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Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Oncolysis by paramyxoviruses: multiple mechanisms contribute to therapeutic efficiency
Olga V Matveeva1, Zong S Guo2, Svetlana A Shabalina3
1Biopolymer Design LLC, Acton, Massachusetts, USA ; Engelhardt Institute of Molecular Biology, Moscow, Russia.
Abstract:
Oncolytic paramyxoviruses include some strains of Measles, Mumps, Newcastle disease, and Sendai viruses. All these viruses are well equipped for promoting highly specific and efficient malignant cell death, which can be direct and/or immuno-mediated. A number of proteins that serve as natural receptors for oncolytic paramyxoviruses are frequently overexpressed in malignant cells. Therefore, the preferential interaction of paramyxoviruses with malignant cells rather than with normal cells is promoted. Due to specific genetic defects of cancer cells in the interferon (IFN) and apoptotic pathways, viral replication has the potential to be promoted specifically in tumors. Viral mediation of syncytium formation (a polykaryonic structure) promotes intratumoral paramyxo-virus replication and spreading, without exposure to host neutralizing antibodies. So, two related processes: efficient intratumoral infection spread as well as the consequent mass malignant cell death, both are enhanced. In general, the paramyxoviruses elicit strong anticancer innate and adaptive immune responses by triggering multiple danger signals. The paramyxoviruses are powerful inducers of IFN and other immuno-stimulating cytokines. These viruses efficiently promote anticancer activity of natural killer cells, dendritic cells, and cytotoxic T lymphocytes. Moreover, a neuraminidase (sialidase), a component of the viral envelope of Newcastle Disease, Mumps, and Sendai viruses, can cleave sialic acids on the surface of malignant cells thereby unmasking cancer antigens and exposing them to the immune system. These multiple mechanisms contribute to therapeutic efficacy of oncolytic paramyxovi-ruses and are responsible for encouraging results in preclinical and clinical studies.
Insights
Oncolytic paramyxoviruses, including Measles and Mumps viruses, selectively kill cancer cells through direct and immune-mediated mechanisms. These viruses show promise in cancer therapy by enhancing anti-tumor immune responses.
Area of Science:
- Oncology
- Virology
- Immunology
Background:
- Oncolytic paramyxoviruses exhibit natural tropism for malignant cells due to overexpressed viral receptors.
- Cancer cells often possess genetic defects in interferon (IFN) and apoptotic pathways, favoring viral replication within tumors.
Purpose of the Study:
- To review the mechanisms by which oncolytic paramyxoviruses induce cancer cell death and stimulate anti-tumor immunity.
- To highlight the therapeutic potential of these viruses in cancer treatment.
Main Methods:
- Review of existing literature on oncolytic paramyxoviruses (Measles, Mumps, Newcastle disease, Sendai viruses).
- Analysis of viral-cancer cell interactions, replication dynamics, and immune system modulation.
Main Results:
- Paramyxoviruses induce direct and immune-mediated cancer cell death.
- Viral replication is enhanced in tumors due to cancer cell-specific defects.
- Paramyxoviruses trigger innate and adaptive anti-cancer immune responses, including cytokine induction and immune cell activation.
- Neuraminidase activity on viral envelopes can unmask cancer antigens, enhancing immune recognition.
Conclusions:
- Oncolytic paramyxoviruses possess multiple mechanisms for effective cancer cell killing and immune stimulation.
- These viruses demonstrate significant therapeutic potential, supported by preclinical and clinical study results.
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