Expression and function of immune ligand-receptor pairs in NK cells and cancer stem cells: therapeutic implications
1Algoma District Cancer Program, Sault Area Hospital, Sault Ste. Marie, ON, Canada. ivoutsadakis@yahoo.com.
Background:
The interplay between the immune system and cancer cells has come to the forefront of cancer therapeutics, with novel immune blockade inhibitors being approved for the treatment of an increasing list of cancers. However, the majority of cancer patients still display or develop resistance to these promising drugs. It is possible that cancer stem cells (CSCs) are contributing to this therapeutic resistance. Although CSCs usually represent a small percentage of the total number of cancer cells, they are endowed with the ability of self-renewal and to produce differentiated progeny. Additionally, they have shown the capacity to establish tumors after transplantation to animals, even in small numbers. CSCs have also been found to be resistant to various anti-cancer therapies, including chemotherapy, radiation therapy and, more recently, immunotherapy. This is true despite the sensitivity of CSCs to lysis in vitro by natural killer (NK) cells, the main effector cells of the innate immune system. In this paper the expression of ligands specific for NK cells on CSCs, the intracellular network responsible for the expression of the NK cytotoxicity receptors, and the status of activation of NK cells in the tumor micro-environment are reviewed. The aim of this review is to highlight potential strategies for overcoming CSC immune resistance, thereby enhancing the efficacy of current and future anti-cancer therapies.
Therapeutic Implications:
NK cell activation in the tumor micro-environment through drugs neutralizing inhibitory immune receptors, and combined with other drugs harnessing the potential of the adaptive immune system, could be the most effective approach for attacking both stem cell and non-stem cell cancer populations.
Insights
Cancer stem cells (CSCs) resist immunotherapy, but activating natural killer (NK) cells could overcome this. Targeting NK cells may enhance cancer therapies by attacking both CSCs and other cancer cells.
Area of Science:
- Immunology
- Oncology
- Cancer Stem Cell Biology
Background:
- Cancer stem cells (CSCs) contribute to therapeutic resistance in cancer patients, despite novel immunotherapies.
- CSCs possess self-renewal and tumor-initiating capabilities, exhibiting resistance to chemotherapy, radiation, and immunotherapy.
- While sensitive to natural killer (NK) cell lysis in vitro, CSCs' role in immune resistance requires further investigation.
Purpose of the Study:
- To review the expression of NK cell ligands on CSCs.
- To examine the intracellular pathways regulating NK cell receptor expression on CSCs.
- To analyze NK cell activation status within the tumor microenvironment and propose strategies to overcome CSC immune resistance.
Main Methods:
- Literature review on NK cell ligands and CSCs.
- Analysis of intracellular networks governing NK cell cytotoxicity receptors.
- Review of NK cell activation in the tumor microenvironment.
Main Results:
- CSCs express ligands that can be recognized by NK cells.
- Intracellular signaling pathways influence NK cell receptor expression on CSCs.
- NK cell activation in the tumor microenvironment is crucial for targeting CSCs.
Conclusions:
- Activating NK cells in the tumor microenvironment is a promising strategy to overcome CSC resistance.
- Combining NK cell activation with therapies that harness the adaptive immune system may effectively target both CSCs and non-CSCs.
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