Manuscripts and Publications
Filters: Author is Alexis, Neil E [Clear All Filters]
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2015.
Airway Mucin Concentration as a Marker of Chronic Bronchitis.. N Engl J Med. 377(10):911-922.
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2017. Association of sputum and blood eosinophil concentrations with clinical measures of COPD severity: an analysis of the SPIROMICS cohort.. Lancet Respir Med. 5(12):956-967.
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2017. Subpopulations and Intermediate Outcomes in COPD (SPIROMICS) Air Pollution Study Design. BJM Open Respiratory Research. 4(1)
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2017. Alveolar eosinophilia in current smokers with chronic obstructive pulmonary disease in the SPIROMICS cohort.. J Allergy Clin Immunol. 141(1):429-432.
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2018. .
2019.
Association of Long-term Ambient Ozone Exposure With Respiratory Morbidity in Smokers.. JAMA Intern Med. 180(1):106-115.
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2020. Airway mucin MUC5AC and MUC5B concentrations and the initiation and progression of chronic obstructive pulmonary disease: an analysis of the SPIROMICS cohort.. Lancet Respir Med. 9(11):1241-1254.
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2021. Lung microbiota associations with clinical features of COPD in the SPIROMICS cohort.. NPJ Biofilms Microbiomes. 7(1):14.
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2021. Ambient ozone effects on respiratory outcomes among smokers modified by neighborhood poverty: An analysis of SPIROMICS AIR.. Sci Total Environ. 829:154694.
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2022. Black carbon content in airway macrophages is associated with increased severe exacerbations and worse COPD morbidity in SPIROMICS.. Respir Res. 23(1):310.
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2022. Identification of Sputum Biomarkers Predictive of Pulmonary Exacerbations in COPD.. Chest. 161(5):1239-1249.
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2022. A blood and bronchoalveolar lavage protein signature of rapid FEV decline in smoking-associated COPD.. Sci Rep. 13(1):8228.
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2023. Clinical Implications of Low Absolute Blood Eosinophil Count in the SPIROMICS COPD Cohort.. Chest. 163(3):515-528.
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2023. Prolonged, physiologically relevant nicotine concentrations in the airways of smokers.. Am J Physiol Lung Cell Mol Physiol. 324(1):L32-L37.
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2023.