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Published on: February 12, 2019
Refractory Lung Diseases: From Cellular Structures, Molecular Mechanisms to Therapeutic Strategies
Yiheng Qiu1, Xiangyu Dong1, Yi Zhu2
1Ministry of Education Key Laboratory of Diagnostic Medicine, and Department of Clinical Biochemistry School of Clinical Laboratory Medicine Chongqing Medical University Chongqing China.
Abstract:
Refractory lung diseases (RLDs) encompass a spectrum of progressive pulmonary disorders, including acute respiratory distress syndrome (ARDS), bronchopulmonary dysplasia (BPD), and idiopathic pulmonary fibrosis (IPF). These conditions are defined by poor responsiveness to current therapeutic interventions and pose substantial clinical challenges, primarily due to their high morbidity and mortality rates. This review synthesizes the current understanding of the molecular mechanisms underlying RLDs and explores promising therapeutic strategies. A core feature of RLD pathogenesis is the disruption of alveolar microenvironmental homeostasis, which triggers a bidirectional vicious cycle between structural damage and disease progression. This homeostatic collapse is driven by interconnected pathological networks-including oxidative stress coupled with mitochondrial dysfunction, inflammatory immune dysregulation, and mechanical stress-induced extracellular matrix (ECM) remodeling-all of which are elaborated in this review. Collectively, these pathological processes contribute to therapeutic resistance. Based on these mechanistic insights, potential therapeutic approaches are discussed, such as antioxidant therapies (e.g., the mitochondria-targeted antioxidant Mitoquinone mesylate [MitoQ]) and antifibrotic agents (e.g., pirfenidone, nintedanib, as well as emerging strategies targeting Wnt pathway modulation). Additionally, the critical significance of early diagnosis and personalized precision medicine is emphasized. Future research should focus on a deeper characterization of the dynamic alterations within the alveolar microenvironment under pathological conditions, with the aim of developing more precise diagnostic tools and targeted therapeutic strategies. Ultimately, the therapeutic goal for RLDs should shift from mere symptom management to achieving pathological reversal.
Insights
Refractory lung diseases (RLDs) involve progressive lung damage and resistance to treatment. Understanding molecular pathways like oxidative stress and inflammation is key to developing new therapies for conditions such as ARDS, BPD, and IPF.
Area of Science:
- Pulmonary Medicine
- Molecular Biology
- Pathogenesis of Lung Diseases
Background:
- Refractory lung diseases (RLDs), including ARDS, BPD, and IPF, are characterized by resistance to therapies and high mortality.
- Pathogenesis involves alveolar microenvironmental disruption, creating a cycle of structural damage and disease progression.
- Key pathological networks include oxidative stress, mitochondrial dysfunction, immune dysregulation, and ECM remodeling, contributing to therapeutic resistance.
Purpose of the Study:
- To review the molecular mechanisms underlying RLDs.
- To explore promising therapeutic strategies targeting these mechanisms.
- To emphasize early diagnosis and personalized medicine for RLDs.
Main Methods:
- Literature review synthesizing current understanding of RLD pathogenesis.
- Analysis of molecular pathways involved in RLD development.
- Discussion of current and emerging therapeutic interventions.
Main Results:
- RLD pathogenesis is driven by interconnected pathological networks disrupting alveolar homeostasis.
- Therapeutic resistance is linked to oxidative stress, mitochondrial dysfunction, inflammation, and ECM remodeling.
- Potential therapies include antioxidants (MitoQ), antifibrotics (pirfenidone, nintedanib), and Wnt pathway modulators.
Conclusions:
- Understanding RLD molecular mechanisms is crucial for effective treatment.
- Targeting specific pathways offers promise for RLD management.
- Future research should focus on precise diagnostics and targeted therapies for pathological reversal.
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