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Targeting the renin-angiotensin system as novel therapeutic strategy for pulmonary diseases
Wan Shun Daniel Tan1, Wupeng Liao1, Shuo Zhou1
1Department of Pharmacology, Yong Loo Lin School of Medicine, National University Health System, 16 Medical Drive, Singapore 117600, Singapore.
Abstract:
The renin-angiotensin system (RAS) plays a major role in regulating electrolyte balance and blood pressure. RAS has also been implicated in the regulation of inflammation, proliferation and fibrosis in pulmonary diseases such as asthma, acute lung injury (ALI), chronic obstructive pulmonary disease (COPD), idiopathic pulmonary fibrosis (IPF) and pulmonary arterial hypertension (PAH). Current therapeutics suffer from some drawbacks like steroid resistance, limited efficacies and side effects. Novel intervention is definitely needed to offer optimal therapeutic strategy and clinical outcome. This review compiles and analyses recent investigations targeting RAS for the treatment of inflammatory lung diseases. Inhibition of the upstream angiotensin (Ang) I/Ang II/angiotensin receptor type 1 (AT1R) pathway and activation of the downstream angiotensin-converting enzyme 2 (ACE2)/Ang (1-7)/Mas receptor pathway are two feasible strategies demonstrating efficacies in various pulmonary disease models. More recent studies favor the development of targeting the downstream ACE2/Ang (1-7)/Mas receptor pathway, in which diminazene aceturate, an ACE2 activator, GSK2586881, a recombinant ACE2, and AV0991, a Mas receptor agonist, showed much potential for further development. As the pathogenesis of pulmonary diseases is so complex that RAS modulation may be used alone or in combination with existing drugs like corticosteroids, pirfenidone/nintedanib or endothelin receptor antagonists for different pulmonary diseases. Personalized medicine through genetic screening and phenotyping for angiotensinogen or ACE would aid treatment especially for non-responsive patients. This review serves to provide an update on the latest development in the field of RAS targeting for pulmonary diseases, and offer some insights into future direction.
Insights
Targeting the renin-angiotensin system (RAS) offers new hope for inflammatory lung diseases. Activating the ACE2/Ang (1-7)/Mas pathway shows promise, potentially improving treatments for conditions like asthma and COPD.
Area of Science:
- Pulmonary Medicine
- Cardiovascular Research
- Pharmacology
Background:
- The renin-angiotensin system (RAS) is crucial for blood pressure and electrolyte balance.
- RAS dysregulation contributes to inflammation, fibrosis, and proliferation in lung diseases like asthma, ALI, COPD, IPF, and PAH.
- Existing therapies for these conditions have limitations, including steroid resistance, efficacy issues, and side effects, necessitating novel interventions.
Purpose of the Study:
- To review and analyze recent research on targeting the RAS for treating inflammatory lung diseases.
- To evaluate the potential of inhibiting the upstream RAS pathway (Ang I/Ang II/AT1R) and activating the downstream pathway (ACE2/Ang (1-7)/Mas receptor).
- To provide insights into future therapeutic strategies and personalized medicine approaches for pulmonary diseases.
Main Methods:
- Compilation and analysis of recent scientific investigations.
- Evaluation of studies focusing on RAS pathway modulation.
- Assessment of novel therapeutic agents targeting specific RAS components.
Main Results:
- Both upstream RAS inhibition and downstream RAS activation show efficacy in pulmonary disease models.
- The downstream ACE2/Ang (1-7)/Mas receptor pathway is a favored target for development.
- Specific agents like diminazene aceturate, GSK2586881, and AV0991 demonstrate significant therapeutic potential.
- RAS modulation can be used as monotherapy or in combination with existing treatments.
Conclusions:
- Targeting the RAS, particularly the ACE2/Ang (1-7)/Mas pathway, represents a promising therapeutic strategy for inflammatory lung diseases.
- Combination therapies and personalized medicine approaches, including genetic screening, may optimize treatment outcomes.
- Further development of RAS-targeting agents is warranted for improved clinical management of pulmonary conditions.
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