首页> 外文OA文献 >The application of co-melt-extruded poly(ε-caprolactone) as a controlled release drug delivery device when combined with novel bioactive drug candidates: Membrane permeation and Hanson dissolution studies
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The application of co-melt-extruded poly(ε-caprolactone) as a controlled release drug delivery device when combined with novel bioactive drug candidates: Membrane permeation and Hanson dissolution studies

机译:共熔挤出聚ε-己内酯与新型生物活性药物候选物一起作为控释药物输送装置的应用:膜渗透和汉森溶解研究

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摘要

Eight bioactive drug compounds (abamectin, amoxicillin, dexamethasone, dexamethasone valerate, ketoprofen, melatonin, oestradiol 17߬ and oestradiol benzoate) were combined via melt extrusion and disc pressing processes with a polycaprolactone (PCL) matrix and were then evaluated and compared via membrane diffusion and Hanson dissolution studies. This investigation was to determine the potential of this matrix to act as a controlled release drug delivery vehicle for a number of drugs not previously combined with PCL in a melt extrusion mix. The inclusion of the progesterone/PCL system, for which the drug release behaviour has been well studied before was intended for comparison with the PCL systems incorporating drugs that have received little research attention in the past. Initial studies centred on an evaluation of the permeation ability of the bioactive drugs dissolved in aqueous cyclodextrin solutions through a poly(e-caprolactone) (PCL) membrane using Valia-Chien side-by-side cells. Permeation rates were mostly low and found to range from 0 to 122 姠h-1 with only ketoprofen, melatonin, and progesterone displaying rates exceeding 20 姠h-1. Hanson dissolution release profiles in aqueous alcohol were subsequently measured for the 9 melt extruded PCL/drug combinations and led to Hanson release rates of 0-556 姠cm-2 h-0.5 with dexamethasone, dexamethasone valerate, ketoprofen, melatonin, and progesterone giving values exceeding 100 姠cm-2 h-0.5. A number of drugs such as the dexamethasones probably performed better than they did in the permeability rate measurements because of the less polar aqueous alcoholic solvent used. In searching for useful correlations between the drug physicochemical properties and release rate, only a moderate correlation (R2=0.5675) between Hanson dissolution release rate and permeation rate was found. This suggests that the release rate and the permeation are both controlled by the rate of drug diffusion through the PCL with release rate involving an additional dissolution process (of the drug) before permeation occurs accounting for the moderate correlation. In general, of the eight drugs considered, it was clear that the oestradiol-based drugs, abamectin, and amoxicillin were generally not suited to drug delivery via PCL under the conditions used. However, ketoprofen was found to be very suitable as a drug candidate for melt extrusion with PCL with dexamethasone valerate, dexamethasone, and melatonin also showing potential as candidates though to a much lesser extent.
机译:八种生物活性药物化合物(阿维菌素,阿莫西林,地塞米松,地塞米松戊酸酯,酮洛芬,褪黑素,雌二醇17߬和雌二醇苯甲酸酯)通过聚己内酯(PCL)基质通过熔融挤出和盘压工艺进行组合,然后进行评估并通过膜扩散和比较汉森溶出度研究。这项研究是为了确定该基质在许多以前未与PCL混合在熔融挤出混合物中的药物中用作控释药物输送媒介的潜力。包括黄体酮/ PCL系统(以前已经对其药物的释放行为进行了充分的研究),旨在与包含过去很少研究关注的药物的PCL系统进行比较。最初的研究集中在使用Valia-Chien并排细胞评估通过聚(e-己内酯)(PCL)膜溶解在环糊精水溶液中的生物活性药物的渗透能力。渗透率大多较低,范围从0到122姠h-1,只有酮洛芬,褪黑激素和孕酮的渗透率超过20姠h-1。随后测定了9种熔融挤出的PCL /药物组合在Hanson水溶液中的汉森溶解释放曲线,并得出了地塞米松,戊酸地塞米松,酮洛芬,褪黑激素和孕酮的汉森释放速率为0-556姠cm-2 h-0.5超过100姠cm-2 h-0.5。由于使用的极性较小的水性醇溶剂,许多药物(例如地塞米松)的性能可能要好于渗透率测量。在寻找药物理化性质与释放速率之间的有用相关性时,仅发现汉森溶出释放率与渗透率之间存在中等相关性(R2 = 0.5675)。这表明释放速率和渗透率均受药物通过PCL扩散的速率控制,释放速率涉及渗透之前发生的(药物的)额外溶解过程,这说明存在中等相关性。通常,在所考虑的八种药物中,很明显,在使用的条件下,基于雌二醇的药物,阿维菌素和阿莫西林通常不适合通过PCL进行药物递送。但是,发现酮洛芬非常适合用作戊二酸地塞米松,地塞米松和褪黑激素与PCL熔融挤出的候选药物,尽管程度要小得多。

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