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干粉吸入器中二元粘性混合物的表面覆盖率与粉末力学之间的关系。

Relationships between surface coverage ratio and powder mechanics of binary adhesive mixtures for dry powder inhalers.

机构信息

Department of Pharmacy, Uppsala University, Husargatan 3, Box 580, SE-751 23 Uppsala, Sweden.

Department of Pharmacy, Uppsala University, Husargatan 3, Box 580, SE-751 23 Uppsala, Sweden.

出版信息

Int J Pharm. 2018 Apr 25;541(1-2):143-156. doi: 10.1016/j.ijpharm.2018.02.017. Epub 2018 Feb 15.

Abstract

The aim of this paper was to study relationships between the content of fine particles and the powder mechanics of binary adhesive mixtures and link these relationships to the blend state. Mixtures with increasing amounts of fine particles (increasing surface coverage ratios (SCR)) were prepared using Lactopress SD as carrier and micro particles of lactose as fines (2.7 µm). Indicators of unsettled bulk density, compressibility and flowability were derived and the blend state was visually examined by imaging. The powder properties studied showed relationships to the SCR characterised by stages. At low SCR, the fine particles predominantly gathered in cavities of the carriers, giving increased bulk density and unchanged or improved flow. Thereafter, increased SCR gave a deposition of particles at the enveloped carrier surface with a gradually more irregular adhesion layer leading to a reduced bulk density and a step-wise reduced flowability. The mechanics of the mixtures at a certain stage were dependent on the structure and the dynamics of the adhesion layer and transitions between the stages were controlled by the evolution of the adhesion layer. It is advisable to use techniques based on different types of flow in order to comprehensively study the mechanics of adhesive mixtures.

摘要

本文旨在研究细颗粒含量与二元胶黏剂混合物粉末力学性能之间的关系,并将这些关系与混合状态联系起来。使用 Lactopress SD 作为载体和乳糖微粉作为细粉(2.7 µm),制备了细粉含量逐渐增加(表面覆盖率比(SCR)逐渐增加)的混合物。得出了未稳定堆积密度、可压缩性和流动性的指标,并通过成像对混合状态进行了直观检查。研究的粉末性能与以阶段为特征的 SCR 表现出相关性。在低 SCR 下,细颗粒主要聚集在载体的腔体内,从而增加堆积密度,同时保持或改善流动性。此后,SCR 的增加导致颗粒在被包裹的载体表面沉积,并且附着层逐渐变得不规则,导致堆积密度降低,流动性逐步降低。在特定阶段,混合物的力学性能取决于附着层的结构和动力学,而阶段之间的转变则由附着层的演变控制。建议使用基于不同类型流动的技术来全面研究胶黏剂混合物的力学性能。

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