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硬脂酸镁和细乳糖协同作用改善丙酸氟替卡松干粉制剂的雾化性能。

Synergistic effect of magnesium stearate and fine lactose in improving aerosolization performance of fluticasone propionate in dry powder formulation.

机构信息

School of Pharmacy, Shenyang Key Laboratory of Intelligent Mucosal Drug Delivery Systems, Shenyang Pharmaceutical University, Shenyang 110016, China.

School of Pharmacy, Shenyang Key Laboratory of Intelligent Mucosal Drug Delivery Systems, Shenyang Pharmaceutical University, Shenyang 110016, China; Joint International Research Laboratory of Intelligent Drug Delivery Systems, Ministry of Education, China.

出版信息

Int J Pharm. 2024 Oct 25;664:124609. doi: 10.1016/j.ijpharm.2024.124609. Epub 2024 Aug 18.

Abstract

Magnesium stearate (MgSt) and lactose fines are often used as ternary components in carrier-based dry powder inhalers (DPIs) to improve fine particle fraction (FPF), but whether they act synergistically to improve aerosolization performance of DPI formulations is currently less studied. In addition, the applicability of utilizing powder rheological parameters to predict the FPF needs to be further verified. Thus, in this study, using fluticasone propionate (FP) as a model drug, effect of lactose fines addition in 0.5% MgSt containing DPI formulations on their powder and aerodynamic properties was explored. Influence of MgSt and fines mixing order on the DPIs performance was also investigated. The results showed that addition of lactose fines (1-10%) in 0.5% MgSt containing formulations could further improve flowability and enhance adhesion of the mixtures, and they could act synergistically to improve FPF. Moreover, the presence of 0.5% MgSt can greatly reduce the amount of lactose fines required to achieve the comparable FPF. The mixing order can affect distribution of MgSt on the carrier surface, with higher FPF noted when MgSt was mixed with carrier first, followed by lactose fines. A good linear relationship between powder rheological parameters such as basic flowability energy (BFE), Permeability and FPF was disclosed. In conclusion, in FP based DPIs, MgSt and lactose fines act synergistically to enhance FPF by tuning powder characteristics. Good flowability (27.39%) and strong adhesion (72.61%) contributed to the enhanced drug deposition in the lung.

摘要

硬脂酸镁(MgSt)和乳糖细粉常作为载体干粉吸入剂(DPIs)中的三元成分,以提高微细颗粒分数(FPF),但它们是否协同作用以改善 DPI 制剂的雾化性能目前研究较少。此外,利用粉末流变学参数预测 FPF 的适用性需要进一步验证。因此,在这项研究中,以丙酸氟替卡松(FP)为模型药物,研究了乳糖细粉在含 0.5%MgSt 的 DPIs 制剂中的添加对其粉末和空气动力学性质的影响。还研究了 MgSt 和细粉混合顺序对 DPI 性能的影响。结果表明,在含 0.5%MgSt 的制剂中添加 1-10%的乳糖细粉可以进一步改善流动性并增强混合物的粘性,并且它们可以协同作用以提高 FPF。此外,存在 0.5%MgSt 可以大大减少达到可比 FPF 所需的乳糖细粉的量。混合顺序会影响 MgSt 在载体表面上的分布,当 MgSt 先与载体混合,然后再与乳糖细粉混合时,FPF 较高。揭示了粉末流变学参数(如基本流动性能量(BFE)、渗透性和 FPF)之间的良好线性关系。总之,在基于 FP 的 DPIs 中,MgSt 和乳糖细粉通过调节粉末特性协同作用以提高 FPF。良好的流动性(27.39%)和较强的粘附力(72.61%)有助于增强药物在肺部的沉积。

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