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Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Potential targeting of the tumor microenvironment to improve cancer virotherapy
Zi-Xian Liao1, Shan-Hui Hsu2, Shiue-Cheng Tang3
1Institute of Medical Science and Technology, National Sun Yat-sen University, Kaohsiung 80424, Taiwan.
Abstract:
In 2015, oncolytic virotherapy was approved for clinical use, and in 2017, recombinant adeno-associated virus (AAV) delivery was also approved. However, systemic administration remains challenging due to the limited number of viruses that successfully reach the target site. Although the US Food and Drug Administration (FDA) permits the use of higher doses of AAV to achieve greater rates of transduction, most AAV still accumulates in the liver, potentially leading to toxicity there and elsewhere. Targeting the tumor microenvironment is a promising strategy for cancer treatment due to the critical role of the tumor microenvironment in controlling tumor progression and influencing the response to therapies. Newly discovered evidence indicates that administration routes focusing on the tumor microenvironment can promote delivery specificity and transduction efficacy within the tumor. Here, we review approaches that involve modifying viral surface features, modulating the immune system, and targeting the physicochemical characteristics in tumor microenvironment to regulate therapeutic delivery. Targeting tumor acidosis presents advantages that can be leveraged to enhance virotherapy outcomes and to develop new therapeutic approaches that can be integrated with standard treatments.
Insights
Targeting the tumor microenvironment improves oncolytic virus delivery. Strategies include modifying viruses and exploiting tumor acidosis for enhanced cancer virotherapy.
Area of Science:
- Oncology
- Virology
- Biotechnology
Background:
- Oncolytic virotherapy and recombinant adeno-associated virus (AAV) delivery are approved but face challenges in systemic administration and tumor targeting.
- Current AAV delivery often results in liver accumulation, potentially causing toxicity, despite FDA allowance for higher doses.
Purpose of the Study:
- To review strategies for enhancing viral delivery to tumors by targeting the tumor microenvironment.
- To explore methods for improving transduction efficacy and specificity within the tumor.
Main Methods:
- Review of approaches modifying viral surface features.
- Analysis of immune system modulation strategies.
- Examination of targeting physicochemical characteristics of the tumor microenvironment, including tumor acidosis.
Main Results:
- Administration routes focusing on the tumor microenvironment enhance delivery specificity and transduction efficacy.
- Modifying viral properties and leveraging tumor characteristics can overcome systemic delivery limitations.
Conclusions:
- Targeting the tumor microenvironment is a promising strategy to improve oncolytic virotherapy outcomes.
- Exploiting tumor acidosis offers advantages for enhancing virotherapy and developing integrated treatment approaches.
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