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Viral oncolysis - can insights from measles be transferred to canine distemper virus?
Stefanie Lapp1, Vanessa M Pfankuche2, Wolfgang Baumgärtner3
1Department of Pathology, University of Veterinary Medicine Hannover, Bünteweg 17, 30559 Hannover, Germany. stefanie.lapp@tiho-hannover.de.
Abstract:
Neoplastic diseases represent one of the most common causes of death among humans and animals. Currently available and applied therapeutic options often remain insufficient and unsatisfactory, therefore new and innovative strategies and approaches are highly needed. Periodically, oncolytic viruses have been in the center of interest since the first anecdotal description of their potential usefulness as an anti-tumor treatment concept. Though first reports referred to an incidental measles virus infection causing tumor regression in a patient suffering from lymphoma several decades ago, no final treatment concept has been developed since then. However, numerous viruses, such as herpes-, adeno- and paramyxoviruses, have been investigated, characterized, and modified with the aim to generate a new anti-cancer treatment option. Among the different viruses, measles virus still represents a highly interesting candidate for such an approach. Numerous different tumors of humans including malignant lymphoma, lung and colorectal adenocarcinoma, mesothelioma, and ovarian cancer, have been studied in vitro and in vivo as potential targets. Moreover, several concepts using different virus preparations are now in clinical trials in humans and may proceed to a new treatment option. Surprisingly, only few studies have investigated viral oncolysis in veterinary medicine. The close relationship between measles virus (MV) and canine distemper virus (CDV), both are morbilliviruses, and the fact that numerous tumors in dogs exhibit similarities to their human counterpart, indicates that both the virus and species dog represent a highly interesting translational model for future research in viral oncolysis. Several recent studies support such an assumption. It is therefore the aim of the present communication to outline the mechanisms of morbillivirus-mediated oncolysis and to stimulate further research in this potentially expanding field of viral oncolysis in a highly suitable translational animal model for the benefit of humans and dogs.
Insights
Oncolytic viruses, like measles virus, show promise for cancer treatment. Research suggests canine distemper virus in dogs could be a valuable model for developing new viral oncolysis therapies for both humans and animals.
Area of Science:
- Oncology
- Virology
- Veterinary Medicine
Background:
- Neoplastic diseases are a leading cause of death in humans and animals, necessitating novel therapeutic strategies.
- Oncolytic viruses have long been explored as an anti-tumor treatment, with measles virus (MV) being a prominent candidate.
- Despite extensive research in human cancers, viral oncolysis in veterinary medicine remains under-investigated.
Purpose of the Study:
- To outline the mechanisms of morbillivirus-mediated oncolysis.
- To stimulate further research into viral oncolysis using a translational animal model.
- To explore the potential of measles virus and canine distemper virus (CDV) in cancer therapy.
Main Methods:
- Review of existing literature on oncolytic viruses, focusing on morbilliviruses like MV and CDV.
- In vitro and in vivo studies of MV against various human tumors.
- Investigation of CDV as a potential oncolytic agent in canine cancer models.
Main Results:
- Measles virus has demonstrated efficacy against numerous human tumors in preclinical studies.
- Canine distemper virus, a morbillivirus related to MV, shows potential for oncolysis in dogs.
- Canine tumors often share similarities with human counterparts, suggesting dogs as a relevant translational model.
Conclusions:
- Morbilliviruses, including MV and CDV, offer a promising avenue for developing novel oncolytic cancer therapies.
- The dog serves as a highly suitable translational model for advancing viral oncolysis research for both human and veterinary benefit.
- Further research is warranted to fully elucidate and exploit the potential of morbillivirus-mediated oncolysis.
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