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In vitro studies and modeling of a controlled-release device for root canal therapy

机译:根管治疗用控释装置的体外研究和建模

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Endodontic disease is caused primarily by bacteria that interact with periradicular host tissues. Therefore, treatment of endodontic disease aims at the exclusion of bacteria from the root canal system. This work focused on in vitro studies and modeling of a controlled-release device for delivering antimicrobial agents in root canals. A cylindrical, needle-shaped device was prepared consisting of a matrix core and a polymer coating, loaded with 30-45% chlorhexidine (CHX). The composition of the core, a blend of water-permeable polymers, and the thickness of the coating were tailored to impart various release rates. A relatively steady release rate for over 40 days after an initial burst was achieved using a formulation for long-term release, which is desirable for establishing and maintaining the necessary therapeutic levels. Mathematical models were developed for both in vitro and in vivo drug release into a liquid of limited volume, taking into account a moving boundary of the dispersed drug and a time-dependent boundary condition. A concentration-dependent effective diffusion coefficient was used to count increased porosity as the solid drug had dissolved. The finite element method and computer programs were applied to solve the differential equations and predict the in vitro and in vivo release kinetics. The model prediction agreed well with the in vitro experimental data and provided guidance for designing the device for in vivo release in root canals. The result of in vitro antimicrobial tests, performed using a bovine tooth model, suggested that the device was effective in reducing growth of microbes. (C) 2000 Elsevier Science B.V. Ail rights reserved. [References: 34]
机译:牙髓疾病主要是由与根周宿主组织相互作用的细菌引起的。因此,牙髓疾病的治疗旨在将细菌从根管系统中排除。这项工作侧重于在根管中递送抗菌剂的控释装置的体外研究和建模。制备了圆柱形的针状装置,其由基质芯和聚合物涂层组成,并装有30-45%的洗必泰(CHX)。调整芯的组成,透水性聚合物的共混物和涂层的厚度以赋予各种释放速率。使用长期释放的制剂,在初始爆发后的40天内达到了相对稳定的释放速率,这对于建立和维持必要的治疗水平是理想的。考虑到分散药物的移动边界和时间依赖性边界条件,开发了用于体外和体内药物释放到有限体积的液体中的数学模型。浓度依赖性有效扩散系数用于计算固体药物溶解后增加的孔隙率。应用有限元方法和计算机程序求解微分方程并预测体内和体外释放动力学。该模型预测与体外实验数据非常吻合,并为设计用于在根管内体内释放的装置提供了指导。使用牛牙模型进行的体外抗菌测试的结果表明,该设备可有效减少微生物的生长。 (C)2000 Elsevier Science B.V. Ail版权所有。 [参考:34]

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