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水分对乳糖吸入混合物的表面改性。

Surface modification of lactose inhalation blends by moisture.

机构信息

Pfizer Institute for Pharmaceutical Materials Science, Department of Materials Science and Metallurgy, University of Cambridge, Cambridge CB2 3QZ, UK.

出版信息

Int J Pharm. 2010 May 31;391(1-2):29-37. doi: 10.1016/j.ijpharm.2010.02.011. Epub 2010 Feb 13.

Abstract

We present an investigation of the effects of relative humidity (RH) on lactose powders during storage, with the aims of determining the humidity conditions under which lactose inhalation blends are stable, and characterising the surface changes that occur as a result of water condensation. Lactose inhalation powders manufactured by milling and sieving were stored in environments of RH from 32% to 100% (at room temperature) and changes in surface properties were observed using BET nitrogen adsorption, environmental scanning electron microscopy and laser diffraction particle size analysis. We found that the specific surface area of all lactose powders decreased during storage, with the rate of decrease and final drop being larger at higher RH (ranging from a 62% decrease at 100% RH to a 34% decrease at 32% RH, at room temperature). The specific surface area decrease corresponded to a reduction in the volume of fine particles (<5 microm) in the blend. Two effects were found to contribute to the decrease in specific surface area: the smoothing of coarse particles, attributed to the surface fine particles undergoing deliquescence due to their enhanced solubility by the Kelvin effect (i.e. due to their greater curvature and consequently greater surface energy), and solid bridging between fine particles in agglomerates, such that loose fine particles disappeared from the powder blend, having bonded with coarser particles. These changes in particle properties resulting from moisture exposure are expected to influence the fine particle fraction of drug released from the powder blends, and the observation that lactose inhalation blends were unstable even at 32% RH could potentially be a concern for the pharmaceutical industry.

摘要

我们研究了相对湿度(RH)对储存过程中乳糖粉末的影响,目的是确定乳糖吸入混合物稳定的湿度条件,并描述由于水蒸气凝结而导致的表面变化。通过研磨和筛分制造的乳糖吸入粉末在 RH 为 32%至 100%(室温)的环境中储存,并使用 BET 氮气吸附、环境扫描电子显微镜和激光衍射粒度分析观察表面性质的变化。我们发现,所有乳糖粉末的比表面积在储存过程中均减小,在较高 RH(从 100% RH 时的 62%减小到 32% RH 时的 34%,室温下)时减小的速率和最终降幅更大。比表面积的减小与混合物中细颗粒(<5 微米)体积的减少相对应。发现有两个因素导致比表面积减小:粗颗粒的平滑化,这归因于表面细颗粒由于 Kelvin 效应(即由于更大的曲率和因此更大的表面能)而发生潮解,从而增强了其溶解度;以及团聚体中细颗粒之间的固体桥接,使得松散的细颗粒从粉末混合物中消失,与较粗的颗粒结合。这些由于水分暴露而导致的颗粒性质的变化预计会影响从粉末混合物中释放的药物的细颗粒分数,并且即使在 32% RH 下乳糖吸入混合物也不稳定的观察结果可能会引起制药行业的关注。

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