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Chitosan Coating on Silica-Modified Polymethyl Methacrylate for Dental Applications

机译:牙科用二氧化硅改性的聚甲基丙烯酸甲酯的壳聚糖涂层

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Chitosan is a cationic natural polymer that is widely used as a topical dressing in wound management. Temporary coatings of removable denture bases with chitosan might be useful as supportive treatment in oral medicine. The aim of this study was to analyze the thickness, uniformity, and adhesive strength of chitosan coatings on simulated denture bases made from polymethyl methacrylate (PMMA). According to a standardized protocol, 20 PMMA cylinders (13 mm diameter, 5 mm in height) as well as 20 cubes (a = 25 mm) with intaglio U-shaped profiles were manufactured to simulate average sized alveolar ridges. Cylinders as well as cubes were divided into four test series with n = 5 each. After sandblasting with silica-modified alumina, one frontal surface of the PMMA cylinders and the intaglio surfaces of the U-shaped profiles was coated with chitosan acetate solution according to the following protocols: one layer of 2% chitosan acetate solution (test series I), one layer of 4% chitosan acetate solution (test series II), two layers of 2% chitosan acetate solution (test series III), and two layers of 4% chitosan acetate solution (test series IV). After drying and neutralization with NaOH, each cube was cut transversely and the coating thickness across the U-shaped profile assessed with a light microscope. Adhesive strength was evaluated by simulated tooth brushing and the loss of chitosan coating was evaluated qualitatively. Statistical analysis used Friedman ANOVA test for dependent samples and Kruskal-Wallis test for independent samples, post-hoc Dunn’s test (p < 0.05), and binomial test (p = 0.05). The mean chitosan coating thicknesses in the depth of the U-profiles were 71 μm (test series I), 77 μm (test series II), 121 μm (test series III), and 517 μm (test series VI). The thickness continuously decreased with rising angulation of the U-profile side walls. In test series I, the chitosan coating thickness significantly dropped above a 30° angulation of the U-profile side walls. In test series II to IV, the chitosan thickness drop was not statistically significant at angulations of 30° and 60°, but was at 90° angulation of the U-profile side walls. Adhesion strength was rated fair to good and did not differ significantly among the four test series. The coating technique described revealed chitosan layers with overall good adhesion strength but differing thicknesses. Coatings with one or two layers of 4% chitosan acetate solution allowed a relatively uniform chitosan thickness and thus might be usable in oral medicine.
机译:壳聚糖是一种阳离子天然聚合物,被广泛用作伤口处理中的局部敷料。壳聚糖可移动义齿基托的临时涂层可能在口腔医学中用作支持治疗。这项研究的目的是分析由聚甲基丙烯酸甲酯(PMMA)制成的模拟义齿基托上的壳聚糖涂层的厚度,均匀性和粘合强度。根据标准化协议,制造了20个PMMA圆柱体(直径13毫米,高5毫米)以及20个具有凹U形轮廓的立方体(a = 25毫米),以模拟平均大小的牙槽。将圆柱体和立方体分为四个测试系列,每个系列n = 5。在用二氧化硅改性的氧化铝喷砂后,按照以下规程,用乙酸脱乙酰壳多糖溶液涂覆PMMA圆柱体的一个前表面和U形轮廓的凹版表面:一层2%的脱乙酰壳多糖乙酸溶液(测试系列I) ,一层4%的脱乙酰壳多糖溶液(测试系列II),两层2%的脱乙酰壳多糖溶液(测试系列III)和两层的4%脱乙酰壳多糖溶液(测试系列IV)。干燥并用NaOH中和后,横向切开每个立方体,用光学显微镜评估U形轮廓上的涂层厚度。通过模拟牙刷评估粘合强度,并定性评估壳聚糖涂层的损失。统计分析对相关样本使用Friedman ANOVA检验,对独立样本使用Kruskal-Wallis检验,事后Dunn检验(p <0.05)和二项式检验(p = 0.05)。在U型轮廓深度处的平均壳聚糖涂层厚度为71μm(测试系列I),77μm(测试系列II),121μm(测试系列III)和517μm(测试系列VI)。厚度随着U型轮廓侧壁角度的增加而连续减小。在测试系列I中,壳聚糖涂层的厚度在U型轮廓侧壁的30度角以上明显下降。在试验系列II至IV中,壳聚糖的厚度下降在30°和60°的角度下无统计学意义,但在U型轮廓侧壁的90°角下却无统计学意义。粘合强度被评定为良好,并且在四个测试系列之间没有显着差异。所描述的涂覆技术揭示了壳聚糖层总体上具有良好的粘合强度,但厚度不同。用一层或两层4%的脱乙酰壳多糖乙酸盐溶液包被的壳聚糖厚度相对均匀,因此可用于口服药物。

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