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首页> 外文期刊>Journal of drug targeting >Triphasic release model for multilayered gelatin coatings that can recreate growth factor profiles during wound healing.
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Triphasic release model for multilayered gelatin coatings that can recreate growth factor profiles during wound healing.

机译:多层明胶涂层的三相释放模型,可以在伤口愈合期间重建生长因子的分布。

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摘要

Multilayered gelatin coatings were created to mimic growth factor profiles that normally occur during fracture healing. A model was developed to relate crosslinking and loading of individual layers to protein release. Modeling was simplified by dividing release profiles into three phases. The diffusion-controlled phase was determined by calculating periods of constant diffusivity for each homogeneous layer within devices. Diffusivity was a power law function of crosslinking. Fick's second law of diffusion was then used to determine release during the diffusion-controlled phase. Secondary diffusivity was determined by summing resistances of each successive homogeneous layer. The initial burst phase was defined as events proceeding the diffusion-controlled phase. Percentage of drug burst was a linear function of crosslinking. Release during the degradation-controlled phase, events following diffusion-controlled phase, was estimated based on first order hydrolysis of crosslinks. The model predicted time-variant release of differently labeled protein measured experimentally, and it can be used to design coatings to recreate the cascade of biomolecules that determine natural bone repair.
机译:创建多层明胶涂层以模拟通常在骨折愈合过程中出现的生长因子分布。开发了一种模型,将各个层的交联和负载与蛋白质释放相关联。通过将发布配置文件分为三个阶段,简化了建模。通过计算器件内每个均匀层的恒定扩散周期来确定扩散控制的相位。扩散是交联的幂律函数。然后使用菲克第二扩散定律确定扩散控制阶段的释放。通过将每个连续的均质层的电阻求和来确定二次扩散率。初始爆发阶段定义为进行扩散控制阶段的事件。药物爆发的百分比是交联的线性函数。基于交联的一级水解,估计了在降解控制阶段,扩散控制阶段之后的事件期间的释放。该模型可预测实验测量的不同标记蛋白质的时变释放,可用于设计涂层以重现决定天然骨修复的生物分子级联。

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