Exploring the Chemical Properties and Medicinal Applications of Tetramethylthiocycloheptyne Sulfoximine Used in Strain-Promoted Azide–Alkyne Cycloaddition Reactions

Publication date

2023-08

Authors

Timmers, MattISNI 0000000512624344
Kipper, Andi
Frey, Raphael
Notermans, Stef
Voievudskyi, Maksym
Wilson, Claire
Hentzen, Nina
Ringle, Michael
Bovino, Clara
Stump, Bernhard

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

The recently developed compound, tetramethylthiocycloheptyne sulfoximine (TMTHSI), has shown to be a promising strained alkyne for strain-promoted azide–alkyne cycloaddition (SPAAC), metal-free click chemistry. This research explores the properties of TMTHSI-based compounds via three aspects: (1) large-scale production, (2) unique stability in acidic conditions and its subsequent use in peptide synthesis, and (3) the functionalization of antibodies. Here, it is shown that (1) scale-up is achieved on a scale of up to 100 g. (2) TMTHSI is remarkably stable against TFA allowing for the site-specific functionalization of peptides on resin. Finally, (3) the functionalization of an antibody with a model payload is very efficient, with antibody conjugation demonstrating more beneficial features such as a high yield and limited hydrophobicity as compared to other alkyne reagent conjugates. These results illustrate the high potential of TMTHSI for diverse bioconjugation applications, with production already being GMP-compatible and a highly efficient conversion resulting in attractive costs of goods.

Keywords

bio-orthogonal chemistry, bioconjugation, click chemistry, SPAAC, stability, Molecular Medicine, Pharmaceutical Science, Drug Discovery

Citation

Timmers, M, Kipper, A, Frey, R, Notermans, S, Voievudskyi, M, Wilson, C, Hentzen, N, Ringle, M, Bovino, C, Stump, B, Rijcken, C J F, Vermonden, T, Dijkgraaf, I & Liskamp, R 2023, 'Exploring the Chemical Properties and Medicinal Applications of Tetramethylthiocycloheptyne Sulfoximine Used in Strain-Promoted Azide–Alkyne Cycloaddition Reactions', Pharmaceuticals, vol. 16, no. 8, 1155. https://doi.org/10.3390/ph16081155