Ventilator-induced Lung Injury Is Modulated by the Circadian Clock.
Matthias FeltenSebastian FerencikLuiz Gustavo Teixeira AlvesEleftheria LetsiouJasmin LienauHolger C Müller-RedetzkyAlina Katharina LangenhagenAnne VoßKristina DietertOlivia KershawAchim D GruberLaura MichalickWolfgang M KueblerBharath AnanthasubramaniamBert MaierNina Henriette UhlenhautAchim KramerMartin WitzenrathPublished in: American journal of respiratory and critical care medicine (2023)
Rationale: Mechanical ventilation (MV) is life-saving but may evoke ventilator-induced lung injury (VILI). Objectives: To explore how the circadian clock modulates severity of murine VILI via the core clock component BMAL1 (basic helix-loop-helix ARNT like 1) in myeloid cells. Methods: Myeloid cell BMAL1-deficient ( LysM (lysozyme 2 promoter/enhancer driving cre recombinase expression) Bmal1-/- ) or wild-type control ( LysM Bmal1+/+ ) mice were subjected to 4 hours MV (34 ml/kg body weight) to induce lung injury. Ventilation was initiated at dawn or dusk or in complete darkness (circadian time [CT] 0 or CT12) to determine diurnal and circadian effects. Lung injury was quantified by lung function, pulmonary permeability, blood gas analysis, neutrophil recruitment, inflammatory markers, and histology. Neutrophil activation and oxidative burst were analyzed ex vivo . Measurements and Main Results: In diurnal experiments, mice ventilated at dawn exhibited higher permeability and neutrophil recruitment compared with dusk. Experiments at CT showed deterioration of pulmonary function, worsening of oxygenation, and increased mortality at CT0 compared with CT12. Wild-type neutrophils isolated at dawn showed higher activation and reactive oxygen species production compared with dusk, whereas these day-night differences were dampened in LysM Bmal1-/- neutrophils. In LysM Bmal1-/- mice, circadian variations in VILI severity were dampened and VILI-induced mortality at CT0 was reduced compared with LysM Bmal1+/+ mice. Conclusions: Inflammatory response and lung barrier dysfunction upon MV exhibit diurnal variations, regulated by the circadian clock. LysM Bmal1-/- mice are less susceptible to ventilation-induced pathology and lack circadian variation of severity compared with LysM Bmal1+/+ mice. Our data suggest that the internal clock in myeloid cells is an important modulator of VILI.
Keyphrases
- wild type
- mechanical ventilation
- high fat diet induced
- computed tomography
- image quality
- high glucose
- dual energy
- contrast enhanced
- acute respiratory distress syndrome
- lung function
- diabetic rats
- inflammatory response
- endothelial cells
- intensive care unit
- bone marrow
- reactive oxygen species
- dendritic cells
- clinical trial
- acute myeloid leukemia
- gene expression
- cardiovascular disease
- positron emission tomography
- chronic obstructive pulmonary disease
- magnetic resonance
- stem cells
- cardiovascular events
- cystic fibrosis
- transcription factor
- air pollution
- toll like receptor
- machine learning
- high frequency
- electronic health record
- depressive symptoms
- cell cycle arrest
- poor prognosis
- mesenchymal stem cells
- risk factors
- physical activity
- data analysis
- ionic liquid
- long non coding rna
- big data
- dna binding