Authors: Pätzold, Florian
Stamm, Nils
Kamps, Dominic
Specht, Maria
Bolduan, Patrick
Dehmelt, Leif
Weberskirch, Ralf
Title: Synthesis and characterization of cationic hydrogels from thiolated copolymers for independent manipulation of mechanical and chemical properties of cell substrates
Language (ISO): en
Abstract: Cells sense both mechanical and chemical properties in their environment and respond to these inputs with altered phenotypes. Precise and selective experimental manipulations of these environmental cues require biocompatible synthetic materials, for which multiple properties can be fine-tuned independently from each other. For example, cells typically show critical thresholds for cell adhesion as a function of substrate parameters such as stiffness and the degree of functionalization. However, the choice of tailor-made, defined materials to produce such cell adhesion substrates is still very limited. Here, a platform of synthetic hydrogels based on well-defined thiolated copolymers is presented. Therefore, four disulfide crosslinked hydrogels of different composition by free radical polymerization are prepared. After cleavage with dithiothreitol, four soluble copolymers P1–P4 with 0–96% cationic monomer content are obtained. P1 and P4 are then combined with PEGDA3500 as a crosslinker, to fabricate 12 hydrogels with variable elasticity, ranging from 8.1 to 26.3 kPa and cationic group concentrations of up to 350 µmol cm−3. Systematic analysis using COS7 cells shows that all of these hydrogels are nontoxic. However, successful cell adhesion requires both a minimal elasticity and a minimal cationic group concentration.
Subject Headings: cell adhesion
COS7 cell
hydrogel
Michael reaction
precursor polymer
Subject Headings (RSWK): Zelladhäsion
Hydrogel
Michael-Addition
Präkursor
Polymere
URI: http://hdl.handle.net/2003/42374
http://dx.doi.org/10.17877/DE290R-24211
Issue Date: 2022-02-20
Rights link: https://creativecommons.org/licenses/by/4.0/
Appears in Collections:Organische Chemie



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