Korenkov Oleksii, Sukhodub Liudmyla, Kumeda Mariia, Sukhonos Olha, Sukhodub Leonid
Sumy State University, 116, Kharkivska St., Sumy, 40007, Ukraine.
Heliyon. 2024 Jul 3;10(13):e33868. doi: 10.1016/j.heliyon.2024.e33868. eCollection 2024 Jul 15.
The influence of two nanostructured osteoplastic materials with different compositions: i) alginate (Alg) matrix, loaded with Zn ions and nanostructured hydroxyapatite (HA) - S1/HA-Zn, and ii) chitosan (CS) matrix loaded with brushite nanoparticles (NPs, dicalcium phosphate dihydrate, DCPD) - S2/DCPD on the healing of an experimental femoral diaphysis defect was investigated. The structure of cellular elements and the lacunar tubular system of the regenerated bone tissue were studied by electron microscopy. Osteogenic cells on the surface and inside S1/HA-Zn formed bone tissue. On the 30th day, the latter had a reticulofibrous and later lamellar structure. On the 30th day, the S2/DCPD biomaterial was integrated mainly into connective tissue and, starting from the 90th day, into the bone tissue, which was formed only on its outer surface. Thus, it has been proven that both biomaterials contribute to the healing of bone wounds. The regenerative potential of the new bone tissue formation of S1/HA-Zn prevails over that of S2/DCPD.
i)负载锌离子和纳米结构羟基磷灰石(HA)的藻酸盐(Alg)基质——S1/HA-Zn,以及ii)负载透钙磷石纳米颗粒(NPs,二水磷酸二钙,DCPD)的壳聚糖(CS)基质——S2/DCPD。通过电子显微镜研究了再生骨组织的细胞成分结构和腔管系统。S1/HA-Zn表面和内部的成骨细胞形成了骨组织。在第30天,后者具有网状纤维结构,随后是板层结构。在第30天,S2/DCPD生物材料主要整合到结缔组织中,从第90天开始,整合到仅在其外表面形成的骨组织中。因此,已证明两种生物材料都有助于骨伤口的愈合。S1/HA-Zn形成新骨组织的再生潜力优于S2/DCPD。