Targeted photodynamic therapy selectively kills activated fibroblasts in experimental arthritis

Author:

Dorst Daphne N12ORCID,Rijpkema Mark1,Boss Marti1,Walgreen Birgitte2,Helsen Monique M A2,Bos Desirée L1,Brom Maarten1,Klein Christian3,Laverman Peter1,van der Kraan Peter M2,Gotthardt Martin1,Koenders Marije I2,Buitinga Mijke4

Affiliation:

1. Department of Radiology and Nuclear Medicine, Radboud University Medical Center, Nijmegen, The Netherlands

2. Department of Experimental Rheumatology, Radboud University Medical Center, Nijmegen, The Netherlands

3. Roche Pharmaceutical Research and Early Development, Roche Innovation Center Zurich, Schlieren, Switzerland

4. Clinical and Experimental Endocrinology, KU Leuven, Leuven, Belgium

Abstract

Abstract Objective In RA, synovial fibroblasts become activated. These cells express fibroblast activation protein (FAP) and contribute to the pathogenesis by producing cytokines, chemokines and proteases. Selective depletion in inflamed joints could therefore constitute a viable treatment option. To this end, we developed and tested a new therapeutic strategy based on the selective destruction of FAP-positive cells by targeted photodynamic therapy (tPDT) using the anti-FAP antibody 28H1 coupled to the photosensitizer IRDye700DX. Methods After conjugation of IRDye700DX to 28H1, the immunoreactive binding and specificity of the conjugate were determined. Subsequently, tPDT efficiency was established in vitro using a 3T3 cell line stably transfected with FAP. The biodistribution of [111In]In-DTPA-28H1 with and without IRDye700DX was assessed in healthy C57BL/6N mice and in C57BL/6N mice with antigen-induced arthritis. The potential of FAP-tPDT to induce targeted damage was determined ex vivo by treating knee joints from C57BL/6N mice with antigen-induced arthritis 24 h after injection of the conjugate. Finally, the effect of FAP-tPDT on arthritis development was determined in mice with collagen-induced arthritis. Results 28H1-700DX was able to efficiently induce FAP-specific cell death in vitro. Accumulation of the anti-FAP antibody in arthritic knee joints was not affected by conjugation with the photosensitizer. Arthritis development was moderately delayed in mice with collagen-induced arthritis after FAP-tPDT. Conclusion Here we demonstrate the feasibility of tPDT to selectively target and kill FAP-positive fibroblasts in vitro and modulate arthritis in vivo using a mouse model of RA. This approach may have therapeutic potential in (refractory) arthritis.

Funder

ReumaNederland Foundation

Roche Pharmaceuticals

Publisher

Oxford University Press (OUP)

Subject

Pharmacology (medical),Rheumatology

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