IMPLANTATION OF BIOACTIVE MATERIALS AND REGENERATION STIMULATORS DURING SURGICAL INTERVENTIONS: MODERN APPROACHES TO TISSUE REPAIR
Abstract
The rapid development of regenerative medicine has significantly influenced modern surgical practice. Traditional surgical treatment focuses primarily on the removal of damaged tissues and restoration of anatomical integrity. However, postoperative healing often remains prolonged and may be complicated by inflammation, infection, fibrosis, and impaired tissue regeneration.
References
- Langer R., Vacanti J.P. Tissue engineering. Science. 1993;260(5110):920–926.
- Murphy S.V., Atala A. 3D bioprinting of tissues and organs. Nature Biotechnology. 2014;32(8):773–785.
- O'Brien F.J. Biomaterials and scaffolds for tissue engineering. Materials Today. 2011;14(3):88–95.
- Qu J., Zhao X., Liang Y. Zhang T., Ma P.X., Guo B. Injectable antibacterial conductive nanocomposite hydrogel for tissue engineering. ACS Applied Materials & Interfaces. 2018;10(45):38644–38654.
- Zhang Y., Yu J., Ren K., Zuo J., Ding J., Chen X. Advances in regenerative biomaterials and nanotechnology. Bioactive Materials. 2023;21:1–15.
- Bose S., Vahabzadeh S., Bandyopadhyay A. Bone tissue engineering using 3D printing. Materials Today. 2013;16(12):496–504.
- Wang Y., Katagiri H., Wang B., et al. Bone regeneration via nanostructured biomaterials. Acta Biomaterialia. 2022;145:1–18.

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.