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Durability of the anti-erosive effect of surfaces sealants under erosive abrasive conditions

机译:表面密封剂在侵蚀性磨蚀条件下的抗侵蚀作用的耐久性

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Objective. To test the durability of sealants applied for prevention of erosive dentine mineral loss under erosive/abrasive conditions. Methods. Forty-eight bovine dentine samples doped with 32P were randomly allocated to four groups (1-4). All samples performed a de-and remineralizations pre-cycling (6 × 1 min erosion in HCl: pH 3.0, mean time and overnight immersion in artificial saliva) for 1 day. Sealing was done as follows; (1) unsealed, (2) Seal & Protect, (3) K-0184 (experimental sealer) and (4) OptiBond FL. After sealing, samples were immersed in HCl for 3 h (baseline measurement). Then, the following erosive/abrasive and remineralisations cycling was performed for 8 days: 3 h/day erosion with HCl, 600 brushing strokes/day and storage in artificial saliva for the rest of the day. Sealer permeability was evaluated by assignation of 32P in the acid used for the erosive attacks. Results. At baseline, the significantly highest dentine loss was observed for the unsealed control group, while the mineral loss was not statistically significantly different between the sealed groups 2 and 3. At all days of the erosive/abrasive and remineralizations cycling and cumulatively the significantly highest mineral loss was observed for group 1, while the significantly lowest mineral loss was observed for the samples sealed with Seal & Protect (group 2) and K-0184 (group 3). In all groups, no significant increase in the 32P release was observed. Conclusion. Surface sealants are able to reduce the erosive dentine mineral loss and maintain this erosion-preventing efficacy over the whole duration (simulating 8 month in-vivo) of the erosive/abrasive cycling.
机译:目的。测试用于在侵蚀/磨蚀条件下防止侵蚀性牙本质矿物质流失的密封胶的耐久性。方法。将48个掺有32P的牛牙质样品随机分配到四组(1-4)。所有样品均进行了脱矿质和再矿化的预循环(在HCl中腐蚀6×1分钟:pH 3.0,平均时间并在人造唾液中浸泡过夜)进行了1天。密封过程如下: (1)未密封,(2)密封和保护,(3)K-0184(实验性密封剂)和(4)OptiBond FL。密封后,将样品浸入HCl中3 h(基线测量)。然后,进行以下侵蚀/磨蚀和再矿化循环8天:用HCl侵蚀3小时/天,每天刷洗600次,并在一天的剩余时间内存储在人造唾液中。通过在侵蚀性腐蚀所用的酸中分配32P来评估密封剂的渗透性。结果。在基线时,未密封对照组的牙本质损失最高,而密封组2和3之间的矿物质损失在统计学上没有显着差异。在侵蚀/磨料和再矿化的所有周期中,矿物质的累积量最高第1组观察到矿物质损失,而用Seal&Protect(第2组)和K-0184(第3组)密封的样品观察到的矿物质损失最低。在所有组中,均未观察到32P释放的显着增加。结论。表面密封剂能够减少侵蚀性牙本质的矿物质流失,并在​​侵蚀/磨蚀循环的整个过程中(体内模拟8个月)保持这种防腐蚀的功效。

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