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Small Molecule Targeting Immune Cells: A Novel Approach for Cancer Treatment
Shilpi Singh1, Debashis Barik2, Ananta Prasad Arukha1
1Department of Neurosurgery, University of Minnesota, Minneapolis, MN 55455, USA.
Abstract:
Conventional and cancer immunotherapies encompass diverse strategies to address various cancer types and stages. However, combining these approaches often encounters limitations such as non-specific targeting, resistance development, and high toxicity, leading to suboptimal outcomes in many cancers. The tumor microenvironment (TME) is orchestrated by intricate interactions between immune and non-immune cells dictating tumor progression. An innovative avenue in cancer therapy involves leveraging small molecules to influence a spectrum of resistant cell populations within the TME. Recent discoveries have unveiled a phenotypically diverse cohort of innate-like T (ILT) cells and tumor hybrid cells (HCs) exhibiting novel characteristics, including augmented proliferation, migration, resistance to exhaustion, evasion of immunosurveillance, reduced apoptosis, drug resistance, and heightened metastasis frequency. Leveraging small-molecule immunomodulators to target these immune players presents an exciting frontier in developing novel tumor immunotherapies. Moreover, combining small molecule modulators with immunotherapy can synergistically enhance the inhibitory impact on tumor progression by empowering the immune system to meticulously fine-tune responses within the TME, bolstering its capacity to recognize and eliminate cancer cells. This review outlines strategies involving small molecules that modify immune cells within the TME, potentially revolutionizing therapeutic interventions and enhancing the anti-tumor response.
Insights
Small molecules can target novel innate-like T (ILT) cells and hybrid cells (HCs) within the tumor microenvironment (TME). This approach enhances cancer immunotherapies by overcoming resistance and improving anti-tumor responses.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Conventional immunotherapies face challenges like resistance and toxicity.
- The tumor microenvironment (TME) critically influences cancer progression.
- Novel cell populations, including innate-like T (ILT) cells and hybrid cells (HCs), exhibit aggressive tumor-promoting characteristics.
Purpose of the Study:
- To explore the potential of small molecules in modulating immune cells within the TME.
- To investigate strategies for targeting resistant cell populations like ILT cells and HCs.
- To enhance existing cancer immunotherapies through combination with small molecule modulators.
Main Methods:
- Review of recent discoveries on ILT cells and HCs.
- Analysis of small molecule immunomodulators targeting TME components.
- Exploration of synergistic effects between small molecules and immunotherapy.
Main Results:
- ILT cells and HCs display enhanced proliferation, migration, and drug resistance.
- Small molecules offer a promising strategy to target these resistant cell populations.
- Combination therapy shows potential for synergistic anti-tumor activity.
Conclusions:
- Targeting ILT cells and HCs with small molecules represents a novel therapeutic avenue.
- Small molecule modulators can overcome immunotherapy resistance and reduce toxicity.
- This approach may revolutionize cancer treatment by fine-tuning immune responses within the TME.
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