首页> 外文期刊>Drug development and industrial pharmacy >Bead compacts. I. Effect of compression on maintenance of polymer coat integrity in multilayered bead formulations.
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Bead compacts. I. Effect of compression on maintenance of polymer coat integrity in multilayered bead formulations.

机译:珠子紧凑型。 I.压缩对多层珠制剂中聚合物涂层完整性维持的影响。

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Little information is available on the compactability of beads for oral sustained-release dosage forms. It is known that polymer-coated beads may fuse together to produce a non-disintegrating controlled-release matrix tablet when compressed. This study evaluates the effect of compression on beads with multiple layers of polymer and drug coat, and the effect of cushioning excipients and compaction pressure on drug release from compressed bead formulations. The multilayered beads consist of several alternating layers of acetaminophen (APAP) and polymer coats (Aquacoat) with an outer layer of mannitol as a cushioning excipient. Percent drug release versus time profiles showed that the release of drug decreases from noncompacted beads as the amount and number of coatings increases, with only 43% of drug released in 24 hr for coated beads with 10 layers. It was shown that the compacted multilayered beads will disintegrate in gastrointestinal fluids, providing a useful drug release pattern. It was shown that beads of drug prepared by any method can be spray-layered with excipients such as Avicel and mannitol. Spray-layering of the cushioning excipient onto beads can provide an effective way to circumvent segregation issues associated with mixing of the polymer-coated beads and powdered or spherical/nonspherical cushioning excipients. Spray layering of the cushioning excipient can also provide excellent flow properties of the final formulation as visually observed in our experiments. Triple-layered caplets (TLC) were also prepared with outer layers of Avicel PH-101 or polyethylene oxide (PEO), and a center layer of polymer-coated beads. For TLC, the polymer coating on the beads fractured, and nondisintegrating matrix formulations were obtained with both caplet formulations.
机译:少量信息可用于口服缓释剂型的珠子的紧凑性。已知聚合物涂覆的珠粒可以融合在一起,以在压缩时产生非崩解的控释基质片。该研究评估了压缩对多层聚合物和药物涂层的珠粒的影响,以及缓冲赋形剂和压实压力对压缩珠制剂的药物释放的影响。多层珠粒由几种交替的乙酰氨基酚(APAP)和聚合物涂层(Aquacoat)组成,具有甘露醇外层作为缓冲赋形剂。药物释放百分比与时间曲线表明,随着涂层的量和数量增加,药物释放从非兼容的珠子增加,只有43%的药物在24小时内释放,用于涂覆的珠子,具有10层的涂覆的珠子。结果表明,压实的多层珠粒将在胃肠液中崩解,提供有用的药物释放图案。结果表明,通过任何方法制备的药物珠子可以用赋形剂如丙酸和甘露醇喷涂。将缓冲赋形剂喷涂到珠子上可以提供一种有效的方法来规避与聚合物涂覆的珠粒和粉末状或球形/非球形缓冲赋形剂的混合相关的致偏析问题。缓冲赋形剂的喷雾层化还可以在我们的实验中如目测观察到的最终配方提供优异的流动性能。还使用二升PH-101或聚环氧乙烷(PEO)的外层制备三层膜(TLC),以及聚合物涂覆的珠子的中心层。对于TLC,用两种囊状制剂获得珠子骨折上的聚合物涂层和非隔膜基质制剂。

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