Abstract
Notwithstanding the advances achieved in the last decades in the field of synthetic bone substitutes, the development of biodegradable 3D-printed scaffolds with ideal mechanical and biological properties remains an unattained challenge. In the present work, a new approach to produce synthetic bone grafts that mimic complex bone structure is explored. For the first time, three scaffolds of various composition, namely polycaprolactone (PCL), PCL/hydroxyapatite nanoparticles (HANp) and PCL/HANp/diacrylate poly(ethylene glycol) (PEGDA), were manufactured by extrusion. Following the production and characterisation of the scaffolds, an in vitro evaluation was carried out using human dental pulp stem/stromal cells (hDPSCs). Through the findings, it was possible to conclude that, in all groups, the scaffolds were successfully produced presenting networks of interconnected channels, adequate porosity for migration and proliferation of osteoblasts (approximately 50%). Furthermore, according to the in vitro analysis, all groups were considered non-cytotoxic in contact with the cells. Nevertheless, the group with PEGDA revealed hydrophilic properties (15.15° ± 4.06) and adequate mechanical performance (10.41 MPa ± 0.934) and demonstrated significantly higher cell viability than the other groups analysed. The scaffolds with PEGDA suggested an increase in cell adhesion and proliferation, thus are more appropriate for bone regeneration. To conclude, findings in this study demonstrated that PCL, HANp and PEGDA scaffolds may have promising effects on bone regeneration and might open new insights for 3D tissue substitutes.
Funder
Fundação para a Ciência e Tecnologia
Reference99 articles.
1. Dental pulp stem cells and Bonelike(®) for bone regeneration in ovine model;Campos;Regen. Biomater.,2019
2. Resorbable biomaterials as bone graft substitutes;Bohner;Mater. Today,2010
3. Challenges in engineering large customized bone constructs;Forrestal;Biotechnol. Bioeng.,2017
4. Challenges on optimization of 3D-printed bone scaffolds;Bahraminasab;BioMedical Eng. OnLine,2020
5. Lopes, B., Sousa, P., Alvites, R., Branquinho, M., Sousa, A.C., Mendonça, C., Atayde, L.M., Luís, A.L., Varejão, A.S.P., and Maurício, A.C. (2022). Peripheral Nerve Injury Treatments and Advances: One Health Perspective. Int. J. Mol. Sci., 23.
Cited by
11 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献