Wood-Derived Hydrogels as a Platform for Drug-Release Systems

Wood (cellulose and lignin)-based hydrogels were successfully produced as platforms for drug-release systems. Viscoelastic and cross-linking behaviors of precursor solutions were tuned to produce highly porous hydrogel architectures via freeze-drying. Pore sizes in the range of 100–160 μm were obtai...

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Veröffentlicht in:ACS sustainable chemistry & engineering 2021-02, Vol.9 (6), p.2515-2522
Hauptverfasser: Culebras, Mario, Barrett, Anthony, Pishnamazi, Mahboubeh, Walker, Gavin Michael, Collins, Maurice N
Format: Artikel
Sprache:eng
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Zusammenfassung:Wood (cellulose and lignin)-based hydrogels were successfully produced as platforms for drug-release systems. Viscoelastic and cross-linking behaviors of precursor solutions were tuned to produce highly porous hydrogel architectures via freeze-drying. Pore sizes in the range of 100–160 μm were obtained. Varying lignin molecular structure played a key role in tailoring swelling and mechanical performance of these gels with organosolv-type lignin showing optimum properties due to its propensity for intermolecular cross-linking, achieving a compressive modulus around 11 kPa. Paracetamol was selected as a standard drug for release tests and its release rate was improved with the presence of lignin (50% more compared to pure cellulose hydrogels). This was attributed to a reduction in molecular interactions between paracetamol and cellulose. These results highlight the potential for the valorization of lignin as a platform for drug-release systems.
ISSN:2168-0485
2168-0485
DOI:10.1021/acssuschemeng.0c08022