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Updated: Jan 1, 2026

Monitoring the Cancer-Immunity Cycle and Exploring Tumor Microenvironment Dynamics
Published on: June 7, 2024
Combining epigenetic and immune therapy to overcome cancer resistance
Stephanie Gomez1, Tomasz Tabernacki1, Julie Kobyra1
1The George Washington University Cancer Center, United States; The Department of Microbiology, Immunology, & Tropical Medicine, The George Washington University, Washington, DC, United States.
Abstract:
Cancer undergoes "immune editing" to evade destruction by cells of the host immune system including natural killer (NK) cells and cytotoxic T lymphocytes (CTLs). Current adoptive cellular immune therapies include CAR T cells and dendritic cell vaccines, strategies that have yet to show success for a wide range of tumors. Cancer resistance to immune therapy is driven by extrinsic factors and tumor cell intrinsic factors that contribute to immune evasion. These extrinsic factors include immunosuppressive cell populations such as regulatory T cells (Tregs), tumor-associated macrophages (TAMS), and myeloid-derived suppressor cells (MDSCs). These cells produce and secrete immunosuppressive factors and express inhibitory ligands that interact with receptors on T cells including PD-1 and CTLA-4. Immune checkpoint blockade (ICB) therapies such as anti-PD-1 and anti-CTLA-4 have shown success by increasing immune activation to eradicate cancer, though both primary and acquired resistance remain a problem. Tumor cell intrinsic factors driving primary and acquired resistance to these immune therapies include genetic and epigenetic mechanisms. Epigenetic therapies for cancer including DNA methyltransferase inhibitors (DNMTi), histone deacetylase inhibitors (HDACi), and histone methyltransferase inhibitors (HMTi) can stimulate anti-tumor immunity in both tumor cells and host immune cells. Here we discuss in detail tumor mechanisms of immune evasion and how common epigenetic therapies for cancer may be used to reverse immune evasion. Lastly, we summarize current clinical trials combining epigenetic therapies with immune therapies to reverse cancer immune resistance mechanisms.
Insights
Cancer evades immune destruction through "immune editing." Epigenetic therapies can reverse this resistance by stimulating anti-tumor immunity, offering new hope for effective cancer treatments.
Area of Science:
- Cancer immunology
- Epigenetics
- Immunotherapy
Background:
- Cancer employs "immune editing" to evade immune cells like NK cells and CTLs.
- Current immunotherapies (CAR T cells, dendritic cell vaccines) have limited success across many tumors.
- Tumor resistance stems from extrinsic factors (immunosuppressive cells like Tregs, TAMs, MDSCs) and intrinsic factors (genetic/epigenetic mechanisms).
Purpose of the Study:
- To detail cancer immune evasion mechanisms.
- To explore how epigenetic therapies can reverse tumor immune evasion.
- To summarize clinical trials combining epigenetic and immune therapies.
Main Methods:
- Review of tumor immune evasion strategies.
- Analysis of epigenetic therapies (DNMTi, HDACi, HMTi) in stimulating anti-tumor immunity.
- Summary of current clinical trials integrating epigenetic and immune therapies.
Main Results:
- Epigenetic therapies can re-sensitize tumors to immune attack by modulating both tumor and host immune cells.
- Combining epigenetic therapies with immune checkpoint blockade (anti-PD-1, anti-CTLA-4) shows promise in overcoming resistance.
Conclusions:
- Epigenetic therapies represent a promising strategy to overcome cancer's resistance to immunotherapy.
- Further clinical investigation of combined epigenetic and immune therapy approaches is warranted.
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