在龋坏牙本质模型中使用改良 Renewal MI 配方形成树脂标记

Nabih Alkhouri, W. Xia, Paul Ashley, Anne Young
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引用次数: 0

摘要

目的:确定新型修复材料(Renewal MI)中的哪些成分可提高其在脱矿牙本质中形成树脂标记的能力。各种成分包括聚赖氨酸(PLS)、磷酸一钙(MCP)、粉液比(PLR)、4-甲基丙烯酰氧乙基偏苯三酸酐(4META)和聚丙二醇二甲基丙烯酸酯(PPGDMA)。含有 PPGDMA(24 wt%)和 4META (3 wt%)的聚氨酯二甲基丙烯酸酯(UDMA)与玻璃填料 MCP(8 wt%)和 PLS(5 wt%)混合。PLR 为 3:1 或 5:1。将 MCP 和/或 PLS 分别降至 4 和 2 wt%,或完全去除 MCP、PLS、4META 或 PPGDMA 后,共得到 16 种配方。Renewal MI、Z250(含或不含 Scotchbond 通用粘合剂)和 Activa 被用作商业对比。胶原盘是将 2 毫米厚的人类前臼齿冠牙本质盘在甲酸(4M)中浸泡 48 小时后完全脱矿而得到的。然后在上面涂上修复材料(n = 3),再用次氯酸钠(15%)溶解胶原蛋白。使用 SEM/EDX 确定树脂标签的长度、成分和表面覆盖率。Renewal MI、Scotchbond 和 Activa 的标签长度分别大于 400、20 和 200 µm,覆盖了 62、55 和 39% 的粘附界面。实验配方的标签长度分别为 200 微米和大于 400 微米,PLR 有高有低,主要由聚合单体组成。粘合界面的覆盖率在 35% 到 84% 之间。减少 PLS 或 MCP 会导致覆盖率下降,且与它们的浓度呈线性关系。当 PLS 或 PLR 较低时,减少 MCP 的影响较小。PLS、MCP、4META、PPGDMA 和低 PLR 可共同促进脱矿牙本质中 Renewal MI 标记的形成,从而达到封闭的目的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Resin tags formation by modified Renewal MI formulations in a carious dentine model
To determine which components in a new restorative material (Renewal MI) improve its ability to form resin tags within demineralized dentine.Varied components included polylysine (PLS), monocalcium phosphate (MCP), powder to liquid ratio (PLR), 4-methacryloyloxyethyl trimellitate anhydride (4META), and polypropylene glycol dimethacrylate (PPGDMA). Urethane dimethacrylate (UDMA), containing PPGDMA (24 wt%) and 4META (3 wt%), was mixed with glass filler with MCP (8 wt%) and PLS (5 wt%). PLR was 3:1 or 5:1. Reducing MCP and/or PLS to 4 and 2 wt% respectively or fully removing MCP, PLS, 4META or PPGDMA gave 16 formulations in total. Renewal MI, Z250 (with or without Scotchbond Universal adhesive) and Activa were used as commercial comparators. Collagen discs were obtained by totally demineralizing 2 mm thick, human, premolar, coronal dentine discs by immersion in formic acid (4M) for 48 h. The restorative materials were then applied on top (n = 3), before dissolving the collagen in sodium hypochlorite (15%). SEM/EDX was employed to determine resin tags length, composition, and surface coverage.Tags were >400, 20 and 200 µm and covered 62, 55 and 39% of the adhesion interface for Renewal MI, Scotchbond and Activa, respectively. With experimental formulations, they were 200 and >400 µm long with high vs. low PLR and composed primarily of polymerized monomers. Percentages of the adhesion interface covered varied between 35 and 84%. Reducing PLS or MCP caused a decline in coverage that was linear with their concentrations. Reducing MCP had lesser effect when PLS or PLR were low. Removal of 4META caused a greater reduction in coverage than PPGDMA removal.PLS, MCP, 4META, PPGDMA and low PLR together enhance Renewal MI tags formation in, and thereby sealing of, demineralized dentine.
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