Department of Removable Prosthodontics and Occlusion, Osaka Dental University, 8-1 Kuzuhahanazono-cho, Hirakata 573-1121, Japan.
Department of Biomedical Engineering, Faculty of Biology-Oriented Science and Technology, Kindai University, 930 Nishimitani, Kinokawa 649-6493, Japan.
Int J Mol Sci. 2023 Dec 26;25(1):349. doi: 10.3390/ijms25010349.
In a previous study, we successfully coated hydroxyapatite (HAp) onto titanium (Ti) plates using the erbium-doped yttrium aluminum garnet pulsed-laser deposition (Er:YAG-PLD) method. In this study, we performed further experiments to validate the in vitro osteogenic properties, macrophage polarization, and in vivo osseointegration activity of HAp-coated Ti (HAp-Ti) plates and screws. Briefly, we coated a HAp film onto the surfaces of Ti plates and screws via Er:YAG-PLD. The surface morphological, elemental, and crystallographic analyses confirmed the successful surface coating. The macrophage polarization and osteogenic induction were evaluated in macrophages and rat bone marrow mesenchymal stem cells, and the in vivo osteogenic properties were studied. The results showed that needle-shaped nano-HAp promoted the early expression of osteogenic and immunogenic genes in the macrophages and induced excellent M2 polarization properties. The calcium deposition and osteocalcin production were significantly higher in the HAp-Ti than in the uncoated Ti. The implantation into rat femurs revealed that the HAp-coated materials had superior osteoinductive and osseointegration activities compared with the Ti, as assessed by microcomputed tomography and histology. Thus, HAp film on sandblasted Ti plates and screws via Er:YAG-PLD enhances hard-tissue differentiation, macrophage polarization, and new bone formation in tissues surrounding implants both in vitro and in vivo.
在之前的一项研究中,我们成功地使用掺铒钇铝石榴石脉冲激光沉积(Er:YAG-PLD)方法在钛(Ti)板上涂覆羟基磷灰石(HAp)。在本研究中,我们进行了进一步的实验,以验证 HAp 涂层钛(HAp-Ti)板和螺钉的体外成骨特性、巨噬细胞极化和体内骨整合活性。简而言之,我们通过 Er:YAG-PLD 将 HAp 薄膜涂覆在 Ti 板和螺钉的表面。表面形貌、元素和晶体学分析证实了表面涂层的成功。在巨噬细胞和大鼠骨髓间充质干细胞中评估了巨噬细胞极化和成骨诱导,并研究了体内成骨特性。结果表明,针状纳米 HAp 促进了巨噬细胞中早期成骨和免疫基因的表达,并诱导了出色的 M2 极化特性。与未涂层 Ti 相比,HAp-Ti 中的钙沉积和骨钙素产生显著增加。植入大鼠股骨后发现,与 Ti 相比,通过 Er:YAG-PLD 在喷砂 Ti 板和螺钉上涂覆的 HAp 薄膜增强了植入物周围组织的硬组织分化、巨噬细胞极化和新骨形成,通过 microCT 和组织学评估。因此,HAp 薄膜通过 Er:YAG-PLD 涂覆在喷砂 Ti 板和螺钉上,增强了硬组织分化、巨噬细胞极化和植入物周围组织中的新骨形成,无论是在体外还是体内。