Suppr超能文献

辊压/干法造粒制得的延展性或脆性物料的颗粒中,颗粒碎裂对压片性能降低的相关性。

The relevance of granule fragmentation on reduced tabletability of granules from ductile or brittle materials produced by roll compaction/dry granulation.

机构信息

Novo Nordisk A/S, Oral Pilot and Process Development, Måløv, Denmark; Department of Pharmacy, University of Copenhagen, Copenhagen, Denmark.

Novo Nordisk A/S, Oral Pilot and Process Development, Måløv, Denmark.

出版信息

Int J Pharm. 2021 Jan 5;592:120035. doi: 10.1016/j.ijpharm.2020.120035. Epub 2020 Nov 2.

Abstract

Roll compaction/dry granulation often results in loss of tabletability. The two main hypotheses for this are granule hardening and granule size enlargement. The aim of this study was to investigate the effect of granule size, roll compaction force, and granule fragmentation upon tableting and its effect on tabletability of granules constituting a ductile or brittle material. Plastically deforming microcrystalline cellulose (MCC) and fragmenting lactose monohydrate (lactose) were roll compacted at five roll compaction forces ranging from 2 to 16 kN/cm. Granule size fractions of 250-355 and 500-710 µm were blended with 10% magnesium stearate (MgSt), compressed into tablets and ground to obtain compressed granules. The predominant deformation behaviour of the particles constituting the granules directly impacted granule deformation upon tableting, as lactose granules fractured extensively upon tableting, whereas MCC granules predominantly deformed by plastic deformation. Increased roll compaction force resulted in more granule hardening of both materials and thereby granules less susceptible to fragmentation upon tableting. Granule hardening accounted for the largest loss of tabletability of MCC granules upon roll compaction. Roll compaction force and granule size had no or negligible effect on tabletability of lactose tablets without MgSt, whereas increased roll compaction force and larger granules decreased tensile strength of tablets containing lactose granules blended with MgSt. This was explained by inter-particle and inter-granular bonds contributing equally to the tensile strength of lactose tablets without MgSt. However, after addition of MgSt, the decreased fragmentation tendency of larger granules compacted at higher roll compaction forces resulted in greater MgSt coverage of the granules upon tableting, thereby decreasing tabletability.

摘要

辊压/干法造粒常常导致可压性降低。对此有两种主要假说:颗粒硬化和颗粒尺寸增大。本研究的目的是研究颗粒尺寸、辊压强度和颗粒碎裂对压片的影响及其对构成韧性或脆性材料的颗粒的可压性的影响。塑性变形的微晶纤维素 (MCC) 和碎裂的乳糖一水合物 (乳糖) 在五个辊压强度下进行辊压,范围从 2 到 16 kN/cm。250-355 和 500-710 µm 的颗粒大小级分与 10%硬脂酸镁 (MgSt) 混合,压制成片剂并研磨以获得压缩颗粒。构成颗粒的颗粒的主要变形行为直接影响压片时颗粒的变形,因为乳糖颗粒在压片时广泛碎裂,而 MCC 颗粒主要通过塑性变形变形。增加辊压强度会导致两种材料的颗粒硬化程度增加,从而使颗粒在压片时不易碎裂。颗粒硬化是 MCC 颗粒在辊压过程中可压性损失最大的原因。辊压强度和颗粒尺寸对不含 MgSt 的乳糖片剂的可压性没有影响或影响可忽略不计,而增加辊压强度和较大的颗粒会降低含有与 MgSt 混合的乳糖颗粒的片剂的拉伸强度。这可以解释为颗粒间和颗粒间的键合对不含 MgSt 的乳糖片剂的拉伸强度有同等贡献。然而,加入 MgSt 后,较高辊压强度下压缩的较大颗粒的碎裂趋势降低,导致 MgSt 在压片时更充分地覆盖颗粒,从而降低了可压性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验