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Preparation of Carbonated Apatite Membrane as Metronidazole Delivery System for Periodontal Application

机译:碳酸磷酸盐膜作为牙周应用的甲硝唑递送系统

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Introduction. Long term infection on periodontal tissue, mainly caused by anaerobic microbial, is not only related with tooth loss which lead to functional and esthetical impairment but also with increasing infection risk on other vital organs such as heart. Metronidazole is drug of choice for anaerobic bacterial infection. In this research, Metronidazole delivery system from carbonated apatite-based material was designed to increase the antibiotic therapeutic potential on local application as well as to promote tooth-supporting bone healing as a thin membrane to be applied on narrow periodontal tissue. Experimental. Metronidazole delivery system was prepared using different carbonate apatite composition on gelatin hydrogel system which was freeze-dried then polymerized by thermal treatment. Total 6 gelatin-carbonated apatite compositions were prepared: 10:0, 9:1, 8:2, 7:3, 6:4 and 5:5. The membranes were characterized by Fourier Transform Infrared (FTIR) spectroscopy, X-ray Diffraction (XRD) and Scanning Electron Microscopy (SEM). Water-content, air-water contact angle, tensile strength, Metronidazole-loading capacity, degradation profile and Metronidazole-release profile were studied to describe each composition potential as Metronidazole delivery system. Results and Discussion. Study on FTIR spectra and XRD confirmed preparation methods as standard procedures to prepare membrane formed delivery system-containing carbonate apatite. Descriptively from SEM, the film surface porosity was elevated by the increase of carbonate apatite composition. Tensile strength decreased was found by the increase of carbonate apatite composition. Water content, air-water contact angle, Metronidazole-loading capacity was not different significantly (P>0.05). Profile of degradation and Metronidazole-release from the membranes was different between compositions. Conclusions. This study results were essential to support next research on antibiotic potential using different anaerobic bacteria culture as well as bone regeneration potential on periodontal infection in vivo.
机译:介绍。长期感染牙周组织,主要由厌氧微生物引起,不仅与牙齿损失有关,导致功能性和美学障碍,而且还随着心脏等其他重要器官的感染风险。甲硝唑是厌氧细菌感染的选择药物。在该研究中,甲硝唑递送系统来自碳酸化磷灰石的材料,旨在增加局部应用的抗生素治疗潜力,以及促进牙齿支撑骨愈合作为薄膜施加在狭窄的牙周组织上。实验。使用不同的碳酸盐磷灰石组合物在明胶水凝胶系统上制备甲硝唑递送系统,然后通过热处理将干燥干燥,然后通过热处理聚合。制备总6种明胶 - 碳酸磷灰石组合物:10:0,9:1,8:2,7:3,6:4和5:5。膜的特征在于傅里叶变换红外(FTIR)光谱,X射线衍射(XRD)和扫描电子显微镜(SEM)。研究了水含量,空气接触角,拉伸强度,甲硝唑加载能力,降解型材和甲硝唑释放曲线,以描述各种组成电位作为甲硝唑递送系统。结果和讨论。 FTIR光谱和XRD证实的制备方法作为制备膜形成的含有碳酸盐磷灰石的标准程序的制备方法。从SEM描述,通过碳酸盐磷灰石组合物的增加升高膜表面孔隙率。通过碳酸盐磷灰石组合物的增加,发现拉伸强度降低。水含量,空水接触角,甲硝唑加载能力显着不大(P> 0.05)。从膜的降解和甲硝唑释放的分布在组合物之间是不同的。结论。该研究结果对于使用不同的厌氧菌细菌培养以及体内牙周感染的骨再生潜力来支持下一次对抗生素潜力的研究至关重要。

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