Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/49730
Title: APPLYING DISSOCIATIVE CHEMISTRY TO OBTAIN GRADIENT HYDROGELS
Authors: VAN BALLAER, Brent 
Vandijck, Ruben
Polleunis, Noor
Alem-Marchand, Halima
GRAULUS, Geert-Jan 
Issue Date: 2026
Publisher: Royal Flemisch Chemical Society
Source: 10th EuChemS Chemistry Congress (ECC10), Antwerp, Belgium, 2026, July 12-16
Abstract: Gradients in the extracellular matrix (ECM) are essential for tissue development, the functioning of the human body, and disease progression, such as in pancreatic cancer (PDAC), where the ECM’s mechanical properties correlate with staging of the disease. Studying PDAC in vitro requires models that mimic the mechanical anisotropy of the ECM. We present an innovative approach to create hydrogels with tunable stiffness gradients using dissociative bioorthogonal chemistry. Our method uses cross-linkers that can be selectively cleaved by a diffusing chemical agent as the external trigger. Controlling the spatial distribution of this cleavage agent allows the formation of continuous stiffness gradients in hydrogels. PEG-based hydrogels were selected as versatile, biocompatible model systems. In depth characterization relates the hydrogels’ mechanical properties (obtained via compression testing) to their molecular structure (studied via NMR spectroscopy or derived from gel characteristics) and the reaction kinetics of the studied dissociative chemistry. This contribution showcases a novel application of dissociative bioorthogonal chemistry. The resulting materials are expected to better emulate the complex tumor microenvironment and may provide a powerful platform for fundamental cancer research by enabling precise studies of how mechanical cues influence tumor development, cellular behavior, and disease progression.
Keywords: Gradient Hydrogels;Tetrazines;PEG;Dissociative Chemistry;PDAC
Document URI: http://hdl.handle.net/1942/49730
Category: C2
Type: Conference Material
Appears in Collections:Research publications

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