Chemical Production of Cytotoxic Bispecific Antibodies Using the Ugi Multicomponent Reaction

Author:

Vaur Valentine1,Koutsopetras Ilias1,Erb Stéphane23,Jackowska Bianka4,Benazza Rania23,Cahuzac Héloïse1,Detappe Alexandre5,Hernandez‐Alba Oscar23,Cianférani Sarah23,Scott Christopher J.4,Chaubet Guilhem1ORCID

Affiliation:

1. Bio-Functional Chemistry (UMR 7199) Institut du Médicament Strasbourg University of Strasbourg 74 Route du Rhin 67400 Illkirch-Graffenstaden France

2. Laboratoire de Spectrométrie de Masse BioOrganique (LSMBO) Université de Strasbourg, CNRS, IPHC UMR 7178 67000 Strasbourg France

3. Infrastructure Nationale de Protéomique ProFI – FR2048 67087 Strasbourg France

4. Patrick G Johnston Centre for Cancer Research School of Medicine Dentistry and Biomedical Sciences Queen's University Belfast Belfast BT9 7BL U.K.

5. Institut de Cancérologie Strasbourg Europe Strasbourg France

Abstract

AbstractBispecific antibodies (bsAbs) have recently emerged as a promising platform for the treatment of several conditions, most importantly cancer. Based on the combination of two different antigen‐binding motifs in a single macromolecule; bsAbs can either display the combined characteristics of their parent antibodies, or new therapeutic features, inaccessible by the sole combination of two distinct antibodies. While bsAbs are traditionally produced by molecular biology techniques, the chemical development of bsAbs holds great promises and strategies have just begun to surface. In this context, we took advantage of a chemical strategy based on the use of the Ugi reaction for the site‐selective conjugation of whole antibodies and coupled the resulting conjugates in a bioorthogonal manner with Fab fragments, derived from various antibodies. We thus managed to produce five different bsAbs with 2 : 1 valency, with yields ranging from 20 % to 48 %, and showed that the affinity of the parent antibody was preserved in all bsAbs. We further demonstrated the interest of our strategy by producing two other bsAbs behaving as cytotoxic T cell engagers with IC50 values in the picomolar range in vitro.

Publisher

Wiley

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