International Journal of Molecular Sciences · 2022 · 13 citations · 33 references
AsthmaInflammatory Lung DiseaseAdvanced Lung DiseaseLung InflammationImmunologyCell DeathPathologyInflammationTobacco ControlNicotineFormer-smoker MiceSmoking Related Lung DiseasePulmonary FibrosisLung LesionsCell BiologyLung CancerPulmonary DiseasePersistent Lung InflammationMedicineMice Does
Once COPD is established, pulmonary lesions can only progress and smoking cessation by itself is not sufficient to switch off persistent lung inflammation. Similarly, in former-smoker mice, neutrophil inflammation persists and lung lesions undergo progressive deterioration. The molecular mechanisms underlying disease progression and the inefficiency of smoking cessation in quenching neutrophilic inflammation were studied in male C57 Bl/6 mice after 6 months of rest from smoking cessation. As compared with the mice that continued to smoke, the former-smoker mice showed reduced expression of histone deacetylases HDAC2 and SIRT1 and marked expression of p-p38 MAPK and p-Ser10. All these factors are involved in corticosteroid insensitivity and in perpetuating inflammation. Former-smoker mice do show persistent lung neutrophilic influx and a high number of macrophages which account for the intense staining in the alveolar structures of neutrophil elastase and MMP-9 (capable of destroying lung scaffolding) and 8-OHdG (marker of oxidative stress). "Alarmins" released from necrotic cells together with these factors can sustain and perpetuate inflammation after smoking cessation. Several factors and mechanisms all together are involved in sustaining and perpetuating inflammation in former-smoker mice. This study suggests that a better control of COPD in humans may be achieved by precise targeting of the various molecular mechanisms associated with different phenotypes of disease by using a cocktail of drug active toward specific molecules.
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The natural history of chronic airflow obstruction.
C. M. Fletcher, Richárd Pető · BMJ · 1977 · 2.4K citations · Full text
Advanced Lung Disease, Tobacco Control, Respiratory Toxicology +16
Jane Winer, Christopher Kwang S. Jung, Irene Shackel et al. · Analytical Biochemistry · 1999 · 1.4K citations
Cardiac Myocytesin Vitro, Transcriptional Regulation, Systems Biology +7