Christos Leliopoulos
Visiting researcher at Department of Chemistry - Ångström Laboratory; Macromolecular Chemistry
- E-mail:
- christos.leliopoulos@kemi.uu.se
- Visiting address:
- Lägerhyddsvägen 1
- Postal address:
- Box 538
751 21 Uppsala
Publications
Recent publications
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Part of Biomaterials Advances, 2026
- DOI for Direct ink writing of collagen scaffolds functionalized with antimicrobial peptides: A proof-of-concept study for bone tissue engineering
- Download full text (pdf) of Direct ink writing of collagen scaffolds functionalized with antimicrobial peptides: A proof-of-concept study for bone tissue engineering
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2026
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Quantitative Assessment of Chemical Modifications of Macromolecules through Counterion Measurement
Part of Chemistry of Materials, p. 442-453, 2026
- DOI for Quantitative Assessment of Chemical Modifications of Macromolecules through Counterion Measurement
- Download full text (pdf) of Quantitative Assessment of Chemical Modifications of Macromolecules through Counterion Measurement
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Direct ink writing of osteoconductive scaffolds using a crosslinked collagen–hydroxyapatite ink
Part of Biofabrication, 2026
- DOI for Direct ink writing of osteoconductive scaffolds using a crosslinked collagen–hydroxyapatite ink
- Download full text (pdf) of Direct ink writing of osteoconductive scaffolds using a crosslinked collagen–hydroxyapatite ink
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Part of Biomacromolecules, p. 7767-7777, 2025
- DOI for Residue-Based Thermogravimetric Analysis: A Novel Method to Quantify Carboxylate Group Modifications in Macromolecules
- Download full text (pdf) of Residue-Based Thermogravimetric Analysis: A Novel Method to Quantify Carboxylate Group Modifications in Macromolecules
All publications
Articles in journal
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Part of Biomaterials Advances, 2026
- DOI for Direct ink writing of collagen scaffolds functionalized with antimicrobial peptides: A proof-of-concept study for bone tissue engineering
- Download full text (pdf) of Direct ink writing of collagen scaffolds functionalized with antimicrobial peptides: A proof-of-concept study for bone tissue engineering
-
Quantitative Assessment of Chemical Modifications of Macromolecules through Counterion Measurement
Part of Chemistry of Materials, p. 442-453, 2026
- DOI for Quantitative Assessment of Chemical Modifications of Macromolecules through Counterion Measurement
- Download full text (pdf) of Quantitative Assessment of Chemical Modifications of Macromolecules through Counterion Measurement
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Direct ink writing of osteoconductive scaffolds using a crosslinked collagen–hydroxyapatite ink
Part of Biofabrication, 2026
- DOI for Direct ink writing of osteoconductive scaffolds using a crosslinked collagen–hydroxyapatite ink
- Download full text (pdf) of Direct ink writing of osteoconductive scaffolds using a crosslinked collagen–hydroxyapatite ink
-
Part of Biomacromolecules, p. 7767-7777, 2025
- DOI for Residue-Based Thermogravimetric Analysis: A Novel Method to Quantify Carboxylate Group Modifications in Macromolecules
- Download full text (pdf) of Residue-Based Thermogravimetric Analysis: A Novel Method to Quantify Carboxylate Group Modifications in Macromolecules
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Part of European journal of pharmaceutics and biopharmaceutics, 2024
- DOI for Development of a simple paste for 3D printing of drug formulations containing a mesoporous material loaded with a poorly water-soluble drug
- Download full text (pdf) of Development of a simple paste for 3D printing of drug formulations containing a mesoporous material loaded with a poorly water-soluble drug
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