VaporLIFT: On‐Chip Chemical Synthesis of Glycan Microarrays

Author:

Tsouka Alexandra12,Mende Marco1,Heidepriem Jasmin12,Dallabernardina Pietro1,Garcia Ricardo Manuel1,Schmidt Tobias1,Bienert Klaus1,Seeberger Peter H.12,Loeffler Felix F.1ORCID

Affiliation:

1. Department of Biomolecular Systems Max Planck Institute of Colloids and Interfaces Am Muehlenberg 1 14476 Potsdam Germany

2. Institute of Chemistry and Biochemistry Freie Universität Berlin Arnimallee 22 14195 Berlin Germany

Abstract

AbstractLaser‐induced forward transfer (LIFT) of polymers is a versatile printing method for parallel in situ synthesis of peptides on microarrays. Chemical building blocks embedded in a polymer matrix are transferred and coupled in a desired pattern to a surface, generating peptides on microarrays by repetitive in situ solid‐phase synthesis steps. To date, the approach is limited to simple, heat induced chemical reactions. The VaporLIFT method, disclosed here, combines LIFT with chemical vapor glycosylation to rapidly generate glycans on microarray surfaces while maintaining inert, low temperature conditions required for glycosylations. Process design and parameter optimization enables the synthesis of a collection of glycans at defined positions on a glass surface. The synthetic structures are detected by mass spectrometry, fluorescently labeled glycan‐binding proteins, and covalent staining with fluorescent dyes. VaporLIFT is ideal for parallel screening of other chemical reactions, that require inert and well‐defined reaction conditions.

Funder

Bundesministerium für Bildung und Forschung

Max-Planck-Gesellschaft

Publisher

Wiley

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