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Updated: Sep 9, 2025

Measuring Mitochondrial Function of Naïve and Effector CD8 T Cells
Published on: March 28, 2025
Inflammatory mitochondrial signalling and viral mimicry in cancer
Salvatore Nesci1, Saverio Marchi2, Joyce Hu3
1Department of Veterinary Medical Sciences, University of Bologna, Ozzano dell'Emilia, Bologna, BO, Italy. salvatore.nesci@unibo.it.
Abstract:
Endogenous transposable elements (TEs) are receiving increasing attention as potential targets to develop novel immunostimulatory strategies against cancer. Indeed, the defective epigenetic suppression of TEs in malignant cells offers a therapeutic window to enable their re-activation with at least some degree of selectivity. In line with this notion, multiple clinically employed epigenetic modifiers such as DNA-demethylating agents have been shown to promote the re-expression of TEs in preclinical tumour models, hence driving powerful inflammatory responses that enables increased sensitivity of immunitary immune cells to immunotherapy with immune checkpoint inhibitors (ICIs). This phenomenon is commonly referred to as "viral mimicry" as (at least in part) it impinges on the activation of immunological pathways commonly driven by viral infection, notably the detection of cytosolic nucleic acids by pattern recognition receptors. Here, we critically discuss the molecular mechanisms through which the mitochondria-dependent cGAS-STING and MAVS pathways enable viral mimicry as elicited by the re-activation of TEs in neoplastic cells, as we comment on the therapeutic potential of using epigenetic modifiers to harness these mechanisms in support of restored ICIs sensitivity across cancer types.
Insights
Re-activating endogenous transposable elements (TEs) in cancer cells can trigger an immune response, enhancing immunotherapy effectiveness. This "viral mimicry" approach offers a new strategy for cancer treatment.
Area of Science:
- Oncology
- Immunology
- Epigenetics
Background:
- Endogenous transposable elements (TEs) are increasingly explored for cancer immunotherapy.
- Malignant cells often have defective epigenetic suppression of TEs, creating a therapeutic target.
- Epigenetic modifiers can re-activate TEs, inducing inflammatory responses.
Purpose of the Study:
- To discuss the molecular mechanisms of TE-induced viral mimicry.
- To explore the therapeutic potential of epigenetic modifiers in cancer treatment.
- To evaluate the restoration of immune checkpoint inhibitor (ICI) sensitivity.
Main Methods:
- Review of molecular mechanisms involving cGAS-STING and MAVS pathways.
- Analysis of TE re-expression induced by epigenetic modifiers.
- Discussion of preclinical tumor models and ICI sensitivity.
Main Results:
- Re-activation of TEs in cancer cells triggers inflammatory responses via viral mimicry.
- Mitochondria-dependent pathways (cGAS-STING, MAVS) mediate this mimicry.
- Epigenetic modifiers show promise in enhancing ICI efficacy.
Conclusions:
- TE re-expression through epigenetic modification can induce anti-tumor immunity.
- Harnessing viral mimicry pathways offers a novel strategy to improve cancer immunotherapy.
- This approach holds potential for increasing ICI sensitivity across various cancer types.
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