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首页> 外文期刊>Drug development and industrial pharmacy >Development of fast-disintegrating pellets in a rotary processor.
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Development of fast-disintegrating pellets in a rotary processor.

机译:在旋转处理器中开发快速崩解的颗粒。

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The aim of the present work was to formulate fast-disintegrating pellets by direct pelletization in a rotary processor. Formulations containing kaolin or bentonite and lactose were agglomerated with or without the addition of crospovidone in an instrumented rotary processor. The effects of the excipients on the amount of wall adhesion, the size and size distribution, the disintegration time, and the shape of the agglomerates, as well as the content of agglomerates > 2800 microns, were investigated. Further, pellets containing a model drug having a low aqueous solubility were prepared, and the drug dissolution profile was compared to that of pellets containing microcrystalline cellulose (MCC). Formulations containing kaolin resulted in fast-disintegrating pellets. Pellets containing bentonite eroded, but did not disintegrate, and the formulations gave rise to large amounts of wall adhesion. The addition of crospovidone increased the water content at the end of liquid addition for all formulations, and resulted in slightly more spherical agglomerates. When comparing formulations containing kaolin and MCC, kaolin gave rise to wider size distributions and a higher amount of agglomerates > 2800 microns, but the drug dissolution rate was much faster. Complete (100%) drug release was seen after 8 min with the kaolin formulation, whereas only 40% was released after 2 hr from the MCC formulation.
机译:本工作的目的是通过在旋转处理器中直接造粒来配制快速崩解的颗粒。在仪器旋转处理器中,在添加或不添加交聚维酮的情况下,将含有高岭土或膨润土和乳糖的配方附聚。研究了赋形剂对壁附着量,大小和尺寸分布,崩解时间和附聚物形状以及附聚物含量> 2800微米的影响。此外,制备了包含具有低水溶性的模型药物的丸剂,并且将药物溶出曲线与包含微晶纤维素(MCC)的丸剂的溶出曲线进行了比较。含有高岭土的制剂导致快速崩解的颗粒。含有膨润土的颗粒被侵蚀,但没有崩解,并且该制剂引起大量的壁粘附。在所有配方的液体添加结束时,交聚维酮的添加都会增加水含量,并导致球形团聚体稍微多一些。当比较含有高岭土和MCC的制剂时,高岭土引起更宽的尺寸分布和更多的> 2800微米的附聚物,但是药物溶解速率快得多。高岭土制剂在8分钟后可见完全(100%)药物释放,而MCC制剂在2小时后仅释放40%。

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