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Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Viro-antibody therapy: engineering oncolytic viruses for genetic delivery of diverse antibody-based biotherapeutics
Roland E Kontermann1,2, Guy Ungerechts3,4,5, Dirk M Nettelbeck3
1Institute of Cell Biology and Immunology, University of Stuttgart, Stuttgart, Germany.
Abstract:
Cancer therapeutics approved for clinical application include oncolytic viruses and antibodies, which evolved by nature, but were improved by molecular engineering. Both facilitate outstanding tumor selectivity and pleiotropic activities, but also face challenges, such as tumor heterogeneity and limited tumor penetration. An innovative strategy to address these challenges combines both agents in a single, multitasking therapeutic, i.e., an oncolytic virus engineered to express therapeutic antibodies. Such viro-antibody therapies genetically deliver antibodies to tumors from amplified virus genomes, thereby complementing viral oncolysis with antibody-defined therapeutic action. Here, we review the strategies of viro-antibody therapy that have been pursued exploiting diverse virus platforms, antibody formats, and antibody-mediated modes of action. We provide a comprehensive overview of reported antibody-encoding oncolytic viruses and highlight the achievements of 13 years of viro-antibody research. It has been shown that functional therapeutic antibodies of different formats can be expressed in and released from cancer cells infected with different oncolytic viruses. Virus-encoded antibodies have implemented direct tumor cell killing, anti-angiogenesis, or activation of adaptive immune responses to kill tumor cells, tumor stroma cells or inhibitory immune cells. Importantly, numerous reports have shown therapeutic activity complementary to viral oncolysis for these modalities. Also, challenges for future research have been revealed. Established engineering technologies for both oncolytic viruses and antibodies will enable researchers to address these challenges, facilitating the development of effective viro-antibody therapeutics.
Insights
Viro-antibody therapies combine oncolytic viruses and therapeutic antibodies to enhance cancer treatment. This innovative approach genetically delivers antibodies to tumors, improving efficacy against cancer heterogeneity and penetration challenges.
Area of Science:
- Oncology
- Virology
- Immunotherapy
Background:
- Oncolytic viruses and antibodies are nature-evolved cancer therapeutics enhanced by molecular engineering.
- Current limitations include tumor heterogeneity and limited penetration, hindering efficacy.
- Combining these agents offers a multitasking therapeutic strategy.
Purpose of the Study:
- To review strategies of viro-antibody therapy.
- To provide an overview of antibody-encoding oncolytic viruses.
- To highlight achievements in viro-antibody research over 13 years.
Main Methods:
- Exploiting diverse virus platforms and antibody formats.
- Engineering oncolytic viruses to express therapeutic antibodies.
- Analyzing reported antibody-encoding oncolytic viruses and their therapeutic actions.
Main Results:
- Functional therapeutic antibodies of various formats can be expressed and released from virus-infected cancer cells.
- Virus-encoded antibodies demonstrated direct tumor cell killing, anti-angiogenesis, and immune response activation.
- Therapeutic activities were complementary to viral oncolysis, showing significant efficacy.
Conclusions:
- Viro-antibody therapies represent a promising strategy for cancer treatment.
- Established engineering technologies can address challenges like tumor penetration and heterogeneity.
- Further research will facilitate the development of effective viro-antibody therapeutics.
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