Attribute transmission and effects of diluents and granulation liquids on granule properties and tablet quality for high shear wet granulation and tableting process

造粒 易碎性 压片 微晶纤维素 颗粒(地质) 稀释剂 材料科学 硬脂酸镁 赋形剂 压实 复合材料 剂型 化学工程 色谱法 化学 纤维素 有机化学 聚合物 乙基纤维素 工程类
作者
LiangFeng Wang,Lijie Zhao,Yanlong Hong,Lan Shen,Xiao Lin
出处
期刊:International Journal of Pharmaceutics [Elsevier BV]
卷期号:642: 123177-123177 被引量:9
标识
DOI:10.1016/j.ijpharm.2023.123177
摘要

This study aims to examine (i) the effect of diluent types (lactose monohydrate, corn starch, and microcrystalline cellulose) and granulation liquids (20% polyvinylpyrrolidone K30, 65% alcohol, and dispersion containing 40% model drug– Pithecellobium clypearia Benth extracted powder) on granule properties and tablet quality for high shear wet granulation and tableting (HSWG-T) and, more importantly, (ii) the attribute transmission in the process. In general, the impact of diluents on granule properties and tablet quality was more dominant than that of granulation liquids. Attribute transmission patterns were revealed as follows. The granules’ ISO. Roundness and density correlated with raw material (i.e., model drug, diluent, and/or granulation liquid) properties such as density and viscosity. The granules’ compressibility parameter a correlated with the granules’ Span, and parameter y0 correlated with the granules’ flowability and friability. Compactibility parameters ka and kb correlated mainly with granules' flowability and density, and parameter b correlated significantly and positively with tablet tensile strength. The compressibility correlated negatively with tablet solid fraction (SF) and friability, while the compactibility correlated positively with tablet disintegration time. Moreover, the rearrangement and elasticity of granules correlated positively with SF and friability, respectively. Overall, this study provides some guides for achieving high-quality tablets via HSWG-T.
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