Background:The effects of asthma, chronic obstructive pulmonary disease (COPD), or asthma-COPD overlap (ACO) on coronavirus disease 2019 (COVID-19) remain unclear.Objective:We aimed to investigate the effects of chronic obstructive airway diseases such as asthma, COPD, and ACO on COVID-19.Methods:In total, 5625 hospitalized patients with COVID-19 were divided into asthma, COPD, ACO, and control groups. A multivariate logistic regression analysis was performed to identify factors affecting the COVID-19 mortality rate. To find out whether chronic obstructive airway diseases such as asthma, COPD, and ACO affect COVID-19 mortality, 1:4 matching was performed, except for the ACO group alone due to a small number of patients.Results:The mortality rates of asthma, COPD, and ACO groups were about 2.3, 4.8, and 5.5 times higher than that of the control group, respectively. Although not statistically significant, the survival probability tended to decrease (asthma, COPD, and combined groups of asthma and ACO, hazard ratio [HR]: 1.84, 1.31, and 1.89, respectively). The survival probability of the combined groups of COPD, ACO, and asthma and the combined groups of COPD and ACO was significantly lower than that of the matched control group (HR: 3.00 and 1.99, respectively).Conclusion:Compared to patients with COVID-19 without chronic obstructive airway disease, patients with these comorbidities are more likely to require oxygen and mechanical ventilators and have a higher mortality rate, which can be considered when classifying and monitoring patients in the era of COVID-19. Therefore, further studies are needed to evaluate the effect of chronic obstructive airway disease, especially ACO, on COVID-19 mortality.
BACKGROUND:Targeted therapies have broadened the available treatment options for patients with severe eosinophilic asthma (SEA). However, differences in the magnitude of treatment responses among patients indicate the presence of various underlying pathophysiological processes and patient subgroups.OBJECTIVES:We aimed to describe the characteristics of SEA and identify its patient subgroups.METHODS:Clinical data from the Cohort for Reality and Evolution of Adult Asthma in Korea were analyzed. Cluster analysis was performed among those with SEA using 5 variables, namely, prebronchodilator forced expiratory volume in 1 s, body mass index, age at symptom onset, smoking amount, and blood eosinophil counts.RESULTS:Patients with SEA showed prevalent sensitization to aeroallergens, decreased lung function, and poor asthma control status. Cluster analysis revealed 3 distinctive subgroups among patients with SEA. Cluster 1 (n = 177) consisted of patients reporting the lowest blood eosinophils (median, 346.8 cells/μL) and modest severe asthma with preserved lung function during the 12-month treatment period. Cluster 2 (n = 42) predominantly included smoking males with severe persistent airway obstruction and moderate eosinophilia (median, 451.8 cells/μL). Lastly, cluster 3 (n = 95) included patients with the most severe asthma, the highest eosinophil levels (median, 817.5 cells/μL), and good treatment response in terms of improved lung function and control status.CONCLUSIONS:Three subgroups were identified in SEA through the cluster analysis. The distinctive features of each cluster may help physicians predict patients who will respond to biologics with greater magnitude of clinical improvement. Further research regarding the underlying pathophysiology and clinical importance of each subgroup is warranted.
Background Although inhaled corticosteroids (ICSs) are the recommended first-line therapy for asthma, determining whether to continue or discontinue ICS treatment in patients with mild asthma remains challenging for clinicians. Several studies have revealed that patients with mild-persistent asthma maintained a well-controlled state after ICS withdrawal. However, the long-term outcomes of ICS withdrawal have not yet been determined. Objective To determine the possible clinical outcomes of the discontinuation of ICS in patients with well-controlled mild asthma. Methods We investigated the clinical outcomes of discontinuing ICSs in patients with well-controlled mild asthma and compared the time to loss of control (LOC) between patients who stopped ICS treatment (ICS withdrawal group, IWG) and those who continued treatment for 3 years (continuous ICS group, CIG). Results A significant difference in the time to LOC was observed between the IWG and CIG (hazard ratio, 2.56; 95% confidence interval, 1.52-4.33; P < .001). Increasing fractional exhaled nitric oxide levels (P = 0.008) and sputum eosinophil counts (%) (P = 0.015) revealed a weak but significant association with LOC risk in the CIG. The sputum eosinophil counts (P = 0.039) and serum total immunoglobulin E levels (P = 0.014) were significantly higher in the LOC group than in the non-LOC group of the CIG. Conclusion Our results suggest that the maintenance of ICS treatment may help keep patients’ asthma under control. Furthermore, patients with LOC had significantly higher sputum eosinophil counts in the CIG than those in the non-LOC group. Therefore, continuous ICS use by patients with mild, well-controlled asthma could be associated with good clinical outcomes. Trial Registration ClinicalTrials.gov Identifier: KCT0002234.
BACKGROUND:Fibrosis in severe asthma often leads to irreversible organ dysfunction. However, the mechanism that regulates fibrosis remains poorly understood. Interleukin (IL)-32 plays a role in several chronic inflammatory diseases, including severe asthma. In this study, we investigated whether IL-32 is involved in fibrosis progression in the lungs.METHODS:Murine models of chronic airway inflammation induced by ovalbumin and Aspergillus melleus protease and bleomycin-induced pulmonary fibrosis were employed. We evaluated the degree of tissue fibrosis after treatment with recombinant IL-32γ (rIL-32γ). Expression of fibronectin and α-smooth muscle actin (α-SMA) was examined and the transforming growth factor (TGF)-β-related signaling pathways was evaluated in activated human lung fibroblasts (MRC-5 cells) treated with rIL-32γ.RESULTS:rIL-32γ significantly attenuated collagen deposition and α-SMA production in both mouse models. rIL-32γ inhibited the production of fibronectin and α-SMA in MRC-5 cells stimulated with TGF-β. Additionally, rIL-32γ suppressed activation of the integrin-FAK-paxillin signaling axis but had no effect on the Smad and non-Smad signaling pathways. rIL-32γ localized outside of MRC-5 cells and inhibited the interaction between integrins and the extracellular matrix without directly binding to intracellular FAK and paxillin.CONCLUSIONS:These results demonstrate that IL-32γ has anti-fibrotic effects and is a novel target for preventing fibrosis.
Purpose: The prevalence and burden of asthma is increasing worldwide. In this study, we analyzed 3 different Korean national health survey datasets to determine the general features of adult asthma in Korea and to obtain basic information that would support future strategies for better management of adult asthma. Methods: The surveys used in this study included the Korea National Health and Nutrition Examination Survey (KNHANES), Korea Community Health Survey (KCHS) and National Health Insurance Service-National Sample Cohort (NHIS-NSC). We investigated annual asthma prevalence, evaluating the rate and risk factors of asthma exacerbation by age and sex, and clinical data of 1,832 patients with asthma who were registered in the Cohort for Reality and Evolution of Adult Asthma in Korea (COREA) were analyzed to elucidate risk factors for asthma exacerbation. We also analyzed another asthma cohort and added it as replication data. Results: In the KNHANES database, annual asthma prevalence rates varied from 1.2% to 3.1%. In the KCHS database, overall prevalence increased, with significant regional differences (1.6%-2.1%). The NHIS-NSC indicated a gradual increase in annual asthma prevalence from 4.5% to 6.2%. Interestingly, all 3 surveys indicated the highest prevalence of asthma among elderly women. In addition, elderly women with asthma had a significantly higher risk of asthma exacerbation (odds ratio [DR], 1.87; 95% confidence interval [CI], 1.19-2.93; P = 0.006). Approximately 11% of patients were classified as having severe asthma. An asthma cohort analysis identified female sex, low baseline pulmonary function, longer treatment duration, high variability in pulmonary function and significant changes in Asthma Control Test scores as risk factors for asthma exacerbation. Conclusions: The prevalence of asthma in Korea is consistently high among elderly and female populations. These results should lay the foundation for strategies for effective asthma prevention and management; elderly female patients with asthma should receive particular attention.
Background The sputum inflammatory cell profile is an important indicator for classifying asthma phenotypes. Objective To investigate if sputum inflammatory cell profile remains stable and there are different characteristics between groups that show different profile over time in stable asthmatic patients. Methods A total of 149 asthmatic patients, who were clinically stable at the time of sputum examination and had undergone sputum analysis twice, were subjected to a detailed review. Eosinophilic inflammation was diagnosed when the proportion of the sputum eosinophils was >3%. We divided the patients into 4 groups according to the transition patterns of their sputum profiles: group 1, persistent eosinophilia; group 2, eosinophilic to noneosinophilic; group 3, noneosinophilic to eosinophilic; and group 4, persistent noneosinophilia. The results of the pulmonary function tests and other clinical parameters were compared between these 4 groups. Results Thirty-four of the initially eosinophilic asthmatic patients (39.5%; 34 of 86 patients) demonstrated noneosinophilic airway inflammation at their second sputum examination, and 24 of the initially noneosinophilic patients (38.1%; 24 of 63 patients) demonstrated eosinophilic airway inflammation at follow-up. Various clinical parameters, except the blood eosinophil count, demonstrated no significant differences between the eosinophilic and noneosinophilic asthmatic patients or among the 4 groups. Conclusion A substantial proportion of asthmatic patients who demonstrate a certain sputum inflammatory cell profile at the initial examination demonstrated profile transition in clinically stable settings over time. The clinical significance of using induced sputum analysis to phenotype stable asthmatic patients requires further evaluation.
The prevalence of asthma is increasing worldwide, and its rate of occurrence is higher in females. It is crucial to conduct national health surveys that gather the data for prevention and management of asthma, but these studies are insufficiently carried in Korea. In this study, we investigated the prevalence of asthma in Korean general population and analyzed the characteristics of disease thereof. In addition, the major risk factor for acute exacerbation in asthmatics was analyzed using asthma cohort. For studying the general population group, we used the data from Korea National Health and Nutrition Examination Survey (KNHANES) and National Health Insurance Service-National Sample Cohort (NHIS-NSC). We also analyzed clinical data in the COhort for Reality and Evolution of Adult Asthma in Korea (COREA, n=1832) in order to elucidate the risk factors of acute exacerbation. Our results revealed that the prevalence of asthma in Korea was increased to about 6.23% in 2012 from about 4.51% in 2002. All throughout 1998 to 2013, the prevalence of asthma in women was consistently higher than that of men, and the prevalence of asthma in elderly people over 65 years of age was higher than that of people under 65 years of age. The risk factors for acute exacerbations in asthmatics were female, low FEV1, and significant change in FEV1 and ACT score during 1-year follow-up. In particular, the elderly population and females had a higher risk of exacerbation according to baseline FEV1. The prevalence of asthma in Korea is steadily increasing and is consistently higher in elderly and females, with elderly asthmatic women carrying a significantly higher risk of exacerbation.
Immediate-type hypersensitivity responses to systemic corticosteroids are rare despite their widespread use. It is still controversial whether the responses rarely occur or are underdiagnosed in clinical settings. Many cases probably remain underdiagnosed because the symptoms often mimic symptoms of underlying diseases. This case report describes a 73-year-old man who had immediate hypersensitivity reactions after intravenous administration of hydrocortisone, which was primarily intended to prevent hypersensitivity reactions to contrast media. Whole body rash with pruritus developed shortly after the steroid injection. Since the patient already experienced rash and itching sense after contrast media and antihistamine injection, we conducted skin testing to figure out which drug triggered the hypersensitivity reactions. Intradermal skin tests revealed a positive response to hydrocortisone sodium succinate, which suggested his hypersensitivity reactions were developed by hydrocortisone. Being a common therapy for allergic reaction, corticosteroids themselves are rarely suspected of causing hypersensitivity reactions. Considering there is no typical symptom or standard diagnostic test, awareness of corticosteroid hypersensitivity reactions is of importance to make the diagnosis.
Recruitment and activation of dendritic cells (DCs) in the lungs are critical for Th2 responses in asthma, and CCL20 secreted from bronchial epithelial cells (BECs) is known to influence the recruitment of DCs. Because asthma is a disease that is closely associated with oxidative stress, we hypothesized that clusterin, an oxidative stress regulatory molecule, may have a role in the development of allergic airway inflammation. The aim of this study was to examine whether clusterin regulates CCL20 production from the BECs and the subsequent DC recruitment in the lungs. To verify the idea, clusterin knockout (Clu(-/-)), clusterin heterogeneous (Clu(+/-)), and wild-type mice were exposed intranasally to house dust mite (HDM) extract to induce allergic airway inflammation. We found that the total number of immune cells in bronchoalveolar lavage fluid and the lung was increased in Clu(-/-) and Clu(+/-) mice. Of these immune cells, inflammatory DCs (CD11b(+)CD11c(+)) and Ly6C(high) monocyte populations in the lung were significantly increased, which was accompanied by increased levels of various chemokines, including CCL20 in bronchoalveolar lavage fluid, and increased oxidative stress markers in the lung. Moreover, HDM-stimulated human BECs with either up- or downregulated clusterin expression showed that CCL20 secretion was negatively associated with clusterin expression. Interestingly, clusterin also reduced the level of intracellular reactive oxygen species, which is related to induction of CCL20 expression after HDM stimulation. Thus, the antioxidant property of clusterin is suggested to regulate the expression of CCL20 in BECs and the subsequent recruitment of inflammatory DCs in the airway.
Background: Progranulin, a protein secreted from the airway epithelium, is known to attenuate the downstream cascade of neutrophilic inflammation in particular. We hypothesized that progranulin may have a role in inflammatory regulation in asthma.Objective: To investigate the association between serum progranulin levels and various clinical features in patients with asthma.Methods: Serum samples and clinical data of 475 patients with asthma and 35 healthy controls at a tertiary referral hospital and its affiliated health promotion center were collected. Serum progranulin levels were compared between patients with asthma and healthy controls and then were compared within the patients with asthma in terms of pulmonary function and measures of inflammatory status. Univariate and multi-variate analyses were performed to identify factors associated with severity of asthma.Results: Serum progranulin levels were significantly lower in the asthma group than in healthy group and were positively correlated with prebronchodilator forced expiratory volume in 1 second predicted within patients with asthma. We found a negative correlation between serum progranulin levels and blood neutrophil counts. Multivariate analysis revealed that higher serum progranulin levels were associated with a lower risk of severe asthma (odds ratio, 0.888; 95% confidence interval, 0.846-0.932; P < .001) after adjustment for other variables, such as age, sex, smoking status, blood neutrophil count, and current use of systemic corticosteroids.Conclusion: Although the exact mechanism of the anti- inflammatory action of progranulin remains unknown, we suggest that serum progranulin may be an indicator of severe asthma with airflow limitation. Future studies with comprehensive airway sampling strategies are warranted to clarify its role, particularly in neutrophilic asthma. (C) 2016 American College of Allergy, Asthma & Immunology. Published by Elsevier Inc. All rights reserved.
Background: Progranulin is a pleiotrophic protein known to function in various physiological and disease processes. Progranulin concentration negatively correlated with mediators of neutrophilic inflammation in COPD and it was implicated to have an anti-infl ammatory role. However, it has not been studied in asthma and specifi cally through what mechanistic pathway progranulin exerts its anti-infl ammatory effect. As a pilot study, we aimed to identify the presence of progranulin in asthma in order to relate with mechanism study in the future, which is another typical chronic airway infl ammatory disease. Methods: Progranulin levels in serum were measured by ELISA in asthma patients (n=475) and normal subjects (n=43) and was compared with pulmonary function and other various clinical parameters. Results: Progranulin concentration was significantly lower in asthmatics than in healthy subjects (25.51±6.72 vs 33.92±10.99, p<0.001). Progranulin level was compared within asthma patients according to their degree of airway obstruction, and the level showed positive correlation with FEV1% predicted. (R=0.400, p<0.001) Patients diagnosed with asthma/COPD overlap syndrome(n=39) showed lower progranulin level (21.88±5.96 vs 25.84±6.70, p<0.001) and poor lung function (FEV1% predicted, 57.00±17.63 vs 77.20±18.81, p<0.001) compared with patients with asthma(n=436) when subgroup analysis was performed. Conclusions: The results demonstrate progranulin concentration is lower in asthmatics and the level correlates with the degree of airway obstruction. Progranulin may be associated with pathogenesis of severe asthma with fi xed airway obstruction.
Asthma is a chronic airway inflammatory disease typically associated with T helper cell type 2 (Th2) cytokines. IL-32, first reported as an inducer of tumor necrosis factor (TNF)-α, is an inflammatory cytokine involved in various autoinflammatory diseases, viral infection, and cancer-related inflammation. However, the role of IL-32γ in asthma has not been clearly elucidated. In this study, the levels of IL-32γ in sputum from patients with asthma were measured by ELISA, and IL-32γ function was investigated in murine models of asthma with human IL-32γ-overexpressed transgenic (IL-32γ TG) mice. The therapeutic effect of recombinant IL-32γ (rIL-32γ) on allergic inflammation was also evaluated through bronchoalveolar lavage fluid analysis and histopathologic examinations. Sputum IL-32γ levels from patients with asthma were lower than those from healthy control subjects. In an acute mouse model of asthma, IL-32γ TG mice exhibited significantly reduced airway inflammation compared with that in wild-type mice. The production of Th1 cytokines, such as TNF-α and IFN-γ, and Th2 cytokines, such as IL-4, IL-5, and IL-13, was decreased in the lungs of IL-32γTG mice. On the contrary, the expression of IL-10 and IL-10-producing CD11b(+) monocytic cells was significantly increased in the lungs of ovalbumin-sensitized IL-32γ TG mice. In addition, rIL-32γ treatment revealed a suppressive effect on the airway inflammation in a chronic mouse model of asthma. The results of this study suggest that IL-32γ may have a preventive role in the development of allergic airway inflammation and could be a potential novel therapeutic target for bronchial asthma.
AIMS:Oxidative stress is involved in the pathogenesis of asthma, and peroxiredoxins (PRDX) may be critical in controlling intracellular oxidative stress. The aim of this study was to evaluate expressions of PRDX and their hyperoxidized forms in asthmatic individuals.MAIN METHODS:The levels of expression of PRDX1, PRDX2, PRDX3, and PRDX6 and their hyperoxidized forms (PRDX-SO(3)) were measured in PBMCs from asthma patients and control subjects. In addition, cells from these subjects were treated with hydrogen peroxide (H(2)O(2)) and their intracellular concentrations of reactive oxygen species (ROS) were measured.KEY FINDINGS:The ratios of hyperoxidized to total PRDX (PRDX-SO(3/)PRDX) in PBMCs were significantly higher in asthma patients than in normal subjects and were correlated with disease severity, with the highest ratio seen in patients with severe asthma. Furthermore, H(2)O(2) treatment of PBMCs, particularly lymphocytes, increased intracellular ROS concentrations with greater and more persistent increases observed in cells from asthmatic than from control subjects.SIGNIFICANCE:Hyperoxidation of PRDX may serve as a biomarker of asthma severity and may predict enhanced susceptibility to oxidative stress load in PBMCs of asthmatics.
Chlamydophila pneumoniae infection has been suggested to be associated with severe asthma characterized by persistent airway limitation, which may be related to airway remodelling. We investigated whether C. pneumoniae infection affected the secretion of metalloproteinase-9 (MMP9) and tissue inhibitor metalloproteinase-1 (TIMP1), and altered the responsiveness of inflammatory cells to corticosteroids. Human peripheral blood mononuclear cells (PBMCs) were cultured in vitro in the presence or absence of C. pneumoniae. Secretion of both MMP9 and TIMP1 was strongly suppressed by dexamethasone treatment in uninfected cells. MMP9 secretion was also significantly inhibited by dexamethasone in C. pneumoniae-infected cells, but TIMP1 secretion was not; hence the MMP9 to TIMP1 ratio decreased. Interestingly, expression of human glucocorticoid receptor β, which is believed to confer resistance to corticosteroids, was enhanced by dexamethasone treatment in C. pneumoniae-infected PBMCs. We conclude that C. pneumoniae infection may promote airway remodelling by decreasing the ratio of MMP9 to TIMP1 secreted by inflammatory cells, and by altering cellular responsiveness to corticosteroids.