Improved Multicellular Response, Biomimetic Mineralization, Angiogenesis, and Reduced Foreign Body Response of Modified Polydioxanone Scaffolds for Skeletal Tissue Regeneration

Author:

Goonoo Nowsheen12ORCID,Fahmi Amir3,Jonas Ulrich4ORCID,Gimié Fanny5,Arsa Imade Ait5,Bénard Sébastien6,Schönherr Holger1ORCID,Bhaw-Luximon Archana2

Affiliation:

1. Physical Chemistry I, Department of Chemistry and Biology & Research Center of Micro and Nanochemistry and Engineering (Cμ), University of Siegen, 57076 Siegen, Germany

2. Biomaterials, Drug Delivery and Nanotechnology Unit, Centre for Biomedical and Biomaterials Research (CBBR), MSIRI Building, University of Mauritius, 80837 Réduit, Mauritius

3. Faculty of Technology and Bionics, Rhine-Waal University of Applied Sciences, Hochschule Rhein-Waal, Marie-Curie-Straße 1, 47533 Kleve, Germany

4. Macromolecular Chemistry, Department of Chemistry and Biology, University of Siegen, 57076 Siegen, Germany

5. Animalerie, Plateforme de recherche CYROI, 2 rue Maxime Rivière, 97490 Sainte Clotilde, Ile de La Réunion, France

6. RIPA, Plateforme de recherche CYROI, 2 rue Maxime Rivière, 97490 Sainte Clotilde, Ile de La Réunion, France

Funder

Alexander von Humboldt-Stiftung

FP7 Ideas: European Research Council

Mauritius Research Council

NanoMauRe Project

Publisher

American Chemical Society (ACS)

Subject

General Materials Science

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