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Florian Lackner

Graz University of Technology - Institute of Chemistry and Technology of Biobased System (IBioSys)

Graz

Austria

SCHOLARLY PAPERS

3

DOWNLOADS

135

TOTAL CITATIONS

0

Scholarly Papers (3)

1.

Functional Coatings of Antithrombogenic Polysaccharides on Polyester Biomaterials to Improve Hemocompatibility, Protein-Repellence and Endothelial Cell Response

Number of pages: 48 Posted: 01 Apr 2024
University of Maribor, Ludwig Boltzmann Institute for Lung Vascular Research, University of Maribor, Graz University of Technology - Institute of Chemistry and Technology of Biobased System (IBioSys), Graz University of Technology, Graz University of Technology, University of Jena, Medical University of Graz - Experimental Anaesthesiology, Department of Anaesthesiology and Intensive Care Medicine, Graz University of Technology - Institute of Chemistry and Technology of Biobased System (IBioSys), Medical University of Graz and Graz University of Technology - Institute of Chemistry and Technology of Biobased System (IBioSys)
Downloads 64 (924,743)

Abstract:

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Sulfated polysaccharides, polycaprolactone, coating, hemocompatability, endothelial cells, proteins, adhesion, vascular grafts

2.

Tailoring mechanical and functional properties of 3D-printed nanocellulose-alginate scaffolds via alternative ionic crosslinkers

Number of pages: 38 Posted: 07 Oct 2025
Graz University of Technology, Graz University of Technology - Institute of Chemistry and Technology of Biobased System (IBioSys), Graz University of Technology, affiliation not provided to SSRN, Graz University of Technology - Institute of Chemistry and Technology of Biobased System (IBioSys), Graz University of Technology - Institute of Chemistry and Technology of Biobased System (IBioSys) and Graz University of Technology - Institute of Chemistry and Technology of Biobased System (IBioSys)
Downloads 38 (1,209,354)

Abstract:

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3D printing, nanocellulose, alginate, metal carbonates, ionic-crosslinking, mechanical properties.

3.

Organic Acid Crosslinked 3D Printed Cellulose Nanocomposite Bioscaffolds With Controlled Porosity, Mechanical Strength and Biocompatibility

Number of pages: 67 Posted: 09 Nov 2021
University of Maribor - Laboratory for Characterization and Processing of Polymers, University of Maribor - Laboratory for Characterization and Processing of Polymers, Graz University of Technology - Institute of Chemistry and Technology of Biobased System (IBioSys), University of Maribor - Laboratory for Characterization and Processing of Polymers, Universität für Bodenkultur Wien (BOKU) - Institute of Wood Technology and Renewable Materials, University of Maribor - Institute of Biomedical Sciences, Slovenian NMR Center - National Institute of Chemistry, Graz University of Technology - Institute of Chemistry and Technology of Biobased System (IBioSys), Universidade de Aveiro - Center for Mechanical Technology and Automation, Slovenian NMR Center - National Institute of Chemistry, University of Maribor - Institute of Biomedical Sciences, Universität für Bodenkultur Wien (BOKU) - Institute of Chemistry of 24 Renewable Resources, Graz University of Technology - Institute of Chemistry and Technology of Biobased System (IBioSys) and Graz University of Technology - Institute of Chemistry and Technology of Biobased System (IBioSys)
Downloads 33 (1,277,121)

Abstract:

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Porous scaffolds, nanofibrillated cellulose, carboxymethylcellulose, citric acid, crosslinking, 3D printing, osteoblasts, tissue engineering