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低频频移分散拉曼光谱法分析可吸入剂型。

Low-frequency shift dispersive Raman spectroscopy for the analysis of respirable dosage forms.

机构信息

Department of Mechanical Engineering, University of Alberta, Edmonton, AB, Canada.

Pearl Therapeutics Inc., Redwood City, CA, USA.

出版信息

Int J Pharm. 2014 Jul 20;469(1):197-205. doi: 10.1016/j.ijpharm.2014.04.058. Epub 2014 May 1.

Abstract

A high performance Raman system equipped with a CCD (charged coupled device) sensor and recently developed optical filter technology is described. It provides high sensitivity, high resolution, and access to low-frequency vibrations enabling resolution of spectral features due to lattice vibrational modes and internal vibrational modes, greatly improving the ability to detect small changes due to variations in the three dimensional molecular arrangement, e.g., during loss of crystallinity. Applications to solid state analysis, such as solid phase identification and differentiation of glycopyrronium bromide and formoterol fumarate in pharmaceutical powders, and identification of active pharmaceutical ingredients, e.g., salmeterol xinafoate, fluticasone propionate, mometasone furoate, and salbutamol sulphate, as well as excipients, e.g., amino acids, in different formulations, are presented. For the first time, low-frequency shift Raman spectra of mannitol polymorphs were measured and used for solid phase identification. Unambiguous identification of two similar bronchodilator metered dose inhalers, Ventolin(®) HFA and Airomir(®), was accomplished. The low-frequency shift Raman signals can be used for the analysis of crystallinity of small samples (<5mg) of respiratory dosage forms in a multi-component formulation matrix containing less than 3% by weight of the component of interest.

摘要

本文介绍了一种配备 CCD(电荷耦合器件)传感器和最近开发的光学滤波技术的高性能拉曼系统。它具有高灵敏度、高分辨率以及访问低频振动的能力,能够分辨晶格振动模式和内部分子振动模式的光谱特征,大大提高了检测由于三维分子排列变化(例如结晶度丧失)引起的微小变化的能力。该系统在固态分析方面具有广泛的应用,例如药物粉末中吡丙诺克、福莫特罗及其盐、沙丁胺醇等活性药物成分以及氨基酸等赋形剂的固态鉴别和区分,以及药物粉末中活性药物成分的固态鉴别,还可以测量甘露糖醇多晶型物的低频位移拉曼光谱并用于固态鉴别,首次实现了两种类似的支气管扩张器计量吸入器(万托林®和爱全乐®)的明确鉴别。低频位移拉曼信号可用于分析包含小于 3%(重量比)感兴趣成分的多组分配方基质中小剂量(<5mg)呼吸剂型的结晶度。

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