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Published on: April 27, 2018
Efficient eradication of hormone-resistant human prostate cancers by inactivated Sendai virus particle
Yoshifumi Kawaguchi1, Yasuhide Miyamoto, Takehiro Inoue
1Division of Gene Therapy Science, Graduate School of Medicine, Osaka University, Osaka, Japan.
Abstract:
Hormone-refractory prostate cancer is one of the intractable human cancers in the world. Here, we examined the direct tumor-killing activity of inactivated Sendai virus particle [hemagglutinating virus of Japan envelope (HVJ-E)] through induction of Type I interferon (IFN) in the hormone-resistant human prostate cancer cell lines PC3 and DU145. Preferential binding of HVJ-E to PC3 and DU145 over hormone-sensitive prostate cancer cell and normal prostate epithelium was observed, resulting in a number of fused cells. After HVJ-E treatment, a number of IFN-related genes were up-regulated, resulting in Type I IFN production in PC3 cells. Then, retinoic acid-inducible gene-I (RIG-I) helicase which activates Type I IFN expression after Sendai virus infection was up-regulated in cancer cells after HVJ-E treatment. Produced IFN-alpha and -beta enhanced caspase 8 expression via Janus kinases/Signal Transducers and Activators of Transcription pathway, activated caspase 3 and induced apoptosis in cancer cells. When HVJ-E was directly injected into a mass of PC3 tumor cells in SCID (severe combined immunodeficiency) mice, a marked reduction in the bulk of each tumor mass was observed and 85% of the mice became tumor-free. Although co-injection of an anti-asialo GM1 antibody with HVJ-E into each tumor mass slightly attenuated the tumor suppressive activity of HVJ-E, significant suppression of tumor growth was observed even in the presence of anti-asialo GM1 antibody. This suggests that natural killer cell activation made small contribution to tumor regression following HVJ-E treatment in hormone-resistant prostate cancer model in vivo. Thus, HVJ-E effectively targets hormone-resistant prostate cancer by inducing apoptosis in tumor cells, as well as activating anti-tumor immunity.
Insights
Inactivated Sendai virus particle (HVJ-E) directly kills hormone-refractory prostate cancer cells by inducing apoptosis and Type I interferon. HVJ-E treatment in mice significantly reduced tumor size, with 85% becoming tumor-free.
Area of Science:
- Oncology
- Virology
- Immunology
Background:
- Hormone-refractory prostate cancer (HRPC) is a challenging malignancy.
- Effective therapeutic strategies for HRPC remain limited.
Purpose of the Study:
- To investigate the direct anti-tumor activity of hemagglutinating virus of Japan envelope (HVJ-E) against HRPC.
- To elucidate the mechanisms underlying HVJ-E's efficacy in HRPC.
Main Methods:
- HVJ-E treatment of hormone-resistant prostate cancer cell lines (PC3, DU145).
- Analysis of gene expression, including Type I interferon (IFN) and RIG-I helicase.
- In vivo studies involving direct tumor injection in SCID mice.
Main Results:
- HVJ-E preferentially bound to and fused with HRPC cells.
- HVJ-E induced Type I IFN production and up-regulated RIG-I, caspase 8, and caspase 3, leading to apoptosis.
- Direct HVJ-E injection into tumors significantly reduced tumor bulk in mice, with 85% achieving tumor remission.
- Natural killer cell activation contributed minimally to the observed tumor suppression.
Conclusions:
- HVJ-E demonstrates potent direct tumor-killing activity against hormone-refractory prostate cancer.
- HVJ-E induces apoptosis in cancer cells and activates anti-tumor immunity.
- HVJ-E represents a promising therapeutic agent for HRPC.

