Furuhashi Akihiro, Ayukawa Yasunori, Atsuta Ikiru, Rakhmatia Yunia Dwi, Koyano Kiyoshi
Section of Implant and Rehabilitative Dentistry, Division of Oral Rehabilitation, Faculty of Dental Science, Kyushu University, Fukuoka 812-8582, Japan.
Division of Advanced Dental Devices and Therapeutics, Faculty of Dental Science, Kyushu University, Fukuoka 812-8582, Japan.
J Clin Med. 2021 May 28;10(11):2386. doi: 10.3390/jcm10112386.
Various materials, such as titanium, zirconia and platinum-gold (Pt-Au) alloy, have been utilized for dental implant trans-mucosal parts. However, biological understanding of soft tissue reaction toward these materials is limited. The aim of this study was to compare the response of cell lines and soft tissue to titanium, zirconia and Pt-Au substrata. The surface hydroxyl groups and protein adsorption capacities of the substrata were measured. Next, gingival epithelial-like cells (Sa3) and fibroblastic cells (NIH3T3) were cultured on the materials, and initial cell attachment was measured. Immuno-fluorescent staining of cell adhesion molecules and cytoskeletal proteins was also performed. In the rat model, experimental implants constructed from various materials were inserted into the maxillary tooth extraction socket and the soft tissue was examined histologically and immunohistochemically. No significant differences among the materials were observed regarding the amount of surface hydroxyl groups and protein adsorption capacity. Significantly fewer cells of Sa3 and NIH3T3 adhered to the Pt-Au alloy compared to the other materials. The expression of cell adhesion molecules and a well-developed cytoskeleton was observed, both Sa3 and NIH3T3 on each material. In an animal model, soft tissue with supracrestal tissue attachment was observed around each material. Laminin-5 immuno-reactivity was seen in epithelia on both titanium and zirconia, but only in the bottom of epithelia on Pt-Au alloy. In conclusion, both titanium and zirconia, but not Pt-Au alloy, displayed excellent cell adhesion properties.
多种材料,如钛、氧化锆和铂 - 金(Pt - Au)合金,已被用于牙种植体的穿黏膜部分。然而,对于软组织对这些材料反应的生物学认识有限。本研究的目的是比较细胞系和软组织对钛、氧化锆和Pt - Au基质的反应。测量了基质的表面羟基基团和蛋白质吸附能力。接下来,将牙龈上皮样细胞(Sa3)和成纤维细胞(NIH3T3)培养在这些材料上,并测量初始细胞附着情况。还进行了细胞粘附分子和细胞骨架蛋白的免疫荧光染色。在大鼠模型中,将由各种材料构建的实验性种植体植入上颌拔牙窝,并对软组织进行组织学和免疫组织化学检查。在表面羟基基团的数量和蛋白质吸附能力方面,未观察到材料之间的显著差异。与其他材料相比,Sa3和NIH3T3细胞附着在Pt - Au合金上的数量明显更少。在每种材料上,均观察到了Sa3和NIH3T3细胞粘附分子的表达以及发育良好的细胞骨架。在动物模型中,在每种材料周围均观察到了具有龈上组织附着的软组织。在钛和氧化锆的上皮中均可见层粘连蛋白 - 5免疫反应性,但仅在Pt - Au合金上皮的底部可见。总之,钛和氧化锆均表现出优异的细胞粘附特性,而Pt - Au合金则不然。