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Mathematical modeling and parametrical analysis of the temperature dependency of control drug release from biodegradable nanoparticles

机译:可生物降解纳米粒子控制药物释放温度依赖性的数学建模与参数分析

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摘要

In this study we describe a mathematical analysis that considers the temperature effects of the controlled drug release process from biodegradable poly-d,l-lactide-co-glycolide (PLGA) nanoparticles. Temperature effects are incorporated and applied to two drug release models. The first one consists of a two-stage release process that considers only simultaneous contributions of initial burst and nanoparticle degradation-relaxation (BR model). The second one is a three release stage model that considers, additionally, a simultaneous drug diffusion (BRD model) step. In these models, the temperature dependency of the release parameters, initial burst constant, k(b), the rate of degradation-relaxation constant, k(r), time to achieve 50% of release, t(max), and effective diffusion coefficient constant (D-e), are determined using mathematical expressions analogous to the Arrhenius equation. The temperature dependent models are used to analyze the release of previously encapsulated Rhodamine 6G dye as a model drug in polyethylene glycol modified PLGA nanoparticles. The experimental data used to develop the mathematical model was obtained from release studies carried out in phosphate buffer pH 7.4 at 37 degrees C, 47 degrees C, and 57 degrees C. Multiphasic release behaviors with an overall increase rate associated with the incubation temperature were observed. The study incorporates a parametrical analysis that can evaluate diverse temperature variation effects of the controlled release parameters for the two models.
机译:在该研究中,我们描述了一种数学分析,其考虑来自可生物降解的Poly-D,L-丙交酯 - 共乙酰基(PLGA)纳米颗粒的受控药物释放过程的温度效应。掺入温度效果并应用于两种药物释放模型。第一个由两级释放过程组成,仅考虑初始突发和纳米粒子降解 - 松弛(BR模型)的同时贡献。第二个是三个释放阶段模型,其另外考虑同时药物扩散(BRD模型)步骤。在这些模型中,释放参数的温度依赖性,初始突发常数,k(b),降解率弛豫率常数,k(r),实现50%的释放,t(max),有效扩散系数常数(de)使用类似于Arrhenius方程的数学表达式确定。温度依赖模型用于分析先前包封的罗丹明6g染料作为聚乙二醇改性PLGA纳米颗粒的模型药物的释放。用于开发数学模型的实验数据是从在37℃,47℃和57℃的磷酸盐缓冲pH7.4中进行的释放研究获得的。观察到与培养温度相关的总增加率的多相释放行为。该研究包括参数分析,可以评估两个模型的控释参数的各种温度变化效应。

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