Rationale: The mechanisms of airway hyper-responsiveness are only partially understood and the contribution of airway remodelling is unknown. Airway remodelling can be assessed by measuring airway distensibility, which is reduced in asthma, even when lung function is normal. We hypothesised that airway remodelling contributes to airway hyper-responsiveness in asthma, independent of steroid-responsive airway inflammation.
Objectives: To determine the relationship between airway distensibility and airway responsiveness at baseline and after 12 weeks of inhaled corticosteroid therapy in a group of asthmatics with airway hyper-responsiveness.
Methods: Nineteen doctor-diagnosed asthmatics had airway distensibility measured as the slope of the relationship between conductance and lung volume by the forced oscillation technique. Lung function, exhaled nitric oxide and methacholine challenge were also measured. Subjects had inhaled corticosteroid therapy for 12 weeks after which all measurements were repeated.
Results: At baseline, airway distensibility (mean, 95%CI) was 0.19(0.14-0.23) cm H(2)O(-1)s(-1), exhaled nitric oxide was 13.1(10.3-16.6)ppb and airway distensibility correlated with eNO (p=0.04) and disease duration (p=0.02) but not with airway responsiveness (p=0.46), FEV(1) (p=0.09) or age (p=0.23). After treatment, exhaled nitric oxide decreased (p=0.0002), FEV(1) improved (p=0.0001), airway responsiveness improved (p=0.0002), and there was a small improvement in airway distensibility but it did not normalise (p=0.05). Airway distensibility was not correlated with either exhaled nitric oxide (p=0.49) or airway responsiveness (p=0.20).
Conclusions: Uncontrolled airway inflammation causes a small decrease in the distensibility of the airways of asthmatics with airway hyper-responsiveness. The lack of association between airway responsiveness and airway distensibility, both before and after 12 weeks ICS treatment, suggests that airway remodelling does not contribute to airway hyper-responsiveness in asthma.
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http://dx.doi.org/10.1016/j.rmed.2011.07.010 | DOI Listing |
Front Physiol
December 2024
Department of Medical Physics and Medical Informatics, University of Szeged, Szeged, Hungary.
Introduction: Cerebral ischemia leads to multiple organ dysfunctions, with the lungs among the most severely affected. Although adverse pulmonary consequences contribute significantly to reduced life expectancy after stroke, the impact of global or focal cerebral ischemia on respiratory mechanical parameters remains poorly understood.
Methods: Rats were randomly assigned to undergo surgery to induce permanent global cerebral ischemia (2VO) or focal cerebral ischemia (MCAO), or to receive a sham operation (SHAM).
S Afr Med J
October 2024
Department of Internal Medicine, Tygerberg Academic Hospital, Faculty of Medicine and Health Sciences, Stellenbosch University, Cape Town, South Africa.
Ann Thorac Surg
October 2024
Department of Thoracic Surgery, Sant'Andrea Hospital, Sapienza University, Rome, Italy.
Background: Resection and reconstruction of the carina infiltrated by non-small cell lung cancer (NSCLC) or an airway tumor is a technically demanding operation allowing oncologic radical treatment. Hereby we report the results of a 20-year experience from a high-volume center.
Methods: Carinal resection was performed in 41 patients for NSCLC (n = 32) or primary airway tumor (n = 9).
Crit Care
October 2024
Department of Biomedical Engineering, Tulane University, New Orleans, LA, USA.
Turk J Med Sci
September 2024
Division of Interventional Pulmonology, Department of Pulmonology, Yedikule Chest Diseases and Thoracic SurgeryEducation and Research Hospital, University of Health Sciences, İstanbul, Turkiye.
Background/aim: Lung transplantation is the treatment of last resort for many chronic lung diseases. Airway complications (AC) following lung transplantation, such as bronchial stenosis, dehiscence, malacia, and fistula, account for frequent hospital admissions, additional treatment costs, decreased quality of life, and reduced survival rates. Beyond surgical and medical preventive efforts, interventional bronchoscopy (IB) can be used in the management of these complications.
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