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Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Impact of tumor microenvironment on oncolytic viral therapy
1Dardinger Laboratory for Neuro-oncology and Neurosciences, Department of Neurological Surgery, James Comprehensive Cancer Center, Columbus, OH 43210, United States.
Abstract:
Interactions between tumor cells and their microenvironment have been shown to play a very significant role in the initiation, progression, and invasiveness of cancer. These tumor-stromal interactions are capable of altering the delivery and effectiveness of therapeutics into the tumor and are also known to influence future resistance and re-growth after treatment. Here we review recent advances in the understanding of the tumor microenvironment and its response to oncolytic viral therapy. The multifaceted environmental response to viral therapy can influence viral infection, replication, and propagation within the tumor. Recent studies have unveiled the complicated temporal changes in the tumor vasculature post-oncolytic virus (OV) treatment, and their impact on tumor biology. Similarly, the secreted extracellular matrix in solid tumors can affect both infection and spread of the therapeutic virus. Together, these complex changes in the tumor microenvironment also modulate the activation of the innate antiviral host immune response, leading to quick and efficient viral clearance. In order to combat these detrimental responses, viruses have been combined with pharmacological adjuvants and "armed" with therapeutic genes in order to suppress the pernicious environmental conditions following therapy. In this review we will discuss the impact of the tumor environment on viral therapy and examine some of the recent literature investigating methods of modulating this environment to enhance oncolysis.
Insights
The tumor microenvironment significantly impacts cancer progression and treatment effectiveness. Understanding and modulating these interactions is key to improving oncolytic virus (OV) therapy outcomes.
Area of Science:
- Oncology
- Virology
- Immunology
Background:
- Tumor microenvironment interactions are critical in cancer initiation, progression, and invasiveness.
- These interactions influence therapeutic delivery, effectiveness, resistance, and tumor regrowth.
- The tumor microenvironment affects oncolytic virus (OV) infection, replication, and propagation.
Purpose of the Study:
- To review recent advances in understanding the tumor microenvironment's response to oncolytic viral therapy.
- To examine how the tumor environment impacts OV therapy efficacy.
- To explore strategies for modulating the tumor environment to enhance oncolysis.
Main Methods:
- Review of recent scientific literature on tumor microenvironment and oncolytic virotherapy.
- Analysis of studies investigating temporal changes in tumor vasculature post-OV treatment.
- Examination of the role of the extracellular matrix in viral infection and spread.
Main Results:
- Tumor microenvironment changes, including vasculature and extracellular matrix, impact OV therapy.
- The host immune response can lead to rapid viral clearance, limiting therapeutic effectiveness.
- Strategies like combining OVs with adjuvants or therapeutic genes are being developed.
Conclusions:
- Modulating the tumor microenvironment is crucial for enhancing oncolytic viral therapy.
- Further research is needed to overcome environmental barriers to effective OV treatment.
- Targeting tumor-stromal interactions holds promise for improving cancer treatment outcomes.
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