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评价双螺杆湿法造粒中的黏合剂 - 优化可压性。

Evaluation of binders in twin-screw wet granulation - Optimization of tabletability.

机构信息

Institute of Pharmaceutics and Biopharmaceutics, Faculty of Mathematics and Natural Sciences, Heinrich Heine University, Universitätsstr. 1, 40225 Düsseldorf, Germany.

出版信息

Int J Pharm. 2024 Jun 25;659:124290. doi: 10.1016/j.ijpharm.2024.124290. Epub 2024 May 29.

Abstract

The influence of hydroxypropyl cellulose type (HPC-SSL SFP, HPC-SSL), concentration (2 %, 3.5 %, 5 %) and filler (lactose, calcium hydrogen phosphate (DCP)/microcrystalline cellulose (MCC)) on twin-screw wet granulation and subsequent tableting was studied. The aim was to identify the formulation of the highest tabletability which still fulfills the requirements of the disintegration. Lactose combined with 5 % binder enabled a higher tabletability and a faster disintegration than DCP/MCC. It was found that tabletability of lactose formulations can be increased by higher binder concentration and higher compression pressure while tabletability of DCP/MCC formulations can be only increased by higher compression pressure. It was observed that batches containing DCP/MCC failed the disintegration test, if the highest binder concentration and the highest compression pressure were used. To ensure a fast disintegration, the compression pressure or at least the binder concentration had to be low. Changing the disintegrant and its localization improved the DCP/MCC formulation, resulting in faster disintegration than lactose tablets. However, it also resulted in a lower tabletability. In this study best tablets were achieved with 3.5 % or 5 % binder and lactose as filler. These tablets presented the highest tabletability but still disintegrated in less than 500 s.

摘要

研究了羟丙基纤维素类型(HPC-SSL SFP、HPC-SSL)、浓度(2%、3.5%、5%)和赋形剂(乳糖、磷酸二氢钙(DCP)/微晶纤维素(MCC))对双螺杆湿法制粒和后续压片的影响。目的是确定片剂可压性最高的配方,同时仍能满足崩解度的要求。乳糖与 5%的粘合剂结合可提高片剂的可压性和崩解速度,优于 DCP/MCC。研究发现,乳糖配方的可压性可以通过提高粘合剂浓度和增加压缩压力来提高,而 DCP/MCC 配方的可压性只能通过增加压缩压力来提高。研究发现,如果使用最高粘合剂浓度和最高压缩压力,含有 DCP/MCC 的批次会无法通过崩解度测试。为了确保快速崩解,必须降低压缩压力或至少降低粘合剂浓度。改变崩解剂及其定位可改善 DCP/MCC 配方,使其崩解速度快于乳糖片。然而,这也导致片剂可压性降低。在这项研究中,使用 3.5%或 5%的粘合剂和乳糖作为赋形剂可获得最佳片剂。这些片剂具有最高的可压性,但仍在 500 秒内崩解。

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