Reovirus mutant jin-3 exhibits lytic and immune-stimulatory effects in preclinical human prostate cancer models Journal Article


Authors: van de Merbel, A. F.; van der Horst, G.; van der Mark, M. H.; Bots, S. T. F.; van den Wollenberg, D. J. M.; de Ridder, C. M. A.; Stuurman, D.; Aalders, T.; Erkens-Schulz, S.; van Montfoort, N.; Karthaus, W. R.; Mehra, N.; Smits, M.; Schalken, J. A.; van Weerden, W. M.; Hoeben, R. C.; van der Pluijm, G.
Article Title: Reovirus mutant jin-3 exhibits lytic and immune-stimulatory effects in preclinical human prostate cancer models
Abstract: Treatment of castration-resistant prostate cancer remains a challenging clinical problem. Despite the promising effects of immunotherapy in other solid cancers, prostate cancer has remained largely unresponsive. Oncolytic viruses represent a promising therapeutic avenue, as oncolytic virus treatment combines tumour cell lysis with activation of the immune system and mounting of effective anti-tumour responses. Mammalian Orthoreoviruses are non-pathogenic human viruses with a preference of lytic replication in human tumour cells. In this study, we evaluated the oncolytic efficacy of the bioselected oncolytic reovirus mutant jin-3 in multiple human prostate cancer models. The jin-3 reovirus displayed efficient infection, replication, and anti-cancer responses in 2D and 3D prostate cancer models, as well as in ex vivo cultured human tumour slices. In addition, the jin-3 reovirus markedly reduced the viability and growth of human cancer cell lines and patient-derived xenografts. The infection induced the expression of mediators of immunogenic cell death, interferon-stimulated genes, and inflammatory cytokines. Taken together, our data demonstrate that the reovirus mutant jin-3 displays tumour tropism, and induces potent oncolytic and immunomodulatory responses in human prostate cancer models. Therefore, jin-3 reovirus represents an attractive candidate for further development as oncolytic agent for treatment of patients with aggressive localised or advanced prostate cancer. © 2021, The Author(s).
Keywords: genetics; nonhuman; mouse; animal; animals; animal experiment; animal model; in vitro study; cell line, tumor; cancer model; prostate cancer; prostatic neoplasms; xenograft; mammal; prostate tumor; tumor cell line; oncolytic virus; oncolytic viruses; oncolytic virotherapy; immunomodulation; cancer tissue; ex vivo study; mammals; virus mutant; humans; human; male; article; three dimensional cell culture; tissue slice; cancer cell line; reoviridae; immunogenic cell death; oncolytic reovirus; reovirus infection; mammalian orthoreovirus 3
Journal Title: Cancer Gene Therapy
Volume: 29
Issue: 6
ISSN: 0929-1903
Publisher: Nature Publishing Group  
Date Published: 2022-06-01
Start Page: 793
End Page: 802
Language: English
DOI: 10.1038/s41417-021-00360-2
PUBMED: 34135475
PROVIDER: scopus
PMCID: PMC9209329
DOI/URL:
Notes: Article -- Export Date: 1 August 2022 -- Source: Scopus
Altmetric
Citation Impact
BMJ Impact Analytics
MSK Authors