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基于颗粒特性(流动性、机械强度和崩解行为)优化辊压工艺变量:SeDeM-ODT 专家系统的应用。

Optimization of the process variables of roller compaction, on the basis of granules characteristics (flow, mechanical strength, and disintegration behavior): an application of SeDeM-ODT expert system.

机构信息

a Department of Pharmacy , Kohat University of Science and Technology , Kohat , Pakistan.

出版信息

Drug Dev Ind Pharm. 2019 Sep;45(9):1537-1546. doi: 10.1080/03639045.2019.1634094. Epub 2019 Jul 5.

Abstract

The objective of the study was application of SeDeM-ODT expert system for optimization of process variables for roller compaction and for the preparation of granules with better flow, compressibility, and disintegration behavior. In the present study, granules were prepared at pre-determined (on the basis of factorial design) process variables and characterized using SeDeM-ODT expert system. Compatibility of ribavirin with excipients (microcrystalline cellulose, tablettose-80, cross carmellose sodium, and magnesium stearate) was evaluated by binary mixture approach, using FTIR. According to the SeDeM-ODT expert system, granules were characterized for various parameters related to flow, compressibility and disintegration behavior and Index of Good Compressibility and Buccodispersibility (IGCB) was calculated. The process variables resulting in highest IGCB value were considered as optimum. Ribavirin was found compatible with all the excipients used in the study and characteristics peaks were present in FTIR spectra after subjecting to stress conditions (75% relative humidity at 45 ± 5 °C) for 30 days. Both Ribavirin powder and Ribavirin containing powder blend had poor flow and compressibility while disintegration behavior was good due to higher water solubility. Screw speed of 35 rpm and roller speed at 12 rpm resulted in granules with acceptable characteristics. The IGCB value (5.63) of the granules was highest of all, indicating its better characteristics. SeDeM-ODT expert system presents a more practical picture of the granules and also predicts the mechanical strength and disintegration behavior of the tablets prepared from the granules. By proper optimization of screw and roller speed, efficiency of the process can be improved.

摘要

本研究的目的是应用 SeDeM-ODT 专家系统优化滚压制粒的工艺变量,制备具有更好流动性、可压缩性和崩解行为的颗粒。在本研究中,根据预定的(基于析因设计)工艺变量制备颗粒,并使用 SeDeM-ODT 专家系统对其进行表征。采用傅里叶变换红外光谱法(FTIR)的二元混合物方法评估利巴韦林与赋形剂(微晶纤维素、乳糖-80、交联羧甲纤维素钠和硬脂酸镁)的相容性。根据 SeDeM-ODT 专家系统,对与流动性、可压缩性和崩解行为相关的各种参数以及良好可压缩性和可崩解性指数(IGCB)进行颗粒表征。考虑到最高 IGCB 值的工艺变量被认为是最佳的。研究发现利巴韦林与研究中使用的所有赋形剂均相容,在经受 30 天(45±5%相对湿度,75%相对湿度)的压力条件后,FTIR 光谱中存在特征峰。利巴韦林粉末和含有利巴韦林的粉末混合物的流动性和可压缩性都很差,但是由于较高的水溶性,崩解行为良好。螺杆转速为 35rpm,滚轮转速为 12rpm 时,制得的颗粒具有可接受的特性。颗粒的 IGCB 值(5.63)最高,表明其特性更好。SeDeM-ODT 专家系统更真实地呈现了颗粒的特性,还预测了由颗粒制备的片剂的机械强度和崩解行为。通过适当优化螺杆和滚轮速度,可以提高工艺效率。

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