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Virus Delivery of CRISPR Guides to the Murine Prostate for Gene Alteration
Published on: April 27, 2018
Prostate-specific antigen-retargeted recombinant newcastle disease virus for prostate cancer virotherapy
Raghunath Shobana1, Siba K Samal, Subbiah Elankumaran
1Department of Biomedical Sciences and Pathobiology, Virginia-Maryland Regional College of Veterinary Medicine, Virginia Polytechnic Institute and State University, Blacksburg, Virginia, USA.
Abstract:
Oncolytic virus (OV) therapies of cancer are based on the use of replication-competent, tumor-selective viruses with limited toxicity. Newcastle disease virus (NDV), an avian paramyxovirus, is a promising OV and is inherently tumor selective and cytotoxic only to tumor cells. Replication is restricted in normal cells. Despite encouraging phase I/II clinical trials with NDV, further refinements for tumor-specific targeting are needed to enhance its therapeutic index. Systemically delivered NDV fails to reach solid tumors in therapeutic concentrations and also spreads poorly within the tumors due to barriers including complement, innate immunity, and the extracellular matrix. Overcoming these hurdles is paramount to realizing the exceptional oncolytic efficacy of NDV. We engineered the F protein of NDV and generated a recombinant NDV (rNDV) whose F protein is cleavable exclusively by prostate-specific antigen (PSA). The rNDV replicated efficiently and specifically in prostate cancer (CaP) cells and 3-dimensional prostaspheres but failed to replicate in the absence of PSA. Induction of intracellular PSA production by a synthetic androgen analog (R1881) enhanced fusogenicity in androgen-responsive CaP cells. Further, PSA-cleavable rNDV caused specific lysis of androgen-independent and androgen-responsive/nonresponsive CaP cells and prostaspheres, with a half-maximal effective concentration (EC50) ranging from a multiplicity of infection of 0.01 to 0.1. PSA-retargeted NDV efficiently lysed prostasphere tumor mimics, suggesting efficacy in vivo. Also, PSA-cleavable NDV failed to replicate in chicken embryos, indicating no pathogenicity for chickens. Prostate-specific antigen targeting is likely to enhance the therapeutic index of rNDV owing to tumor-restricted replication and enhanced fusogenicity.
Insights
Researchers engineered Newcastle disease virus (NDV) to target prostate cancer by modifying its F protein to be activated by prostate-specific antigen (PSA). This engineered oncolytic virus specifically replicates in and kills cancer cells, enhancing therapeutic potential.
Area of Science:
- Oncology
- Virology
- Biotechnology
Background:
- Oncolytic virus (OV) therapy uses replication-competent viruses for cancer treatment.
- Newcastle disease virus (NDV) shows promise as an OV due to inherent tumor selectivity and limited toxicity.
- Current NDV therapies require improvement for enhanced tumor targeting and overcoming biological barriers.
Purpose of the Study:
- To engineer a recombinant NDV (rNDV) with tumor-specific targeting capabilities.
- To enhance the therapeutic index of NDV by restricting its replication to prostate cancer cells via prostate-specific antigen (PSA) cleavage.
- To evaluate the efficacy and safety of PSA-targeted rNDV.
Main Methods:
- Engineered the F protein of NDV for exclusive cleavage by PSA.
- Generated a recombinant NDV (rNDV) with PSA-dependent replication.
- Tested rNDV replication and cytotoxicity in prostate cancer cells and 3D prostaspheres.
- Assessed the effect of androgen analog R1881 on rNDV fusogenicity.
- Evaluated rNDV replication in chicken embryos to assess pathogenicity.
Main Results:
- The engineered rNDV replicated efficiently and specifically in PSA-expressing prostate cancer cells and prostaspheres.
- Replication was dependent on the presence of PSA; rNDV failed to replicate in its absence.
- PSA-cleavable rNDV demonstrated specific lysis of various prostate cancer cell types and prostaspheres.
- Half-maximal effective concentrations (EC50) ranged from 0.01 to 0.1 MOI.
- rNDV showed no replication in chicken embryos, indicating safety for avian species.
Conclusions:
- PSA-targeting retargets NDV, enabling tumor-specific replication and enhanced fusogenicity.
- Engineered rNDV exhibits significant potential as a targeted oncolytic virus for prostate cancer.
- This approach may improve the therapeutic index of NDV by restricting its activity to tumor cells.

