Fibroblast Activation Protein-Targeting Minibody-IRDye700DX for Ablation of the Cancer-Associated Fibroblast with Photodynamic Therapy

Author:

Smeets Esther M. M.1ORCID,Dorst Daphne N.2ORCID,Franssen Gerben M.1,van Essen Merijn S.1,Frielink Cathelijne1,Stommel Martijn W. J.3,Trajkovic-Arsic Marija45,Cheung Phyllis F.45,Siveke Jens T.45ORCID,Wilson Ian6,Mascioni Alessandro6,Aarntzen Erik H. J. G.1ORCID,van Lith Sanne A. M.1ORCID

Affiliation:

1. Department of Medical Imaging, Radboud University Medical Center, 6525 GA Nijmegen, The Netherlands

2. Department of Experimental Rheumatology, Radboud Institute for Molecular Life Sciences, 6525 GA Nijmegen, The Netherlands

3. Department of Surgery, Radboud University Medical Center, 6525 GA Nijmegen, The Netherlands

4. Bridge Institute of Experimental Tumour Therapy, West German Cancer Centre, University Hospital Essen, University of Duisburg-Essen, 47057 Essen, Germany

5. Division of Solid Tumour Translational Oncology, German Cancer Consortium (DKTK Partner Site Essen) and German Cancer Research Centre, DKFZ, 69120 Heidelberg, Germany

6. ImaginAb, Inglewood, CA 90301, USA

Abstract

Fibroblast activation protein (FAP), expressed on cancer-associated fibroblasts, is a target for diagnosis and therapy in multiple tumour types. Strategies to systemically deplete FAP-expressing cells show efficacy; however, these induce toxicities, as FAP-expressing cells are found in normal tissues. FAP-targeted photodynamic therapy offers a solution, as it acts only locally and upon activation. Here, a FAP-binding minibody was conjugated to the chelator diethylenetriaminepentaacetic acid (DTPA) and the photosensitizer IRDye700DX (DTPA-700DX-MB). DTPA-700DX-MB showed efficient binding to FAP-overexpressing 3T3 murine fibroblasts (3T3-FAP) and induced the protein’s dose-dependent cytotoxicity upon light exposure. Biodistribution of DTPA-700DX-MB in mice carrying either subcutaneous or orthotopic tumours of murine pancreatic ductal adenocarcinoma cells (PDAC299) showed maximal tumour uptake of 111In-labelled DTPA-700DX-MB at 24 h post injection. Co-injection with an excess DTPA-700DX-MB reduced uptake, and autoradiography correlated with FAP expression in the stromal tumour region. Finally, in vivo therapeutic efficacy was determined in two simultaneous subcutaneous PDAC299 tumours; only one was treated with 690 nm light. Upregulation of an apoptosis marker was only observed in the treated tumours. In conclusion, DTPA-700DX-MB binds to FAP-expressing cells and targets PDAC299 tumours in mice with good signal-to-background ratios. Furthermore, the induced apoptosis indicates the feasibility of targeted depletion of FAP-expressing cells with photodynamic therapy.

Funder

Radboud Institute for Molecular Life Sciences

Radboud Oncologie Fonds (ROF)and Stichting Bergh in het Zadel, partner of Dutch Cancer Society

Publisher

MDPI AG

Subject

General Medicine

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