Assessment of in-vitro bioactivity, biodegradability and antibacterial activity of polymer-derived 3D printed åkermanite scaffolds

Author:

Dogrul Fulden,Bednarzig VeraORCID,Elsayed HamadaORCID,Liverani LilianaORCID,Galusek DušanORCID,Bernardo EnricoORCID,Boccaccini Aldo R.

Funder

H2020

Friedrich-Alexander-Universität Erlangen-Nürnberg

Ministry of Science and Technology of the People's Republic of China

Horizon 2020

Society for Anthropological Sciences

Publisher

Elsevier BV

Subject

Materials Chemistry,Biomaterials,Ceramics and Composites,Electronic, Optical and Magnetic Materials

Reference53 articles.

1. Stimulatory effects of the ionic products from Ca–Mg–Si bioceramics on both osteogenesis and angiogenesis in vitro;Zhai;Acta Biomat,2013

2. Three-dimensional printing akermanite porous scaffolds for load-bearing bone defect repair: an investigation of osteogenic capability and mechanical evolution;Liu;J. Biomater. Appl.,2016

3. Solution combustion synthesis of functional diopside, akermanite, and merwinite bioceramics: excellent biomineralization, mechanical strength, and antibacterial ability;Collin;Mater. Today Commun.,2021

4. Recent advances on akermanite calcium-silicate ceramic for biomedical applications;Zadehnajar;Int. National of Appl. Ceram. Tech.,2021

5. Antibacterial activity of silicate bioceramics;Hu;Journal of Wuhan University of Technology-Mater. Sci,2011

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