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Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Immunovirotherapy: The role of antibody based therapeutics combination with oncolytic viruses
Mahdie Jafari1, Maryam Kadkhodazadeh2, Mina Bahrololoumi Shapourabadi3
1Department of Immunology, Pasteur Institute of Iran, Tehran, Iran.
Abstract:
Despite the fact that the new drugs and targeted therapies have been approved for cancer therapy during the past 30 years, the majority of cancer types are still remain challenging to be treated. Due to the tumor heterogeneity, immune system evasion and the complex interaction between the tumor microenvironment and immune cells, the great majority of malignancies need multimodal therapy. Unfortunately, tumors frequently develop treatment resistance, so it is important to have a variety of therapeutic choices available for the treatment of neoplastic diseases. Immunotherapy has lately shown clinical responses in malignancies with unfavorable outcomes. Oncolytic virus (OV) immunotherapy is a cancer treatment strategy that employs naturally occurring or genetically-modified viruses that multiply preferentially within cancer cells. OVs have the ability to not only induce oncolysis but also activate cells of the immune system, which in turn activates innate and adaptive anticancer responses. Despite the fact that OVs were translated into clinical trials, with T-VECs receiving FDA approval for melanoma, their use in fighting cancer faced some challenges, including off-target side effects, immune system clearance, non-specific uptake, and intratumoral spread of OVs in solid tumors. Although various strategies have been used to overcome the challenges, these strategies have not provided promising outcomes in monotherapy with OVs. In this situation, it is increasingly common to use rational combinations of immunotherapies to improve patient benefit. With the development of other aspects of cancer immunotherapy strategies, combinational therapy has been proposed to improve the anti-tumor activities of OVs. In this regard, OVs were combined with other biotherapeutic platforms, including various forms of antibodies, nanobodies, chimeric antigen receptor (CAR) T cells, and dendritic cells, to reduce the side effects of OVs and enhance their efficacy. This article reviews the promising outcomes of OVs in cancer therapy, the challenges OVs face and solutions, and their combination with other biotherapeutic agents.
Insights
Oncolytic virus (OV) immunotherapy shows promise for cancer treatment by selectively targeting cancer cells and activating immune responses. Combining OVs with other therapies can overcome challenges and enhance anti-tumor activity.
Area of Science:
- Oncology
- Immunotherapy
- Virology
Background:
- Cancer remains challenging despite advances due to tumor heterogeneity and immune evasion.
- Multimodal therapy is often required for malignancies, but treatment resistance is common.
- Immunotherapy, including oncolytic virus (OV) therapy, offers new hope for difficult-to-treat cancers.
Purpose of the Study:
- To review the potential of OV immunotherapy in cancer treatment.
- To discuss the challenges associated with OV therapy and potential solutions.
- To explore the benefits of combining OVs with other biotherapeutic agents.
Main Methods:
- Review of existing literature on oncolytic virus therapy.
- Analysis of challenges in OV monotherapy, including side effects and efficacy.
- Examination of combination strategies involving OVs and other immunotherapies.
Main Results:
- OVs selectively infect and lyse cancer cells, inducing anti-tumor immune responses.
- Challenges such as off-target effects and limited tumor penetration hinder OV efficacy.
- Combinations of OVs with antibodies, CAR T cells, and dendritic cells show enhanced anti-tumor activity and reduced side effects.
Conclusions:
- Oncolytic virus therapy is a promising cancer treatment strategy.
- Overcoming OV-related challenges requires innovative approaches, particularly combination therapies.
- Combining OVs with other immunotherapeutic platforms offers a potent strategy to improve patient outcomes in cancer treatment.
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