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Release profile of synthesized coumarin derivatives as a novel antibacterial agent from glass ionomer cement (GIC)

机译:合成香豆素衍生物作为一种来自玻璃离聚物水泥(GIC)的新型抗菌剂的释放谱

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Glass ionomer cements (GIC) are widely used as dental restorative materials due to their aesthetics features and fluoride content. However, a capability of fluoride content in GIC to inhibit bacteria growth in an oral environment was insufficient for a long term which may lead to secondary caries. Therefore, two types of synthesized coumarin derivatives were incorporated with GIC to act as new antibacterial agent. However prior to the antibacterial evaluation, this study investigated the release profile of GIC incorporated with 3-Acetylcoumarin (GIC-1) and hydrazinyl thiosemicarbazide of coumarin derivatives (GIC-2) at three different concentrations of 0.5, 1.0 and 1.5 wt% up to 30 days. At early incubation period, GIC-1 revealed a higher release profile at 0.5 % fabrication that reached almost 45 % of cumulative release for 8 hours observational. Meanwhile, a slightly different output was obtained for GIC-2 in which 1.0 % fabrication of coumarin gave a better release in the initial hour. However, the pattern was replaced by 0.5 % substitution after 4 hours incubation time. A substitution of 1.5 % coumarin seems to be low in releasing activity for all materials. Conversely, in a longer period 1.0 % fabrication was discovered to be the highest coumarin release among others fabrications for both materials. Filler particle size and porosity of the materials were considered to be the main factor that may affect the coumarin release. Nonetheless, both synthesized coumarin derivatives can be incorporated with GIC as their release profile look very promising. Ultimately, the coumarin derivatives could improve the properties of GIC.
机译:由于其美学特征和氟化物含量,玻璃离聚物水泥(GIC)被广泛用作牙科修复材料。然而,GIC中氟化物含量以抑制口腔环境中的细菌生长的能力,长期可能导致二次龋齿。因此,两种类型的合成的香豆素衍生物掺入GIC以充当新的抗菌剂。然而,在抗菌评估之前,本研究研究了CoMmarin衍生物(GIC-2)的3-乙酰基豆素(GIC-1)和肼硫代氧基肼的GIC的释放曲线,在三种不同的0.5,1.0和1.5重量% 30天。在早期孵育期间,GIC-1显示出较高的释放曲线,其制造的0.5%,达到近45%的累积释放的观察结果。同时,GIC-2获得了略微不同的输出,其中1.0%的香豆素制备在初始小时内释放出更好的释放。然而,在孵育时间4小时后,将图案取代0.5%的取代。 1.5%香豆素的取代似乎在释放所有材料的释放活动较低。相反,在较长时间内的1.0%的制造中被发现是对两种材料的制造等最高的香豆素释放。填料粒度和材料的孔隙率被认为是可能影响香豆素释放的主要因素。尽管如此,合成的香豆素衍生物均可作为其释放型材看起来非常有前途的GIC。最终,香豆素衍生物可以改善GIC的性质。

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