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Long-term mechanical durability of dental nanocomposites containing amorphous calcium phosphate nanoparticles

机译:含有非晶磷酸钙纳米粒子的牙科纳米复合材料的长期机械耐久性

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摘要

Half of all dental restorations fail within 10 years, with secondary caries and restoration fracture being the main reasons. Calcium phosphate (CaP) composites can release Ca and PO4 ions and remineralize tooth lesions. However, there has been no report on their long-term mechanical durability. The objective of this study was to investigate the wear, thermal-cycling, and water-aging of composites containing amorphous calcium phosphate nanoparticles (NACP). NACP of 112-nm and glass particles were used to fabricate four composites: (1) 0% NACP+75% glass; (2) 10% NACP+65% glass; (3) 15% NACP+60% glass; and (4) 20% NACP+50% glass. Flexural strength and elastic modulus of NACP nanocomposites were not degraded by thermal-cycling. Wear depth increased with increasing NACP filler level. Wear depths of NACP nanocomposites after 4 × 105 cycles were within the range for commercial controls. Mechanical properties of all the tested materials decreased with water-aging time. After 2 years, the strengths of NACP nanocomposites were moderately higher than the control composite, and much higher than the resin-modified glass ionomers. The mechanism of strength loss for resin-modified glass ionomer was identified as microcracking and air-bubbles. NACP nanocomposites and control composite were generally free of microcracks and air-bubbles. In conclusion, combining NACP nanoparticles with reinforcement glass particles resulted in novel nanocomposites with long-term mechanical properties higher than those of commercial controls, and wear within the range of commercial controls. These strong long-term properties, plus the Ca-PO4 ion release and acid-neutralization capability reported earlier, suggest that the new NACP nanocomposites may be promising for stress-bearing and caries-inhibiting restorations.
机译:所有牙科修复体的一半在10年内失败,具有二级龋齿和恢复骨折是主要原因。磷酸钙(帽)复合材料可以释放CA和PO4离子并再矿化牙齿病变。但是,没有报告其长期机械耐用性。本研究的目的是研究含有无定形磷酸钙纳米粒子(NACP)的复合材料的磨损,热循环和耐水性。 112nm和玻璃颗粒的NaCP用于制造四个复合材料:(1)0%NaCP + 75%玻璃; (2)10%NaCP + 65%玻璃; (3)15%NACP + 60%玻璃; (4)20%NaCP + 50%玻璃。 NACP纳米复合材料的抗弯强度和弹性模量通过热循环不降解。随着NACP填充水平的增加,磨损深度增加。在4×10 5℃后,NaCP纳米复合材料的磨损深度在商业控制范围内。所有测试材料的机械性能随着液化时间而降低。 2年后,NACP纳米复合材料的强度高于对照复合材料,远高于树脂改性的玻璃离聚物。树脂改性玻璃离聚物的强度损失机理被鉴定为微裂纹和气泡。 NACP纳米复合材料和对照复合材料通常不含微裂纹和气泡。总之,将NaCP纳米颗粒与增强玻璃颗粒组合产生新的纳米复合材料,具有高于商业对照的长期机械性能,以及在商业控制范围内的磨损。这些强大的长期特性以及早期报告的CA-PO4离子释放和酸中和能力,表明新的NACP纳米复合材料可能是对应力和抑制抑制修复的承诺。

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