Filtry
wszystkich: 11
Wyniki wyszukiwania dla: silk fibroin
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How to Improve Physico-Chemical Properties of Silk Fibroin Materials for Biomedical Applications?—Blending and Cross-Linking of Silk Fibroin—A Review
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Chitosan/Silk Fibroin Materials for Biomedical Applications—A Review
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Effect of Nanohydroxyapatite on Silk Fibroin–Chitosan Interactions—Molecular Dynamics Study
PublikacjaFibroin–chitosan composites, especially those containing nanohydroxyapatite, show potential for bone tissue regeneration. The physicochemical properties of these biocomposites depend on the compatibility between their components. In this study, the intermolecular interactions of fibroin and chitosan were analyzed using a molecular dynamics approach. Two types of systems were investigated: one containing acetic acid and the other...
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Polymer films based on silk fibroin and collagen - the physico-chemical properties
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Preparation and characterization of silk fibroin/collagen sponge modified by chemical cross-linking
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Silk Fibroin/Collagen/Chitosan Scaffolds Cross-Linked by a Glyoxal Solution as Biomaterials toward Bone Tissue Regeneration
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Physico-Chemical Characterization and Biological Tests of Collagen/Silk Fibroin/Chitosan Scaffolds Cross-Linked by Dialdehyde Starch
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Biomaterials with Potential Use in Bone Tissue Regeneration—Collagen/Chitosan/Silk Fibroin Scaffolds Cross-Linked by EDC/NHS
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Biopolymer based nanomaterials in drug delivery systems: A review
PublikacjaDrug delivery systems (DDS) are used to achieve a higher therapeutic effects of a pharmaceutical drug or natural compound in a specific diseased site with minimal toxicological effect and these systems consists of liposomes, microspheres, gels, prodrugs and many. Nanotechnology is a rapidly developing multi-disciplinary science that ensures the fabrication of the polymers to nanometer scale for various medical applications. Uses...
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Sylwia Grabska-Zielińska dr
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Piotr Jabłoński
OsobyJestem naukowcem pracującym w Akademii Górniczo-Hutniczej im. Stanisława Staszica w Krakowie. Swoje badania prowadzę w dyscyplinie inżynieria materiałowa. W zakres moich zainteresowań badawczych wchodzą bioaktywne materiały kompozytowe na bazie biopolimerów oraz nanocząstek metali szlachetnych.