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Mesenchymal progenitor cells as cellular vehicles for delivery of oncolytic adenoviruses
Svetlana Komarova1, Yosuke Kawakami, Mariam A Stoff-Khalili
1Division of Human Gene Therapy, Department of Medicine, Gene Therapy Center, University of Alabama at Birmingham, 901 19th Street South, BMR2-572, Birmingham, AL 35294-3300, USA.
Abstract:
Natural and genetically modified oncolytic viruses have been systematically tested as anticancer therapeutics. Among this group, conditionally replicative adenoviruses have been developed for a broad range of tumors with a rapid transition to clinical settings. Unfortunately, clinical trials have shown limited antitumor efficacy partly due to insufficient viral delivery to tumor sites. We investigated the possibility of using mesenchymal progenitor cells (MPC) as virus carriers based on the documented tumor-homing abilities of this cell population. We confirmed preferential tumor homing of MPCs in an animal model of ovarian carcinoma and evaluated the capacity of MPCs to be loaded with oncolytic adenoviruses. We showed that MPCs were efficiently infected with an adenovirus genetically modified for coxsackie and adenovirus receptor-independent infection (Ad5/3), which replicated in the cell carriers. MPCs loaded with Ad5/3 caused total cell killing when cocultured with a cancer cell line. In an animal model of ovarian cancer, MPC-based delivery of the Ad5/3 increased the survival of tumor-bearing mice compared with direct viral injection. Further, tumor imaging confirmed a decrease in tumor burden in animals treated with oncolytic virus delivered by MPC carriers compared with the direct injection of the adenovirus. These data show that MPCs can serve as intermediate carriers for replicative adenoviruses and suggest that the natural homing properties of specific cell types can be used for targeted delivery of these virions.
Insights
Mesenchymal progenitor cells (MPCs) efficiently carry and deliver oncolytic adenoviruses to ovarian tumors. This cell-based delivery enhances antitumor efficacy and survival in preclinical cancer models.
Area of Science:
- Oncolytic virotherapy
- Cancer biology
- Cell-based drug delivery
Background:
- Oncolytic viruses show promise as cancer therapeutics but suffer from limited tumor delivery.
- Conditionally replicative adenoviruses are being developed for various tumors.
- Insufficient viral delivery hinders clinical efficacy of oncolytic adenoviruses.
Purpose of the Study:
- To investigate mesenchymal progenitor cells (MPCs) as carriers for oncolytic adenoviruses.
- To leverage the tumor-homing capabilities of MPCs for targeted viral delivery.
- To evaluate the efficacy of MPC-delivered oncolytic adenoviruses in ovarian cancer models.
Main Methods:
- Confirmed MPC tumor homing in an ovarian carcinoma animal model.
- Loaded MPCs with a coxsackie and adenovirus receptor-independent adenovirus (Ad5/3).
- Evaluated Ad5/3 replication within MPCs and their efficacy in vitro and in vivo.
Main Results:
- MPCs were efficiently infected with Ad5/3, which replicated within the cells.
- MPCs loaded with Ad5/3 induced complete cancer cell killing in coculture.
- MPC-based Ad5/3 delivery significantly increased survival and reduced tumor burden in mice compared to direct viral injection.
Conclusions:
- MPCs serve as effective intermediate carriers for oncolytic adenoviruses.
- The natural tumor-homing properties of MPCs facilitate targeted delivery of oncolytic viruses.
- This strategy enhances the therapeutic potential of oncolytic virotherapy for ovarian cancer.
