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101. Tiotropium bromide step-up therapy for adults with uncontrolled asthma

102. Baseline sputum eosinophil + neutrophil subgroups’ clinical characteristics and longitudinal trajectories for NHLBI Severe Asthma Research Program (SARP 3) cohort

103. Additional file 4 of Genetic and non-genetic factors affecting the expression of COVID-19-relevant genes in the large airway epithelium

104. Additional file 3 of Genetic and non-genetic factors affecting the expression of COVID-19-relevant genes in the large airway epithelium

105. Additional file 1 of Genetic and non-genetic factors affecting the expression of COVID-19-relevant genes in the large airway epithelium

106. Stopping versus continuing long-term mepolizumab treatment in severe eosinophilic asthma (COMET study)

107. Urinary total conjugated 3-bromotyrosine, asthma severity, and exacerbation risk.

108. Differing perceptions of asthma control and treatment effectiveness by patients with severe asthma and treating subspecialists in the United States.

109. Characterization of the severe asthma phenotype by the National Heart, Lung, and Blood Institute's Severe Asthma Research Program

112. Control of airway inflammation maintained at a lower steroid dose with 100/50 μg of fluticasone propionate/salmeterol

114. An Association between l-Arginine/Asymmetric Dimethyl Arginine Balance, Obesity, and the Age of Asthma Onset Phenotype

115. Severe Asthma: Lessons Learned from the National Heart, Lung, and Blood Institute Severe Asthma Research Program

116. Continued long-term mepolizumab in severe eosinophilic asthma protects from asthma worsening versus stopping mepolizumab: COMET trial

120. Associations Among 25-Hydroxyvitamin D Levels, Lung Function, and Exacerbation Outcomes in COPD

122. Identification of Asthma Phenotypes Using Cluster Analysis in the Severe Asthma Research Program

127. The CHRONICLE Study of US Adults with Subspecialist-Treated Severe Asthma: Objectives, Design, and Initial Results

132. Quantitative CT Characteristics of Cluster Phenotypes in the Severe Asthma Research Program Cohorts

136. HSD3B1 genotype identifies glucocorticoid responsiveness in severe asthma

137. Investigation of the relationship between IL-6 and type 2 biomarkers in patients with severe asthma

138. BAL Cell Gene Expression in Severe Asthma Reveals Mechanisms of Severe Disease and Influences of Medications

139. Reply

141. Safety and Tolerability of Comprehensive Research Bronchoscopy in Chronic Obstructive Pulmonary Disease. Results from the SPIROMICS Bronchoscopy Substudy

142. Aspirin Use and Respiratory Morbidity in COPD

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146. PrecISE: Precision Medicine in Severe Asthma: An adaptive platform trial with biomarker ascertainment.

147. Mixed Sputum Granulocyte Longitudinal Impact on Lung Function in the Severe Asthma Research Program.

148. Responsiveness to Parenteral Corticosteroids and Lung Function Trajectory in Adults with Moderate-to-Severe Asthma.

149. Genetic analyses identify GSDMB associated with asthma severity, exacerbations, and antiviral pathways.

150. Alignment of Inhaled Chronic Obstructive Pulmonary Disease Therapies with Published Strategies. Analysis of the Global Initiative for Chronic Obstructive Lung Disease Recommendations in SPIROMICS

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