Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Octyl itaconate enhances VSVΔ51 oncolytic virotherapy by multitarget inhibition of antiviral and inflammatory pathways

View through CrossRef
Abstract The presence of heterogeneity in responses to oncolytic virotherapy poses a barrier to clinical effectiveness, as resistance to this treatment can occur through the inhibition of viral spread within the tumor, potentially leading to treatment failures. Here we show that 4-octyl itaconate (4-OI), a chemical derivative of the Krebs cycle-derived metabolite itaconate, enhances oncolytic virotherapy with VSVΔ51 in various models including human and murine resistant cancer cell lines, three-dimensional (3D) patient-derived colon tumoroids and organotypic brain tumor slices. Furthermore, 4-OI in combination with VSVΔ51 improves therapeutic outcomes in a resistant murine colon tumor model. Mechanistically, we find that 4-OI suppresses antiviral immunity in cancer cells through the modification of cysteine residues in MAVS and IKKβ independently of the NRF2/KEAP1 axis. We propose that the combination of a metabolite-derived drug with an oncolytic virus agent can greatly improve anticancer therapeutic outcomes by direct interference with the type I IFN and NF-κB-mediated antiviral responses.
Title: Octyl itaconate enhances VSVΔ51 oncolytic virotherapy by multitarget inhibition of antiviral and inflammatory pathways
Description:
Abstract The presence of heterogeneity in responses to oncolytic virotherapy poses a barrier to clinical effectiveness, as resistance to this treatment can occur through the inhibition of viral spread within the tumor, potentially leading to treatment failures.
Here we show that 4-octyl itaconate (4-OI), a chemical derivative of the Krebs cycle-derived metabolite itaconate, enhances oncolytic virotherapy with VSVΔ51 in various models including human and murine resistant cancer cell lines, three-dimensional (3D) patient-derived colon tumoroids and organotypic brain tumor slices.
Furthermore, 4-OI in combination with VSVΔ51 improves therapeutic outcomes in a resistant murine colon tumor model.
Mechanistically, we find that 4-OI suppresses antiviral immunity in cancer cells through the modification of cysteine residues in MAVS and IKKβ independently of the NRF2/KEAP1 axis.
We propose that the combination of a metabolite-derived drug with an oncolytic virus agent can greatly improve anticancer therapeutic outcomes by direct interference with the type I IFN and NF-κB-mediated antiviral responses.

Related Results

The Potential of Medicinal Plants and Bioactive Compounds in the Fight Against COVID-19
The Potential of Medicinal Plants and Bioactive Compounds in the Fight Against COVID-19
Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), a novel coronavirus , is causing a serious worldwide COVID-19 pandemic. The emergence of strains with rapid spread and...
Functionalization of Enzymatically Synthesized Rigid Poly(itaconate)s via Post‐Polymerization Aza‐Michael Addition of Primary Amines
Functionalization of Enzymatically Synthesized Rigid Poly(itaconate)s via Post‐Polymerization Aza‐Michael Addition of Primary Amines
AbstractThe bulky 1,4‐cyclohexanedimethanol was used as co‐monomer for introducing rigidity in lipase synthetized poly(itaconate)s. Poly(1,4‐cyclohexanedimethanol itaconate) was sy...
CHALLENGES AND FUTURE PROSPECTS OF ONCOLYTIC VIROTHERAPY: A SYSTEMATIC REVIEW
CHALLENGES AND FUTURE PROSPECTS OF ONCOLYTIC VIROTHERAPY: A SYSTEMATIC REVIEW
Background: Oncolytic virotherapy has emerged as a novel and promising approach in cancer treatment, leveraging viruses that selectively infect and destroy malignant cells while sp...
Molecular Circuits of Immune Sensing and Response to Oncolytic Virotherapy
Molecular Circuits of Immune Sensing and Response to Oncolytic Virotherapy
Oncolytic virotherapy is a promising immunotherapy approach for cancer treatment, utilizing viruses to preferentially infect and eliminate cancer cells while stimulating immune res...
Dynamic analysis and optimal control of cancer oncolytic virotherapy model with chemotherapy and immune response
Dynamic analysis and optimal control of cancer oncolytic virotherapy model with chemotherapy and immune response
Abstract Oncolytic virotherapy is another therapeutic treatment for cancer and has been greatly interested recently by many researchers. In this study, a mathematical model...
Tumor Restrictions to Oncolytic Virus
Tumor Restrictions to Oncolytic Virus
Oncolytic virotherapy has advanced since the days of its conception but therapeutic efficacy in the clinics does not seem to reach the same level as in animal models. One reason is...
Itaconate promotes hepatocellular carcinoma progression by epigenetic induction of CD8+ T-cell exhaustion
Itaconate promotes hepatocellular carcinoma progression by epigenetic induction of CD8+ T-cell exhaustion
AbstractItaconate is a well-known immunomodulatory metabolite; however, its role in hepatocellular carcinoma (HCC) remains unclear. Here, we find that macrophage-derived itaconate ...

Back to Top