Nanoparticles Targeted to Fibroblast Activation Protein Outperform PSMA for MRI Delineation of Primary Prostate Tumors

Author:

Dmochowska Nicole1ORCID,Milanova Valentina1,Mukkamala Ramesh2,Chow Kwok Keung1,Pham Nguyen T. H.3,Srinivasarao Madduri2,Ebert Lisa M.4,Stait‐Gardner Timothy5,Le Hien6,Shetty Anil7,Nelson Melanie7,Low Philip S.2,Thierry Benjamin1ORCID

Affiliation:

1. Future Industries Institute University of South Australia Adelaide South Australia 5095 Australia

2. Department of Chemistry and Institute for Drug Discovery Purdue University West Lafayette IN 47907 USA

3. Key Centre for Polymers and Colloids School of Chemistry The University of Sydney Sydney New South Wales 2006 Australia

4. Centre for Cancer Biology University of South Australia; SA Pathology; Cancer Clinical Trials Unit Royal Adelaide Hospital; Adelaide Medical School University of Adelaide Adelaide South Australia 5000 Australia

5. Nanoscale Organisation and Dynamics Group Western Sydney University Sydney New South Wales 2560 Australia

6. Department of Radiation Oncology Royal Adelaide Hospital Adelaide South Australia 5000 Australia

7. Ferronova Pty Ltd Mawson Lakes South Australia 5095 Australia

Abstract

AbstractAccurate delineation of gross tumor volumes remains a barrier to radiotherapy dose escalation and boost dosing in the treatment of solid tumors, such as prostate cancer. Magnetic resonance imaging (MRI) of tumor targets has the power to enable focal dose boosting, particularly when combined with technological advances such as MRI‐linear accelerator. Fibroblast activation protein (FAP) is overexpressed in stromal components of >90% of epithelial carcinomas. Herein, the authors compare targeted MRI of prostate specific membrane antigen (PSMA) with FAP in the delineation of orthotopic prostate tumors. Control, FAP, and PSMA‐targeting iron oxide nanoparticles were prepared with modification of a lymphotropic MRI agent (FerroTrace, Ferronova). Mice with orthotopic LNCaP tumors underwent MRI 24 h after intravenous injection of nanoparticles. FAP and PSMA nanoparticles produced contrast enhancement on MRI when compared to control nanoparticles. FAP‐targeted MRI increased the proportion of tumor contrast‐enhancing black pixels by 13%, compared to PSMA. Analysis of changes in R2 values between healthy prostates and LNCaP tumors indicated an increase in contrast‐enhancing pixels in the tumor border of 15% when targeting FAP, compared to PSMA. This study demonstrates the preclinical feasibility of PSMA and FAP‐targeted MRI which can enable targeted image‐guided focal therapy of localized prostate cancer.

Funder

National Health and Medical Research Council

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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