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Author Spotlight: Exploring the Role of Ion Channels in Cancer: Characterization and Potential Treatment Approaches
Published on: June 16, 2023
Cholinergic receptors as target for cancer therapy in a systems medicine perspective
P Russo, A Del Bufalo, M Milic
1Laboratory of Systems Approaches and Non Communicable Diseases, IRCCS "San Raffaele Pisana", Via di Val Cannuta, 247, I-00166 Rome, Italy. patrizia_russo@hotmail.it.
Abstract:
Epithelial cells not innervated by cholinergic neurons express nicotinic and muscarinic acetylcholine (ACh) receptors (nAChR, mAChR). nAChR and mAChR are components of the auto-/paracrine-regulatory loop of non-neuronal ACh release. The cholinergic control of non-neuronal cells may be mediated by different effects (synergistic, additive, or reciprocal) triggered by these receptors. The ionic events (Ca(+2) influx) are generated by the ACh-opening of nAChR channels, while the metabolic events by ACh-binding to G-proteincoupled mAChR. Effective inter- and intracellular signaling is crucial for valuable cancer cells proliferation and survival. Depending on cancer cell type, different AChR have been identified. The proliferation of airways epithelial cancer cells and pancreatic cancer cells may be under the control of α7-nAChR and M3-mAChR, while breast cancer cells and colon cancer cells are regulated by α9-nAChR, and M3-mAChR, respectively. In turn, these receptors may activate different pathways (Ras-Raf-1-Erk-AKT) as well as other receptors (β- adrenergicR). nAChR or mAChR antagonists may inhibit cancer growth. Inhibition of M3 by antisense or antagonists (Darifenacin, Tiotropium) reduces lung or colon cancer proliferation, as well as inhibition of α9- nAChR [polyphenol (-)-epigallocatechin-3-gallate] diminishes breast cancer cells growth. α7-nAChR silencing inhibits lung cancer proliferation. Moreover, inhibition of the nAChR-β-adrenergicR pathway (β-blockers) could be also useful. This review will describe the future translational perspectives of cholinergic receptors druginhibition in a complex disease such as cancer that poses compelling treatment challenges. Cancer happens as consequence of disease-perturbed molecular networks in relevant organ cells that change during progression. The framework for approaching these challenges is a systems approach.
Insights
Cholinergic receptors, including nicotinic acetylcholine receptors (nAChR) and muscarinic acetylcholine receptors (mAChR), play a role in cancer cell proliferation. Targeting these receptors offers potential therapeutic strategies for various cancers.
Area of Science:
- Molecular Biology
- Cancer Research
- Pharmacology
Background:
- Epithelial cells utilize nicotinic acetylcholine receptors (nAChR) and muscarinic acetylcholine receptors (mAChR) for auto-/paracrine regulation.
- These receptors mediate cholinergic control through ionic (nAChR) and metabolic (mAChR) signaling pathways.
- Inter- and intracellular signaling involving acetylcholine receptors (AChR) are vital for cancer cell proliferation and survival.
Purpose of the Study:
- To review the role of different AChR subtypes in various cancer cell types.
- To explore the potential of targeting AChR for cancer therapy.
- To discuss future translational perspectives of cholinergic receptor drug inhibition in cancer treatment.
Main Methods:
- Review of existing literature on AChR expression and function in cancer.
- Analysis of specific AChR subtypes (e.g., α7-nAChR, α9-nAChR, M3-mAChR) in different cancers.
- Examination of signaling pathways activated by AChR in cancer cells (e.g., Ras-Raf-1-Erk-AKT, β-adrenergicR).
Main Results:
- Specific AChR subtypes are implicated in the proliferation of different cancer cells (e.g., α7-nAChR in lung/pancreatic cancer, α9-nAChR in breast cancer, M3-mAChR in lung/colon/pancreatic cancer).
- Inhibition of AChR (e.g., M3 antagonists, α9-nAChR inhibitors, α7-nAChR silencing) can reduce cancer cell proliferation.
- Targeting the nAChR-β-adrenergicR pathway with β-blockers may also be beneficial.
Conclusions:
- Cholinergic receptors represent promising therapeutic targets for cancer treatment.
- Drug inhibition of specific AChR subtypes offers a potential strategy to combat cancer growth.
- A systems approach is crucial for understanding and addressing the complexities of cancer treatment.
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