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挤出滚圆丸和多颗粒系统的机械性能评价。

Evaluation of the mechanical properties of extrusion-spheronized beads and multiparticulate systems.

机构信息

School of Pharmacy, University of Maryland, Baltimore, MD 21201, USA.

出版信息

Drug Dev Ind Pharm. 2009 Jun;35(6):683-93. doi: 10.1080/03639040802526797.

Abstract

BACKGROUND

The mechanical properties of extrusion-spheronized beads as part of multiparticulate systems has not been adequately studied.

AIM

The purpose was to study the mechanical properties of such drug beads and blends of drug beads and glycerol monostearate (GMS)-placebo beads.

METHOD

Heckel analysis (mean yield pressure, P(y)), strain rate sensitivity (SRS), elastic recovery (ER), and total work of compression (TWC) studies were conducted using a Presster(TM) linear rotary tablet machine simulator operating at several combinations of speed and force.

RESULTS

The GMS-placebo beads exhibited the lowest P(y) values (9.1 +/- 1.6 MPa) and TWC (1.9 +/- 0.3 J) overall and these values steadily increased with increases in both applied speed and force. Although the placebo beads had the lowest ER values of 3.8 +/- 0.7%, these beads showed significant time-dependent deformation behavior based on their SRS value of 70.2%. Heckel analysis showed that uncoated theophylline beads containing 58% ethylcellulose were more compressible than control beads containing 58% dicalcium phosphate dihydrate, the latter having the highest overall P(y) of 79.3 +/- 3.8 MPa for the low speed/low force condition. Heckel plots also showed that 50:50 ratios of blends containing drug beads coated with either Surelease or Eudragit NE30D behaved similarly under increasing force and speed. Surelease-coated cimetidine beads gave the highest P(y), TWC, and ER values and these values were higher than Eudragit NE30D-coated beads. The 50:50 blend ratios containing coated cimetidine beads showed higher P(y), TWC, and ER values than the 60:40 ratios.

CONCLUSION

Variation in the compressibility of different beads and blends can be attributed to excipients used in their formulation as well as to the drug bead-to-placebo bead ratio.

摘要

背景

挤出制球部分多颗粒系统的机械性能尚未得到充分研究。

目的

研究此类药物珠粒和药物珠粒与甘油单硬脂酸酯(GMS)-安慰剂珠粒混合物的机械性能。

方法

使用 Presster(TM)线性旋转压片机模拟器在几种速度和力的组合下进行 Heckel 分析(平均屈服压力,P(y))、应变速率敏感性(SRS)、弹性恢复(ER)和总压缩功(TWC)研究。

结果

GMS-安慰剂珠粒的 P(y)值(9.1 ± 1.6 MPa)和 TWC(1.9 ± 0.3 J)最低,并且这些值随着施加速度和力的增加而稳步增加。虽然安慰剂珠粒的 ER 值最低,为 3.8 ± 0.7%,但由于 SRS 值为 70.2%,这些珠粒显示出明显的时间依赖性变形行为。Heckel 分析表明,含有 58%乙基纤维素的未涂层茶碱珠粒比含有 58%二水合磷酸二钙的对照珠粒更具可压缩性,后者在低速度/低力条件下具有最高的总体 P(y)值为 79.3 ± 3.8 MPa。Heckel 图还表明,在增加力和速度的情况下,含有用 Surelease 或 Eudragit NE30D 包衣的药物珠粒的 50:50 比例的混合物表现出相似的行为。用 Surelease 包衣的西咪替丁珠粒给出了最高的 P(y)、TWC 和 ER 值,这些值高于 Eudragit NE30D 包衣珠粒。含有包衣西咪替丁珠粒的 50:50 混合比例的 P(y)、TWC 和 ER 值高于 60:40 比例。

结论

不同珠粒和混合物的可压缩性变化可归因于其配方中使用的赋形剂以及药物珠粒与安慰剂珠粒的比例。

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