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Preparation and Characterization of Softwood and Hardwood Nanofibril Hydrogels: Toward Wound Dressing Applications.
Division of Materials Science, Luleå University of Technology, Sweden.
Umeå Plant Science Centre, Department of Forest Genetics and Plant Physiology, Swedish University of Agricultural Sciences, Umeå, Sweden..
Umeå Plant Science Centre, Department of Forest Genetics and Plant Physiology, Swedish University of Agricultural Sciences, Umeå, Sweden..
Linköping University, Faculty of Science & Engineering. Linköping University, Department of Physics, Chemistry and Biology, Biophysics and bioengineering.ORCID iD: 0000-0002-3893-7777
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2023 (English)In: Biomacromolecules, ISSN 1525-7797, E-ISSN 1526-4602, Vol. 24, no 12, p. 5605-5619Article in journal (Refereed) Published
Abstract [en]

Hydrogels of cellulose nanofibrils (CNFs) are promising wound dressing candidates due to their biocompatibility, high water absorption, and transparency. Herein, two different commercially available wood species, softwood and hardwood, were subjected to TEMPO-mediated oxidation to proceed with delignification and oxidation in a one-pot process, and thereafter, nanofibrils were isolated using a high-pressure microfluidizer. Furthermore, transparent nanofibril hydrogel networks were prepared by vacuum filtration. Nanofibril properties and network performance correlated with oxidation were investigated and compared with commercially available TEMPO-oxidized pulp nanofibrils and their networks. Softwood nanofibril hydrogel networks exhibited the best mechanical properties, and in vitro toxicological risk assessment showed no detrimental effect for any of the studied hydrogels on human fibroblast or keratinocyte cells. This study demonstrates a straightforward processing route for direct oxidation of different wood species to obtain nanofibril hydrogels for potential use as wound dressings, with softwood having the most potential.

Place, publisher, year, edition, pages
AMER CHEMICAL SOC , 2023. Vol. 24, no 12, p. 5605-5619
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Materials Engineering Paper, Pulp and Fiber Technology Medical Biotechnology
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URN: urn:nbn:se:liu:diva-199219DOI: 10.1021/acs.biomac.3c00596ISI: 001123805200001PubMedID: 37950687OAI: oai:DiVA.org:liu-199219DiVA, id: diva2:1813159
Note

Funding: Bio4Energy [RMX18-0039]; Swedish Foundation for Strategic Research; Swedish Metabolomics Center (SMC)

Available from: 2023-11-20 Created: 2023-11-20 Last updated: 2024-08-19

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Zattarin, ElisaJunker, JohanRakar, Jonathan

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Zattarin, ElisaAili, DanielSotra, ZeljanaRinklake, IvanaJunker, JohanRakar, Jonathan
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Faculty of Science & EngineeringBiophysics and bioengineeringDivision of Surgery, Orthopedics and OncologyFaculty of Medicine and Health SciencesCenter for Disaster Medicine and TraumatologyDepartment of Biomedical and Clinical Sciences
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Biomacromolecules
Materials EngineeringPaper, Pulp and Fiber TechnologyMedical Biotechnology

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