4.3 Article

3D-printed alginate-hydroxyapatite aerogel scaffolds for bone tissue engineering

出版社

ELSEVIER
DOI: 10.1016/j.msec.2021.112525

关键词

3D-printing; Supercritical drying; Aerogel; Bone scaffold; Hydroxyapatite

资金

  1. Xunta de Galicia [ED431C 2020/17, ED481A-2020/104]
  2. MICINN [PID2020-120010RB-I00]
  3. Agencia Estatal de Investigacion [AEI]
  4. FEDER funds
  5. COST Action [CA18125]
  6. European Commission

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3D printing technology plays a vital role in the manufacturing of functional structures with customized geometries and compositions, especially in the field of tissue engineering.
3D-printing technology allows the automated and reproducible manufacturing of functional structures for tissue engineering with customized geometries and compositions by depositing materials layer-by-layer with high precision. For these purposes, the production of bioactive gel-based 3D-scaffolds made of biocompatible materials with well-defined internal structure comprising a dual (mesoporous and macroporous) and highly interconnected porosity is essential. In this work, aerogel scaffolds for bone regeneration purposes were obtained by an innovative strategy that combines the 3D-printing of alginate-hydroxyapatite (HA) hydrogels and the supercritical CO2 drying of the gels. BET and SEM analyses were performed to assess the textural parameters of the obtained aerogel scaffolds and the dimensional accuracy to the original computer-aided design (CAD) design was also evaluated. The biological characterization of the aerogel scaffolds was also carried out regarding cell viability, adhesion and migration capacity. The obtained alginate-HA aerogel scaffolds were highly porous, biocompatible, with high fidelity to the CAD-pattern and also allowed the attachment and proliferation of mesenchymal stem cells (MSCs). An enhancement of the fibroblast migration toward the damaged area was observed in the presence of the aerogel formulations tested, which is positive in terms of bone regeneration.

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