Gajski Petra, Par Matej, Haugen Håvard J, Hildebrand Torben, Zheng Kai, Boccaccini Aldo R, Tarle Zrinka, Marovic Danijela
University of Zagreb School of Dental Medicine, Zagreb, Croatia.
Department of Endodontics and Restorative Dentistry, University of Zagreb School of Dental Medicine, Zagreb, Croatia.
Sci Rep. 2025 May 29;15(1):18857. doi: 10.1038/s41598-025-04143-9.
This study investigated the effect of copper-doped mesoporous bioactive glass nanospheres (Cu-MBGN) on water sorption, solubility and porosity of an experimental dental composite over 180 days of water immersion, comparing it to bioactive glass 45S5 (BG) or inert fillers. Composites contained 35wt% Bis-GMA/TEGDMA resin (60/40), 55wt% silanised barium-glass fillers, and 10wt% of either Cu-MBGN (10-CuBG), 45S5 bioactive glass (10-BG), or inert silica nanofillers (10-Si). Both BG composites showed a higher mass increase during water immersion than inert control (10-Si) at all measured time points (p < 0.001), ranked as 10-BG > 10-CuBG > 10-Si. After 30 days, 10-BG had the greatest mass increase (4.02 ± 0.21%), followed by a decline until 180 days, while 10-CuBG (1.67 ± 0.10%) and 10-Si (1.19 ± 0.07%) showed gradual mass increases until the end of the measurement. 10-BG displayed higher water sorption and solubility than other materials, while 10-CuBG had the highest porosity parameters. While 10-BG and 10-Si showed significant increases in both total and open porosity after water immersion, no such changes were observed for 10-CuBG. The pore characteristics of dry specimens did not affect final water sorption and solubility after 180 days of water immersion. The Cu-MBGN composite had a lower mass increase than commercial BG and met ISO 4049 standards for both water sorption and solubility.
本研究调查了铜掺杂介孔生物活性玻璃纳米球(Cu-MBGN)对一种实验性牙科复合材料在180天水浸过程中的吸水性、溶解性和孔隙率的影响,并将其与生物活性玻璃45S5(BG)或惰性填料进行比较。复合材料包含35wt%的双酚A双甲基丙烯酸缩水甘油酯/三乙二醇二甲基丙烯酸酯树脂(60/40)、55wt%的硅烷化钡玻璃填料,以及10wt%的Cu-MBGN(10-CuBG)、45S5生物活性玻璃(10-BG)或惰性二氧化硅纳米填料(10-Si)。在所有测量时间点,两种BG复合材料在水浸过程中的质量增加均高于惰性对照组(10-Si)(p < 0.001),顺序为10-BG > 10-CuBG > 10-Si。30天后,10-BG的质量增加最大(4.02 ± 0.21%),随后下降直至180天,而10-CuBG(1.67 ± 0.10%)和10-Si(1.19 ± 0.07%)在测量结束前质量逐渐增加。10-BG的吸水性和溶解性高于其他材料,而10-CuBG的孔隙率参数最高。虽然10-BG和10-Si在水浸后总孔隙率和开口孔隙率均显著增加,但10-CuBG未观察到此类变化。干燥试样的孔隙特征对水浸180天后的最终吸水性和溶解性没有影响。Cu-MBGN复合材料的质量增加低于商用BG,并且在吸水性和溶解性方面均符合ISO 4049标准。