首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >The effect of powder blend and tablet structure on drug release mechanisms of hydrophobic starch acetate matrix tablets.
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The effect of powder blend and tablet structure on drug release mechanisms of hydrophobic starch acetate matrix tablets.

机译:粉末混合物和片剂结构对疏水性乙酸淀粉淀粉基质片剂释药机理的影响。

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摘要

This study investigates the release mechanism of a hydrophilic drug (caffeine) from hydrophobic matrix tablets composed of starch acetate. Different particle size fractions of starch acetate were mixed with caffeine (22% V/V) to obtain various mixture organisations in the powder, as well as in the final tablet. The organisation of powder mixtures was calculated by the carrier payload of starch acetate particles, while the pore size distributions in tablets were measured by mercury intrusion porosimetry. A carrier payload below 1 indicated the existence of a free starch acetate particle surface, while numbers greater than 1 pointed to a complete occupation of the starch acetate particle surface area by caffeine particles. The carrier payload calculations gave a good prediction for the existence of a starch acetate matrix in the tablet structures. Caffeine matrices in tablets compressed from the mixtures could be detected by mercury intrusion porosimetry measurements. The existence of different matrices,as well as different pore networks, determined the physical changes of the tablets and the release mechanism of caffeine during dissolution tests. When a tablet contained only a caffeine matrix, rapid tablet disintegration and immediate release of the total amount of caffeine occurred. A single matrix of starch acetate resulted in tablets that remained intact, although cracks were formed. The co-existence of matrices of both materials created surface erosion of the tablet. The caffeine release profiles of tablets that remained intact or showed erosion were fitted by an equation containing both diffusional and relaxational factors to describe the effect of tablet porosity on drug release.
机译:这项研究调查了亲水性药物(咖啡因)从由醋酸淀粉组成的疏水性基质片剂中的释放机理。将不同粒径的醋酸淀粉淀粉与咖啡因(22%V / V)混合,以在粉末以及最终片剂中获得各种混合组织。粉末混合物的组织由乙酸淀粉颗粒的载体有效载荷计算,而片剂中的孔径分布通过压汞法测量。载体有效载荷低于1表示存在游离乙酸淀粉颗粒表面,而数字大于1则表明咖啡因颗粒完全占据了乙酸淀粉颗粒表面积。载体有效载荷的计算可以很好地预测片剂结构中乙酸淀粉淀粉的存在。从混合物中压制的片剂中的咖啡因基质可以通过压汞法测量。在溶出度测试中,存在不同的基质以及不同的孔网络决定了片剂的物理变化和咖啡因的释放机理。当片剂仅包含咖啡因基质时,片剂会迅速崩解并立即释放出总量的咖啡因。尽管形成了裂缝,但乙酸淀粉淀粉的单一基质导致片剂保持完整。两种材料的矩阵共存会导致药片表面腐蚀。通过包含扩散和松弛因子的方程式拟合保持完整或显示侵蚀的片剂的咖啡因释放曲线,以描述片剂孔隙率对药物释放的影响。

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