Trifan, A.; Liciu, E.; Busuioc, C.; Stancu, I.-C.; Banciu, A.; Nicolae, C.; Dragomir, M.; Cristea, D.-D.; Sabău, R.-E.; Nițulescu, D.-A.;
et al. Developing Bioengineered 3D-Printed Composite Scaffolds with Antimicrobial Potential for Bone Tissue Regeneration. J. Funct. Biomater. 2025, 16, 227.
https://doi.org/10.3390/jfb16060227
AMA Style
Trifan A, Liciu E, Busuioc C, Stancu I-C, Banciu A, Nicolae C, Dragomir M, Cristea D-D, Sabău R-E, Nițulescu D-A,
et al. Developing Bioengineered 3D-Printed Composite Scaffolds with Antimicrobial Potential for Bone Tissue Regeneration. Journal of Functional Biomaterials. 2025; 16(6):227.
https://doi.org/10.3390/jfb16060227
Chicago/Turabian Style
Trifan, Andreea, Eduard Liciu, Cristina Busuioc, Izabela-Cristina Stancu, Adela Banciu, Carmen Nicolae, Mihai Dragomir, Doru-Daniel Cristea, Rosina-Elena Sabău, David-Andrei Nițulescu,
and et al. 2025. "Developing Bioengineered 3D-Printed Composite Scaffolds with Antimicrobial Potential for Bone Tissue Regeneration" Journal of Functional Biomaterials 16, no. 6: 227.
https://doi.org/10.3390/jfb16060227
APA Style
Trifan, A., Liciu, E., Busuioc, C., Stancu, I.-C., Banciu, A., Nicolae, C., Dragomir, M., Cristea, D.-D., Sabău, R.-E., Nițulescu, D.-A., & Paraschiv, A.
(2025). Developing Bioengineered 3D-Printed Composite Scaffolds with Antimicrobial Potential for Bone Tissue Regeneration. Journal of Functional Biomaterials, 16(6), 227.
https://doi.org/10.3390/jfb16060227