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Updated: Feb 28, 2026

Injectable Supramolecular Polymer-Nanoparticle Hydrogels for Cell and Drug Delivery Applications
Published on: February 7, 2021
Polysaccharides and lignin based hydrogels with potential pharmaceutical use as a drug delivery system produced by a
Wissam Farhat1, Richard Venditti2, Nathalie Mignard3
1North Carolina State University, College of Natural Resources, Department of Forest Biomaterials, Raleigh, NC, USA; Université Jean Monnet, IMP, UMR CNRS 5223, Université de Lyon, F-42023 Saint-Etienne, France.
Abstract:
Currently, there is very strong interest to replace synthetic polymers with biological macromolecules of natural source for applications that interact with humans or the environment. This research describes the development of drug delivery hydrogels from natural polymers, starch, lignin and hemicelluloses by means of reactive extrusion. The hydrogels show a strong swelling ability dependent on pH which may be used to control diffusion rates of water and small molecules in and out of the gel. Also the hydrogels degradation rates were studied in a physiological solution (pH 7.4) for 15days. The results indicated that for all three macromolecules, lower molecular weight and higher level of plasticizer both increase the rate of weight loss of the hydrogels. The degradation was extremely reduced when the polymers were extruded in the presence of a catalyst. Finally the dynamic mechanical analysis revealed that the degradation of the hydrogels induce a significant reduction in the compressive modulus. This study demonstrates the characteristics and potential of natural polymers as a drug release system.
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