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Novel rechargeable calcium phosphate nanoparticle-containing orthodontic cement

机译:新型含可充电磷酸钙纳米粒子的正畸水泥

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摘要

White spot lesions (WSLs), due to enamel demineralization, occur frequently in orthodontic treatment. We recently developed a novel rechargeable dental composite containing nanoparticles of amorphous calcium phosphate (NACP) with long-term calcium (Ca) and phosphate (P) ion release and caries-inhibiting capability. The objectives of this study were to develop the first NACP-rechargeable orthodontic cement and investigate the effects of recharge duration and frequency on the efficacy of ion re-release. The rechargeable cement consisted of pyromellitic glycerol dimethacrylate (PMGDM) and ethoxylated bisphenol A dimethacrylate (EBPADMA). NACP was mixed into the resin at 40% by mass. Specimens were tested for orthodontic bracket shear bond strength (SBS) to enamel, Ca and P ion initial release, recharge and re-release. The new orthodontic cement exhibited an SBS similar to commercial orthodontic cement without CaP release (P>0.1). Specimens after one recharge treatment (e.g., 1 min immersion in recharge solution repeating three times in one day, referred to as “1 min 3 times”) exhibited a substantial and continuous re-release of Ca and P ions for 14 days without further recharge. The ion re-release did not decrease with increasing the number of recharge/re-release cycles (P>0.1). The ion re-release concentrations at 14 days versus various recharge treatments were as follows: 1 min 3 times>3 min 2 times>1 min 2 times>6 min 1 time>3 min 1 time>1 min 1 time. In conclusion, although previous studies have shown that NACP nanocomposite remineralized tooth lesions and inhibited caries, the present study developed the first orthodontic cement with Ca and P ion recharge and long-term release capability. This NACP-rechargeable orthodontic cement is a promising therapy to inhibit enamel demineralization and WSLs around orthodontic brackets.
机译:正畸治疗中经常会由于牙釉质脱矿而导致白斑病变(WSL)。我们最近开发了一种新型的可充电牙科复合材料,其中包含无定形磷酸钙(NACP)纳米颗粒,具有长期的钙(Ca)和磷酸盐(P)离子释放和抑制龋齿的能力。这项研究的目的是开发第一种NACP可充电正畸水泥,并研究充电时间和频率对离子释放功效的影响。可充电水泥由均苯四甲酸甘油二甲基丙烯酸酯(PMGDM)和乙氧基化双酚A二甲基丙烯酸酯(EBPADMA)组成。将NACP以40质量%混合到树脂中。测试了样品对牙釉质的正畸托槽剪切粘合强度(SBS),Ca和P离子的初始释放,再充电和再释放。新型正畸水泥的SBS类似于没有CaP释放的商用正畸水泥(P> 0.1)。一次补给处理后的标本(例如,在补给溶液中浸泡1分钟,在一天中重复3次,称为“ 1分钟3倍”),显示Ca和P离子大量连续不断释放14天,而无需进一步充电。离子的再释放不会随着充电/再释放循环次数的增加而减少(P> 0.1)。与各种补给处理相比,第14天的离子释放浓度如下:1次3次> 3次2分2次> 1次​​2次> 6次1次> 3次1次> 1次​​1次。总之,尽管以前的研究表明,NACP纳米复合材料可再矿化牙齿损伤并抑制龋齿,但本研究开发了第一种具有钙和磷离子补给功能并具有长期释放能力的正畸牙齿。这种可充入NACP的正畸水泥是一种有前景的疗法,可抑制牙釉质脱矿和正畸托槽周围的WSL。

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