A Novel Near‐IR Absorbing Ruthenium(II) Complex as Photosensitizer for Photodynamic Therapy and its Cetuximab Bioconjugates

Author:

Martínez‐Alonso Marta1,Gandioso Albert1,Thibaudeau Chloé23,Qin Xue23,Arnoux Philippe4,Demeubayeva Nurikamal4,Guérineau Vincent5,Frochot Céline4,Jung Alain C.23,Gaiddon Christian3,Gasser Gilles1ORCID

Affiliation:

1. Chimie ParisTech PSL University CNRS Institute of Chemistry for Life and Health Sciences Laboratory for Inorganic Chemical Biology 75005 Paris France

2. Laboratoire de Biologie Tumorale Institut de cancérologie Strasbourg Europe 67200 Strasbourg France

3. Université de Strasbourg-Inserm UMR_S 1113 IRFAC Laboratory « Streinth » 67200 Strasbourg France

4. Reactions and Chemical Engineering Laboratory Université de Lorraine LRGP-CNRS 54000 Nancy France

5. Université Paris-Saclay CNRS Institut de Chimie des Substances Naturelles UPR 2301 91198 Gif-sur-Yvette France

Abstract

AbstractA novel Ru(II) cyclometalated photosensitizer (PS), Ru‐NH2, for photodynamic therapy (PDT) of formula [Ru(appy)(bphen)2]PF6 (where appy=4‐amino‐2‐phenylpyridine and bphen=bathophenanthroline) and its cetuximab (CTX) bioconjugates, Ru‐Mal‐CTX and Ru‐BAA‐CTX (where Mal=maleimide and BAA=benzoylacrylic acid) were synthesised and characterised. The photophysical properties of Ru‐NH2 revealed absorption maxima around 580 nm with an absorption up to 725 nm. The generation of singlet oxygen (1O2) upon light irradiation was confirmed with a 1O2 quantum yield of 0.19 in acetonitrile. Preliminary in vitro experiments revealed the Ru‐NH2 was nontoxic in the dark in CT‐26 and SQ20B cell lines but showed outstanding phototoxicity when irradiated, reaching interesting phototoxicity indexes (PI) >370 at 670 nm, and >150 at 740 nm for CT‐26 cells and >50 with NIR light in SQ20B cells. The antibody CTX was successfully attached to the complexes in view of the selective delivery of the PS to cancer cells. Up to four ruthenium fragments were anchored to the antibody (Ab), as confirmed by MALDI‐TOF mass spectrometry. Nonetheless, the bioconjugates were not as photoactive as the Ru‐NH2 complex.

Publisher

Wiley

Subject

Organic Chemistry,Molecular Biology,Molecular Medicine,Biochemistry

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