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Modeling Paracrine Noncanonical Wnt Signaling In Vitro
Published on: December 10, 2021
Non-canonical WNT signalling in cardiovascular disease: mechanisms and therapeutic implications
Ioannis Akoumianakis1, Murray Polkinghorne1, Charalambos Antoniades2,3
1Division of Cardiovascular Medicine, Radcliffe Department of Medicine, University of Oxford, Oxford, UK.
Abstract:
WNT signalling comprises a diverse spectrum of receptor-mediated pathways activated by a large family of WNT ligands and influencing fundamental biological processes. WNT signalling includes the β-catenin canonical pathway and the non-canonical pathways, namely the planar cell polarity and the calcium-dependent pathways. Advances over the past decade have linked non-canonical WNT signalling with key mechanisms of atherosclerosis, including oxidative stress, endothelial dysfunction, macrophage activation and vascular smooth muscle cell phenotype regulation. In addition, non-canonical WNT signalling is involved in crucial aspects of myocardial biology, from fibrosis to hypertrophy and oxidative stress. Importantly, non-canonical WNT signalling activation has complex effects in adipose tissue in the context of obesity, thereby potentially linking metabolic and vascular diseases. Tissue-specific targeting of non-canonical WNT signalling might be associated with substantial risks of off-target tumorigenesis, challenging its therapeutic potential. However, novel technologies, such as monoclonal antibodies, recombinant decoy receptors, tissue-specific gene silencing with small interfering RNAs and gene editing with CRISPR-Cas9, might enable more efficient therapeutic targeting of WNT signalling in the cardiovascular system. In this Review, we summarize the components of non-canonical WNT signalling, their links with the main mechanisms of atherosclerosis, heart failure and arrhythmias, and the rationale for targeting individual components of non-canonical WNT signalling for the treatment of cardiovascular disease.
Insights
Non-canonical WNT signaling pathways influence cardiovascular diseases like atherosclerosis and heart failure. Novel technologies offer potential for targeted therapies, despite tumorigenesis risks.
Area of Science:
- Cardiovascular Biology
- Molecular Signaling
- Disease Mechanisms
Background:
- WNT signaling encompasses canonical and non-canonical pathways crucial for biological processes.
- Non-canonical WNT pathways are increasingly linked to atherosclerosis mechanisms.
- These pathways also impact myocardial biology and adipose tissue in obesity.
Purpose of the Study:
- To review non-canonical WNT signaling components.
- To explore their roles in cardiovascular diseases.
- To discuss therapeutic targeting strategies.
Main Methods:
- Literature review of non-canonical WNT signaling.
- Analysis of WNT's role in atherosclerosis, heart failure, and arrhythmias.
- Evaluation of emerging therapeutic technologies.
Main Results:
- Non-canonical WNT signaling affects oxidative stress, endothelial dysfunction, and vascular smooth muscle cells.
- It plays roles in cardiac fibrosis, hypertrophy, and oxidative stress.
- Complex effects in adipose tissue link metabolic and vascular health.
Conclusions:
- Non-canonical WNT signaling is implicated in cardiovascular pathology.
- Therapeutic targeting faces challenges due to tumorigenesis risks.
- Advanced technologies may enable safer, targeted cardiovascular WNT therapies.
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