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Updated: Feb 8, 2026

Pre-clinical Orthotopic Murine Model of Human Prostate Cancer
Published on: August 29, 2016
Development of an orthotopic canine prostate cancer model expressing human GRPr
Michael F Tweedle1, Haiming Ding1, William T Drost2
1Deptartment of Radiology, The Wright Center for Innovation in Biomolecular Imaging, The Ohio State University, Columbus, Ohio.
Background:
Ace-1 canine prostate cancer cells grow orthotopically in cyclosporine immunosuppressed laboratory beagles. We previously transfected (human Gastrin-Releasing Peptide Receptor, huGRPr) into Ace-1 cells and demonstrated receptor-targeted NIRF imaging with IR800-G-Abz4-t-BBN, an agonist to huGRPr. Herein, we used the new cell line to develop the first canine prostate cancer model expressing a human growth factor receptor.
Methods:
Dogs were immunosuppressed with cyclosporine, azathioprine, prednisolone, and methylprednisolone. Their prostate glands were implanted with Ace-1huGRPr cells. The implantation wounds were sealed with a cyanoacrylic adhesive to prevent extraprostatic tumor growth. Intraprostatic tumors grew in 4-5 week. A lobar prostatic artery was then catheterized via the carotid artery and 25-100 nmol IR800-Abz4-t-BBN was infused in 2 mL followed by euthanasia in dogs 1-2, and recovery for 24 h before euthanasia in dogs 3-6. Excised tissues were imaged optically imaged, and histopathology performed.
Results:
Dog1 grew no tumors with cyclosporine alone. Using the four drug protocol, Dogs 2-6 grew abundant 1-2 mm intracapsular and 1-2 cm intraglandular tumors. Tumors grew >5 cm when the prostate cancer cells became extracapsular. Dogs 4-6 with sealed prostatic capsule implantation sites had growth of intracapsular and intraglandular tumors and LN metastases at 5 weeks. High tumor to background BPH signal in the NIRF images of sectioned prostate glands resulted from the 100 nmol dose (∼8 nmol/kg) in dogs 2-4 and 50 nmol dose in dog 5, but not from the 25 nmol dose in Dog 6. Imaging of mouse Ace-1huGRPr tumors required an intravenous dose of 500 nmol/kg body wt. A lymph node that drained the prostate gland was detectable in Dog 4. Histologic findings confirmed the imaging data.
Conclusion:
Ace-1huGRPr cells created viable, huGRPr-expressing tumors when implanted orthotopically into immune-suppressed dogs. Local delivery of an imaging agent through the prostatic artery allowed a very low imaging dose, suggesting that therapeutic agents could be used safely for treatment of early localized intraglandular prostate cancer as adjuvant therapy for active surveillance or focal ablation therapies, or for treating multifocal intraglandular disease where focal ablation therapies are not indicated or ineffective.
Insights
A new canine prostate cancer model was developed using Ace-1 cells expressing the human gastrin-releasing peptide receptor (huGRPr). This model enables targeted near-infrared fluorescence (NIRF) imaging and potential therapeutic applications for localized prostate cancer.
Area of Science:
- Oncology
- Veterinary Medicine
- Medical Imaging
Background:
- Ace-1 canine prostate cancer cells were engineered to express the human gastrin-releasing peptide receptor (huGRPr).
- This created the first canine prostate cancer model expressing a human growth factor receptor for preclinical studies.
- Previous work demonstrated receptor-targeted NIRF imaging using a huGRPr agonist.
Purpose of the Study:
- To develop and characterize a novel canine prostate cancer model expressing huGRPr.
- To evaluate the efficacy of targeted NIRF imaging in this new model.
- To explore the potential for localized therapeutic delivery in canine prostate cancer.
Main Methods:
- Canine prostate cancer cells (Ace-1huGRPr) were implanted orthotopically into immunosuppressed beagles.
- Tumor growth was monitored, and a huGRPr-targeting NIRF imaging agent (IR800-Abz4-t-BBN) was delivered via prostatic artery catheterization.
- Excised tissues were analyzed using optical imaging and histopathology.
Main Results:
- The Ace-1huGRPr cell line successfully formed orthotopic tumors in immunosuppressed dogs.
- Targeted NIRF imaging demonstrated high tumor-to-background signal with optimized imaging agent doses delivered locally.
- Histopathology confirmed tumor presence and imaging agent uptake, with detection of metastatic lymph nodes.
Conclusions:
- The developed canine model is viable for studying huGRPr-expressing prostate tumors.
- Local delivery of imaging agents via the prostatic artery allows for low-dose administration.
- This approach holds promise for targeted therapies in early-stage, localized prostate cancer.
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