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Updated: May 1, 2026

Author Spotlight: Exploring the Role of Ion Channels in Cancer: Characterization and Potential Treatment Approaches
Published on: June 16, 2023
NMDA receptors on the surface of cancer cells: target for chemotherapy?
Stephen I Deutsch1, Amy H Tang2, Jessica A Burket1
1Department of Psychiatry and Behavioral Sciences, Eastern Virginia Medical School, Norfolk, VA, United States.
Abstract:
The mammalian target of rapamycin (mTOR), a serine/threonine kinase, is a therapeutic target for many types of cancers. NMDA receptors regulate mTOR signalling activity; their inappropriate expression on several human cancer cell lines represents a potential therapeutic avenue to control dysregulated growth, division and invasiveness. Targeting these receptors with selective ligands (e.g., glycineB site ligands) may be a less toxic and more tolerable approach than administering compounds acting at the mTORC1 complex itself, such as rapamycin and its derivatives. Thus, testing glycineB site ligands in relevant in vitro and in vivo paradigms with established human cancer cells that express NMDA receptors on their surface could provide proofs of concept/principle that would encourage exploration of these and other "non-toxic" strategies. Interestingly, in some cancer models that express NMDA receptors on their surface, NMDA receptor antagonists, such as MK-801 (dizocilpine), were shown to possess anti-proliferative and anti-invasive effects, which conflict with hypotheses about promoting NMDA receptor activation as a cancer chemotherapeutic strategy. Whether NMDA receptor activation or antagonism is associated with anti-proliferative and anti-invasive effects may reflect differences between cancer cell lines in terms of the proteins associated with the NMDA receptors on their cell surfaces, which, in turn, could lead to different "downstream" effects on cascades of intracellular phosphorylations. Irrespective of whether activation or antagonism is associated with anti-proliferative and anti-invasive effects for specific types of cancer, data are emerging that support exploration of targeting NMDA receptors expressed on the surface of cancer cells as a therapeutic strategy.
Insights
Targeting NMDA receptors on cancer cells offers a potentially less toxic cancer therapy. GlycineB site ligands may control cancer growth by modulating mammalian target of rapamycin (mTOR) signaling.
Area of Science:
- Oncology
- Molecular Biology
- Neuroscience
Background:
- Mammalian target of rapamycin (mTOR) is a key regulator of cell growth and a target in cancer therapy.
- NMDA receptors are implicated in mTOR signaling and aberrantly expressed in various human cancers, presenting a novel therapeutic target.
- Current mTOR inhibitors like rapamycin have toxicity concerns, necessitating alternative strategies.
Purpose of the Study:
- To explore the potential of targeting NMDA receptors on cancer cells as a therapeutic strategy.
- To investigate glycineB site ligands as a less toxic alternative to direct mTOR inhibitors.
- To evaluate the role of NMDA receptor activation versus antagonism in cancer cell proliferation and invasiveness.
Main Methods:
- In vitro and in vivo studies using human cancer cell lines expressing NMDA receptors.
- Testing of selective glycineB site ligands.
- Administration of NMDA receptor antagonists (e.g., MK-801) in specific cancer models.
Main Results:
- NMDA receptor expression on cancer cells suggests a potential therapeutic avenue.
- GlycineB site ligands offer a promising, potentially less toxic approach compared to direct mTOR inhibitors.
- NMDA receptor antagonists demonstrated anti-proliferative and anti-invasive effects in some cancer models, challenging activation-based hypotheses.
- Conflicting results regarding activation vs. antagonism suggest cell-specific downstream signaling pathways.
Conclusions:
- Targeting cell-surface NMDA receptors is a viable therapeutic strategy for cancers expressing them.
- GlycineB site ligands represent a promising non-toxic approach for cancer treatment.
- Further research is needed to elucidate the complex role of NMDA receptor modulation in different cancer types.
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