HDAC6 inhibitor ACY-1083 shows lung epithelial protective features in COPD

Airway epithelial damage is a common feature in respiratory diseases such as COPD and has been suggested to drive inflammation and progression of disease. These features manifest as remodeling and destruction of lung epithelial characteristics including loss of small airways which contributes to chr...

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Veröffentlicht in:PloS one 2022-10, Vol.17 (10), p.e0266310-e0266310
Hauptverfasser: Horndahl, Jenny, Svärd, Rebecka, Berntsson, Pia, Wingren, Cecilia, Li, Jingjing, Abdillahi, Suado M, Ghosh, Baishakhi, Capodanno, Erin, Chan, Justin, Ripa, Lena, Åstrand, Annika, Sidhaye, Venkataramana K, Collins, Mia
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container_title PloS one
container_volume 17
creator Horndahl, Jenny
Svärd, Rebecka
Berntsson, Pia
Wingren, Cecilia
Li, Jingjing
Abdillahi, Suado M
Ghosh, Baishakhi
Capodanno, Erin
Chan, Justin
Ripa, Lena
Åstrand, Annika
Sidhaye, Venkataramana K
Collins, Mia
description Airway epithelial damage is a common feature in respiratory diseases such as COPD and has been suggested to drive inflammation and progression of disease. These features manifest as remodeling and destruction of lung epithelial characteristics including loss of small airways which contributes to chronic airway inflammation. Histone deacetylase 6 (HDAC6) has been shown to play a role in epithelial function and dysregulation, such as in cilia disassembly, epithelial to mesenchymal transition (EMT) and oxidative stress responses, and has been implicated in several diseases. We thus used ACY-1083, an inhibitor with high selectivity for HDAC6, and characterized its effects on epithelial function including epithelial disruption, cytokine production, remodeling, mucociliary clearance and cell characteristics. Primary lung epithelial air-liquid interface cultures from COPD patients were used and the impacts of TNF, TGF-β, cigarette smoke and bacterial challenges on epithelial function in the presence and absence of ACY-1083 were tested. Each challenge increased the permeability of the epithelial barrier whilst ACY-1083 blocked this effect and even decreased permeability in the absence of challenge. TNF was also shown to increase production of cytokines and mucins, with ACY-1083 reducing the effect. We observed that COPD-relevant stimulations created damage to the epithelium as seen on immunohistochemistry sections and that treatment with ACY-1083 maintained an intact cell layer and preserved mucociliary function. Interestingly, there was no direct effect on ciliary beat frequency or tight junction proteins indicating other mechanisms for the protected epithelium. In summary, ACY-1083 shows protection of the respiratory epithelium during COPD-relevant challenges which indicates a future potential to restore epithelial structure and function to halt disease progression in clinical practice.
doi_str_mv 10.1371/journal.pone.0266310
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Each challenge increased the permeability of the epithelial barrier whilst ACY-1083 blocked this effect and even decreased permeability in the absence of challenge. TNF was also shown to increase production of cytokines and mucins, with ACY-1083 reducing the effect. We observed that COPD-relevant stimulations created damage to the epithelium as seen on immunohistochemistry sections and that treatment with ACY-1083 maintained an intact cell layer and preserved mucociliary function. Interestingly, there was no direct effect on ciliary beat frequency or tight junction proteins indicating other mechanisms for the protected epithelium. 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Each challenge increased the permeability of the epithelial barrier whilst ACY-1083 blocked this effect and even decreased permeability in the absence of challenge. TNF was also shown to increase production of cytokines and mucins, with ACY-1083 reducing the effect. We observed that COPD-relevant stimulations created damage to the epithelium as seen on immunohistochemistry sections and that treatment with ACY-1083 maintained an intact cell layer and preserved mucociliary function. Interestingly, there was no direct effect on ciliary beat frequency or tight junction proteins indicating other mechanisms for the protected epithelium. 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subjects Analysis
Beat frequencies
Biology and Life Sciences
Cell culture
Cell cycle
Chronic obstructive pulmonary disease
Cigarette smoke
Cilia
Cilia beat frequency
Cytokines
Damage
Diagnosis
Epithelium
Genetic aspects
Histone deacetylase
Immunohistochemistry
Inflammation
Inhibitors
Lung diseases, Obstructive
Lungs
Medicine and Health Sciences
Mesenchyme
Mucin
Mucins
Oxidative stress
Permeability
Physical Sciences
Proteins
Recovery of function
Research and Analysis Methods
Respiratory diseases
Respiratory tract
Respiratory tract diseases
Selectivity
Social Sciences
Structure-function relationships
Tumor necrosis factor
title HDAC6 inhibitor ACY-1083 shows lung epithelial protective features in COPD
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