Jul 2026· American Journal of Respiratory and Critical Care Medicine· 0 citations
Medicine
TL;DR
This review proposes RDA as a conceptual framework for identifying ongoing, potentially modifiable disease processes in people receiving CFTR modulators and considers the implications of RDA for clinical research by identifying key evidence gaps and outlining a stepwise pathway for its definition and validation.
Abstract
The advent of CFTR modulators is fundamentally reshaping people with cystic fibrosis (pwCF) care and research. Despite unprecedented improvements in lung function and predicted survival, a substantial proportion of pwCF continue to exhibit residual disease activity (RDA) across multiple biological and clinical domains. Persistent abnormalities in CFTR function, mucus properties, mucociliary clearance, airway infection, inflammation and symptom burden indicate that CFTR modulation does not fully normalize airway physiology or eliminate the pathological processes underlying CF lung disease. This review proposes RDA as a conceptual framework for identifying ongoing, potentially modifiable disease processes in people receiving CFTR modulators. Candidate measures across complementary mechanistic and clinical domains are examined, and their potential multidimensional interpretation as a means of supporting more individualized monitoring and treatment decisions is discussed. We consider the implications of RDA for clinical research by identifying key evidence gaps, outlining a stepwise pathway for its definition and validation. We further explore the potential to inform sensitive endpoint selection, enrich study populations and guide the development of therapies targeting disease processes that persist despite CFTR modulation. As the CF population ages and disease trajectories evolve, care models and research priorities must move beyond conventional measures of disease severity alone. A better understanding and systematic evaluation of RDA may help align long-term clinical management and future trial design with the changing needs of people with CF, while ensuring that therapeutic advances translate into sustained health gains.
A summary of recent literature pertaining to CFTR modulators is provided to enhance the knowledge of the growing body of evidence guiding the next era of CF care, in which disease modification at the molecular level is increasingly achievable.
Dawn Selhorst, E. Stekolchik· Respiratory care· 0 citations
It is concluded that childhood CF is being transformed rather than solved, and that surveillance, nutritional and psychosocial frameworks developed in the pre-modulator era require deliberate re-evaluation rather than uncritical continuation.
S. Bittmann, E. Luchter, E. Moschüring-Alieva· Asian Journal of Pediatric R...· 0 citations
Sweat chloride concentrations are elevated in people with cystic fibrosis due to the absence or dysfunction of the cystic fibrosis transmembrane conductance regulator (CFTR) protein, an epithelial cell membrane ion channel. For many people with cystic fibrosis with responsive variants and drug access, treatment with CFTR modulators increases CFTR function, reduces sweat chloride concentrations, and improves lung health and quality of life. In clinical trials, average sweat chloride reduction is correlated with clinical efficacy across different modulators and study populations. Thus, for people with cystic fibrosis, larger reductions and lower absolute sweat chloride concentrations are often presumed to indicate greater clinical response and better prognosis. However, although true at the population level, at the individual level, a relationship between sweat chloride and clinical outcomes has not been definitively shown. This Personal View highlights how sweat chloride quantification informs our understanding of CFTR modulator therapeutic response while cautioning its ability to fully predict individual clinical response.
Edith T. Zemanick, S. Graeber, Carlo Castellani et al.· The Lancet Respiratory Medic...· 0 citations
Idiopathic pulmonary fibrosis (IPF) is a chronic, progressive fibrosing interstitial pneumonia characterized by declining lung function, severe dyspnea, and a poor prognosis. Although antifibrotic agents have improved outcomes in patients with IPF, important challenges remain in the diagnosis, monitoring, and long-term management of the disease. Since the publication of the first Korean clinical practice guideline for interstitial lung disease (ILD) in 2018, substantial advances in research have led to important changes in the clinical management of IPF. This updated guideline incorporates evidence published over the past five years and addresses key aspects of IPF, including epidemiology, pathogenesis, risk factors, clinical manifestations, diagnosis, treatment, comorbidities, prognosis, and acute exacerbations. In addition, key clinical questions (KQs) were developed through expert consensus, and systematic reviews and meta-analyses were conducted to reassess the effects of antifibrotic agents on lung function decline, mortality, and acute exacerbations in patients with IPF. These guidelines aim to standardize the clinical management of IPF, improve diagnostic accuracy, and promote the appropriate use of therapeutic strategies. They are intended for physicians, other healthcare professionals involved in the care of patients with IPF, and healthcare policymakers in Korea.
H. Choi, Hee-Young Yoon, S. Park et al.· Tuberculosis and Respiratory...· 0 citations
Chronic obstructive pulmonary disease (COPD) is a heterogeneous syndrome. Spirometry, while diagnostic, inadequately characterizes disease complexity. This review explores how thoracic imaging, particularly computed tomography and magnetic resonance imaging, may help identify specific pulmonary "treatable traits" that could inform future precision management approaches. We detail four core imaging phenotypes: emphysema, small airway disease, airway mucus plugs, and airway wall thickening. For each, we discuss validated and emerging quantitative biomarkers-such as the Parametric Response Map, total airway count, mucus plug score, Pi10, and PiSlope-that facilitate phenotypic stratification and prognostication. We further describe two distinct disease trajectories ("Tissue-Airway" and "Airway-Tissue") revealed by progression modeling. Critically, we discuss potential links between these imaging-defined traits to targeted therapeutic strategies, including ultra-fine particle inhalers for small airway disease, mucus clearance strategies, and CT-guided lung volume reduction for emphysema. Despite significant progress, challenges remain in standardizing measurements, validating clinical utility, and integrating imaging biomarkers into routine care. Future integration of artificial intelligence and multimodal imaging holds promise for advancing COPD management towards true personalized medicine.
Xingbo Wang, Yuhan Peng, Dan Wang· Respiratory Research· 0 citations
INTRODUCTION
Despite significant advances in precision medicine, managing severe asthma remains a major clinical challenge. Small airway dysfunction (SAD) is a crucial determinant of poor symptom control, airway remodeling, and frequent exacerbations. While conventional spirometry primarily assesses large airway mechanics, airway oscillometry (AO) provides a highly sensitive, effort-independent evaluation of peripheral resistance and reactance during normal breathing.
AREAS COVERED
This review synthesizes current evidence from major biomedical databases (PubMed, Embase, Scopus, and Web of Science; 2000-2026) regarding the physiological role of SAD across severe asthma phenotypes (eosinophilic vs. non-eosinophilic). Furthermore, it systematically evaluates the specific impact of targeted biological therapies (anti-IgE, anti-IL-5/IL-5 R, anti-IL-4/13 Rα, and anti-TSLP) on distal respiratory mechanics.
EXPERT OPINION
SAD represents a vital treatable trait in severe asthma. Biologics exert distinct physiological effects on peripheral parameters, with upstream modulators such as dupilumab and tezepelumab demonstrating superior efficacy in reversing distal mucus plugging and frequency-dependent resistance abnormalities. Incorporating AO into routine clinical algorithms alongside T2 inflammatory biomarkers is essential to refine endophenotyping, improve overall risk stratification, guide personalized biologic selection, and accurately monitor functional therapeutic responses in patients with severe refractory asthma.
Francesco Menzella, R. Chan, M. Cottini et al.· Expert Review of Respiratory...· 0 citations
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