2024
Macroporous Scaffolds Based on Biomass Polymers and Their Applications in Wound Healing
Gao D, Shipman W, Sun Y, Glahn J, Beraki L, Hsia H. Macroporous Scaffolds Based on Biomass Polymers and Their Applications in Wound Healing. Journal Of Bioresources And Bioproducts 2024 DOI: 10.1016/j.jobab.2024.12.001.Peer-Reviewed Original ResearchMacroporous scaffoldsTissue engineeringMacroporous tissue engineering scaffoldsTissue engineering scaffoldsBiomass materialsPetroleum-based polymersEngineering scaffoldsBiomedical polymersBicontinuous macroporesBiomass-based materialsPolymer wasteMacroporous constructsMicroparticle assemblyEnvironmental friendlinessPolymerTissue regenerationMacroporesBiomass polymersScaffoldsMaterialsEngineeringMedical applicationsCell behaviorBioprintingWaste
2020
Self-Assembled Nanomaterials for Chronic Skin Wound Healing
Kang HJ, Chen N, Dash BC, Hsia HC, Berthiaume F. Self-Assembled Nanomaterials for Chronic Skin Wound Healing. Advances In Wound Care 2020, 10: 221-233. PMID: 32487014, PMCID: PMC8024239, DOI: 10.1089/wound.2019.1077.Peer-Reviewed Original ResearchConceptsSelf-assembled nanomaterialsDrug delivery capabilityNanomaterialsWound healing applicationsTunable mechanicsExcellent biocompatibilityMultifunctional propertiesPhysiochemical propertiesMultiple functionalitiesDelivery systemComplex multifunctional structuresDelivery capabilityHealing applicationsWound dressingsPropertiesMultifunctional structuresLow costChronic wound healing applicationsBiocompatibilityGrowth factor delivery systemEffective wound therapyMaterialsDegradationMechanismStructure