Tsutsumi Chiaki, Takakuda Kazuo, Wakabayashi Noriyuki
Department of Removable Partial Prosthodontics, Graduate School, Tokyo Medical and Dental University (TMDU), Tokyo, Japan.
Medical and Dental Device Technology Incubation Center, Institute of Biomaterials and Bioengineering, Tokyo Medical and Dental University, Tokyo, Japan.
J Dent. 2016 Jan;44:37-43. doi: 10.1016/j.jdent.2015.11.010. Epub 2015 Dec 2.
This study investigated the influence of surface reaction-type prereacted glass ionomer (S-PRG) fillers on Candida albicans adhesion on denture base resin.
Discs were prepared by incorporating the S-PRG filler into the polymer powder of a polymethyl methacrylate (PMMA)-based, heat-polymerizing resin at 0 (control), 5%, 10%, and 20% (w/w). The surface roughness of all disc surfaces was measured. Elemental analysis of released Na(+), Sr(2+), SiO3(2-), Al(3-), BO3(3-), and F(-) was performed after water immersion. Each disc was placed in a well with artificial saliva to form acquired pellicle, incubated, washed with phosphate-buffered saline, and immersed in a C. albicans (JCM2085) cell suspension standardized at 10(4) cells/ml. After aerobic incubation at 37 °C for 24 h, the metabolic mitochondrial activity, total biofilm biomass, and biofilm thickness were evaluated. The morphogenetic transition of C. albicans in the early culture stage (1 and 3 h) was observed.
There was a slight but significant increase in the surface roughness with an increase in the filler content. The metabolic activity and total biomass volume were significantly lower in all filler groups than in the control group, although there were no significant differences among the filler groups. Groups with at least 5% filler content exhibited a thinner biofilm compared with the control group. All filler groups showed hyphal forms at 3 h, with the length of the hyphae being lesser than those in the control group.
Although the incorporation of S-PRG filler slightly increases the surface roughness of denture base resin, it reduces the adhesion of C. albicans.
The S-PRG filler has the potential to reduce Candida albicans adhesion on denture base resin and may lower the risk of denture stomatitis. However, filler incorporation can increase the surface roughness of heat-polymerizing denture base resin.
本研究调查了表面反应型预反应玻璃离子(S-PRG)填料对白色念珠菌在义齿基托树脂上黏附的影响。
通过将S-PRG填料以0(对照组)、5%、10%和20%(w/w)的比例加入到基于聚甲基丙烯酸甲酯(PMMA)的热聚合树脂的聚合物粉末中来制备圆盘。测量所有圆盘表面的粗糙度。在水浸泡后对释放的Na⁺、Sr²⁺、SiO₃²⁻、Al³⁺、BO₃³⁻和F⁻进行元素分析。将每个圆盘置于含有人工唾液的孔中以形成获得性薄膜,进行孵育,用磷酸盐缓冲盐水洗涤,然后浸入标准化为10⁴个细胞/毫升的白色念珠菌(JCM2085)细胞悬液中。在37℃需氧孵育24小时后,评估线粒体代谢活性、生物膜总生物量和生物膜厚度。观察白色念珠菌在培养早期阶段(1小时和3小时)的形态发生转变。
随着填料含量的增加,表面粗糙度有轻微但显著的增加。所有填料组的代谢活性和总生物量体积均显著低于对照组,尽管填料组之间无显著差异。填料含量至少为5%的组与对照组相比生物膜更薄。所有填料组在3小时时均呈现菌丝形态,菌丝长度小于对照组。
尽管加入S-PRG填料会略微增加义齿基托树脂的表面粗糙度,但它会降低白色念珠菌的黏附。
S-PRG填料有可能降低白色念珠菌在义齿基托树脂上的黏附,并可能降低义齿性口炎的风险。然而,加入填料会增加热聚合义齿基托树脂的表面粗糙度。