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A model describing the effect of enzymatic degradation on drug release from collagen minirods.

机译:描述酶降解对胶原微棒释放药物的影响的模型。

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摘要

A drug delivery system, named minirod, containing insoluble non-cross-linked collagen was prepared to investigate the release of model drug compounds. To characterise the complete drug release process properly, a mathematical model was developed. Previously, a mathematical model describing water penetration, matrix swelling and drug release by diffusion from dense collagen matrices has been introduced and tested. However, enzymatic matrix degradation influences the drug release as well. Based on experimental data, a model was developed which describes drug release by collagenolytic matrix degradation based on enzyme diffusion, adsorption and cleavage. Data for swelling, collagen degradation and FITC dextran release from insoluble equine collagen type I minirods were collected. Sorption studies demonstrated a tight sorption of collagenase on collagen surfaces that follows a Freundlich sorption isotherm and results in a degradation constant of 3.8x10(-5) mol/l for the minirods. The diffusion coefficientsof FITC dextran 20 and 70 (3x10(-3) and 2.4x10(-3) cm2/h) in water were analyzed by fluorescence correlation spectroscopy (FCS). Using these data, the mathematical model was verified by two-dimensional simulations. The numerical results agreed well with the measurements.
机译:制备了包含不溶性非交联胶原蛋白的名为minirod的药物递送系统,以研究模型药物化合物的释放。为了正确表征完整的药物释放过程,开发了一个数学模型。以前,已经介绍并测试了描述水渗透,基质溶胀和药物从致密胶原蛋白基质扩散释放的数学模型。但是,酶基质的降解也会影响药物的释放。基于实验数据,开发了一种模型,该模型描述了基于酶扩散,吸附和裂解的胶原蛋白分解基质降解所引起的药物释放。收集了从不溶性马I型胶原微棒中溶胀,胶原蛋白降解和FITC葡聚糖释放的数据。吸附研究表明,遵循弗氏吸附等温线,胶原酶在胶原蛋白表面上紧密吸附,导致微型棒的降解常数为3.8x10(-5)mol / l。 FITC葡聚糖20和70(3x10(-3)和2.4x10(-3)cm2 / h)在水中的扩散系数通过荧光相关光谱(FCS)分析。使用这些数据,通过二维仿真验证了数学模型。数值结果与测量结果吻合良好。

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