装载地尔硫卓的Eudragit rs100微颗粒用于药物递送:粘度的挑战

I. Kolev, N. Ivanova, G. Alexieva, G. Tsutsumanova, V. Strashilov
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引用次数: 2

摘要

在药典Eudragit RS 100代表制成的载药和“空”聚合物微球(给药系统)中发现了强烈的形状依赖性粘度。在石英谐振器的金电极表面,由于水悬浮而沉积的一层球形颗粒的粘度急剧增加,导致频率测量电路中的动态电阻很大,无法维持稳定的振荡。在聚合物基体中加入地尔硫卓也会影响聚合物的粘度。通过将沉积层暴露在丙酮蒸气中,导致所研究的球体“溶解”并将其形状改变为薄层球体,可以消除其不利影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diltiazem-loaded Eudragit RS 100 microparticles for drug delivery: the challenge of viscosity
Strongly shape-dependent viscosity has been found in drug loaded and `empty` polymeric microspheres (drug delivery systems) made of pharmacopoeial Eudragit RS 100 representative. The dramatically increased viscosity of a layer of spherical particles deposited on the gold electrode surface of quartz resonators from water suspension leads to a large dynamic resistance and inability to sustain stable oscillations in a frequency measuring circuit. The viscosity is also affected by loading the polymer matrix with Diltiazem. Its adverse impact is removed by exposing the deposed layer to acetone vapor leading to `dissolving` the investigated spheres and changing their shape to a thin layered one.
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