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.

The Prostate
|July 12, 2018
PubMed
Abstract

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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