019
ISSN: 0903-1936
Publisher: European Respiratory Society
Start Page: 1
End Page: 14
Journal / Book Title: European Respiratory Journal
Volume: 55
Issue: 3
Copyright Statement: ©ERS 2020
Keywords: Science & Technology
Life Sciences & Biomedicine
Respiratory System
OBSTRUCTIVE PULMONARY-DISEASE
MOUSE MODEL
RESPIRATORY-INFECTION
TRACE-ELEMENTS
CELLS
HOMEOSTASIS
PREGNANCY
FEATURES
ALLERGEN
RISK
11 Medical and Health Sciences
Respiratory System
Publication Status: Published
Conference Place: England
Open Access location: https://erj.ersjournals.com/content/55/4/1901340.long
Online Publication Date: 2020-04-23
Appears in Collections:Computing
National Heart and Lung Institute
Faculty of Medicine
Faculty of Engineering