Polyoxazolines with a Vicinally Double-Bioactivated Terminus for Biomacromolecular Affinity Assessment

Sensors (Basel). 2021 May 1;21(9):3153. doi: 10.3390/s21093153.

Abstract

Interactions between proteins and carbohydrates with larger biomacromolecules, e.g., lectins, are usually examined using self-assembled monolayers on target gold surfaces as a simplified model measuring setup. However, most of those measuring setups are either limited to a single substrate or do not allow for control over ligand distance and spacing. Here, we develop a synthetic strategy, consisting of a cascade of a thioesterification, native chemical ligation (NCL) and thiol-ene reaction, in order to create three-component polymer conjugates with a defined double bioactivation at the chain end. The target architecture is the vicinal attachment of two biomolecule residues to the α telechelic end point of a polymer and a thioether group at the ω chain end for fixating the conjugate to a gold sensor chip surface. As proof-of-principle studies for affinity measurements, we demonstrate the interaction between covalently bound mannose and ConA in surface acoustic wave (SAW) and surface plasmon resonance (SPR) experiments.

Keywords: functionalization; lectin; polyoxazolines.

MeSH terms

  • Concanavalin A
  • Gold*
  • Lectins
  • Mannose
  • Oxazoles / chemistry*
  • Surface Plasmon Resonance*

Substances

  • Lectins
  • Oxazoles
  • Concanavalin A
  • Gold
  • Mannose