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喷雾干燥和喷雾冷冻干燥糖载体在干粉吸入剂配方中的 1H NMR 定量分析。

H NMR quantification of spray dried and spray freeze-dried saccharide carriers in dry powder inhaler formulations.

机构信息

Drug Discovery, Delivery and Patient Care (DDDPC) Theme, School of Life Sciences, Pharmacy and Chemistry, Department of Pharmacy, Kingston University London, Kingston upon Thames, Surrey KT1 2EE, United Kingdom.

School of Pharmacy, Faculty of Science and Engineering, Wolverhampton University, United Kingdom.

出版信息

Int J Pharm. 2019 Jun 10;564:318-328. doi: 10.1016/j.ijpharm.2019.03.030. Epub 2019 Mar 16.

Abstract

Quantitative analysis using proton NMR (H qNMR) has been employed in various areas such as pharmaceutical analysis (e.g., dissolution study), vaccines, natural products analysis, metabolites, and macrolide antibiotics in agriculture industry. However, it is not routinely used in the quantification of saccharides in dry powder inhaler (DPI) formulations. The aim of this study was to develop a H NMR method for the quantification of saccharides employed in DPI formulations. Dry powders as DPI carriers were prepared by spray drying (SD) and spray freeze drying (SFD) using three saccharides: namely D-mannitol, D-sorbitol and D-(+)-sucrose. The calibration curves constructed for all three saccharides demonstrated linearity with R value of 1. The H qNMR method produced accurate (relative error %: 0.184-3.697) and precise data with high repeatability (RSD %: 0.517-3.126) within the calibration curve concentration range. The H qNMR method also demonstrated significant sensitivity with low values of limit of detection (0.058 mM for D-mannitol, 0.045 mM for D-(+)-sucrose, and 0.056 mM for D-sorbitol) and limit of quantitation (0.175 mM for D-mannitol, 0.135 mM for D-(+)-sucrose, and 0.168 mM for D-sorbitol). Pulmonary deposition via impaction experiments of the three saccharides was quantified using the developed method. It was found that SFD D-mannitol (68.99%) and SFD D-(+)-sucrose (66.62%) exhibited better delivered dose (total saccharide deposition in throat and all impactor stages) than SD D-mannitol (49.03%) and SD D-(+)-sucrose (57.70%) (p < 0.05). The developed H qNMR methodology can be routinely used as an analytical method to assess pulmonary deposition in impaction experiments of saccharides employed as carriers in DPI formulations.

摘要

采用质子核磁共振(H qNMR)的定量分析已经应用于多个领域,如药物分析(例如,溶解研究)、疫苗、天然产物分析、代谢物以及农业行业中的大环内酯类抗生素。然而,它并未常规用于干粉吸入剂(DPI)制剂中糖类的定量。本研究旨在开发一种用于 DPI 制剂中糖类定量的 H NMR 方法。采用喷雾干燥(SD)和喷雾冷冻干燥(SFD)制备了三种糖类(D-甘露醇、D-山梨醇和 D-(+)-蔗糖)作为 DPI 载体的干粉。所有三种糖类的校准曲线均呈线性,R 值为 1。H qNMR 方法在校准曲线浓度范围内产生了准确(相对误差%:0.184-3.697)和精确的数据,具有高重复性(RSD%:0.517-3.126)。该 H qNMR 方法还具有很高的灵敏度,检测限低(D-甘露醇为 0.058mM,D-(+)-蔗糖为 0.045mM,D-山梨醇为 0.056mM),定量限低(D-甘露醇为 0.175mM,D-(+)-蔗糖为 0.135mM,D-山梨醇为 0.168mM)。采用开发的方法定量了三种糖类的撞击实验中的肺部沉积量。结果发现,SFD D-甘露醇(68.99%)和 SFD D-(+)-蔗糖(66.62%)的输送剂量(咽喉和所有撞击级别的总糖类沉积量)优于 SD D-甘露醇(49.03%)和 SD D-(+)-蔗糖(57.70%)(p<0.05)。所开发的 H qNMR 方法学可以常规用作分析方法,以评估作为 DPI 制剂载体的糖类在撞击实验中的肺部沉积。

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