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衰减全反射傅里叶变换红外(ATR FT-IR)光谱作为一种分析方法,用于研究嵌入固体脂质基质中的模型蛋白质的二级结构。

Attenuated Total Reflection Fourier Transform Infrared (ATR FT-IR) Spectroscopy as an Analytical Method to Investigate the Secondary Structure of a Model Protein Embedded in Solid Lipid Matrices.

机构信息

1 School of Pharmacy, University of Otago, Dunedin, New Zealand.

2 School of Pharmacy, International Medical University, Kuala Lumpur, Malaysia.

出版信息

Appl Spectrosc. 2018 Feb;72(2):268-279. doi: 10.1177/0003702817739908. Epub 2017 Dec 28.

Abstract

Protein drugs may encounter conformational perturbations during the formulation processing of lipid-based solid dosage forms. In aqueous protein solutions, attenuated total reflection Fourier transform infrared (ATR FT-IR) spectroscopy can investigate these conformational changes following the subtraction of spectral interference of solvent with protein amide I bands. However, in solid dosage forms, the possible spectral contribution of lipid carriers to protein amide I band may be an obstacle to determine conformational alterations. The objective of this study was to develop an ATR FT-IR spectroscopic method for the analysis of protein secondary structure embedded in solid lipid matrices. Bovine serum albumin (BSA) was chosen as a model protein, while Precirol AT05 (glycerol palmitostearate, melting point 58 ℃) was employed as the model lipid matrix. Bovine serum albumin was incorporated into lipid using physical mixing, melting and mixing, or wet granulation mixing methods. Attenuated total reflection FT-IR spectroscopy and size exclusion chromatography (SEC) were performed for the analysis of BSA secondary structure and its dissolution in aqueous media, respectively. The results showed significant interference of Precirol ATO5 with BSA amide I band which was subtracted up to 90% w/w lipid content to analyze BSA secondary structure. In addition, ATR FT-IR spectroscopy also detected thermally denatured BSA solid alone and in the presence of lipid matrix indicating its suitability for the detection of denatured protein solids in lipid matrices. Despite being in the solid state, conformational changes occurred to BSA upon incorporation into solid lipid matrices. However, the extent of these conformational alterations was found to be dependent on the mixing method employed as indicated by area overlap calculations. For instance, the melting and mixing method imparted negligible effect on BSA secondary structure, whereas the wet granulation mixing method promoted more changes. Size exclusion chromatography analysis depicted the complete dissolution of BSA in the aqueous media employed in the wet granulation method. In conclusion, an ATR FT-IR spectroscopic method was successfully developed to investigate BSA secondary structure in solid lipid matrices following the subtraction of lipid spectral interference. The ATR FT-IR spectroscopy could further be applied to investigate the secondary structure perturbations of therapeutic proteins during their formulation development.

摘要

蛋白质药物在脂质固体制剂的制备过程中可能会发生构象变化。在蛋白质水溶液中,衰减全反射傅里叶变换红外(ATR FT-IR)光谱可以通过减去溶剂与蛋白质酰胺 I 带的光谱干扰来研究这些构象变化。然而,在固体制剂中,脂质载体对蛋白质酰胺 I 带的可能光谱贡献可能会成为确定构象变化的障碍。本研究旨在开发一种ATR FT-IR 光谱法,用于分析嵌入固体脂质基质中的蛋白质二级结构。牛血清白蛋白(BSA)被选为模型蛋白,而 Precirol AT05(甘油棕榈硬脂酸酯,熔点 58℃)被用作模型脂质基质。牛血清白蛋白通过物理混合、熔融混合或湿法制粒混合方法掺入脂质中。ATR FT-IR 光谱和尺寸排阻色谱(SEC)分别用于分析 BSA 二级结构及其在水性介质中的溶解。结果表明,Precirol ATO5 对 BSA 酰胺 I 带的干扰非常大,需要减去高达 90%w/w 的脂质含量才能分析 BSA 二级结构。此外,ATR FT-IR 光谱还检测到单独的热变性 BSA 固体和存在脂质基质时的热变性 BSA 固体,表明其适用于检测脂质基质中的变性蛋白质固体。尽管处于固态,但 BSA 掺入固体脂质基质后会发生构象变化。然而,构象变化的程度取决于所采用的混合方法,这可以通过面积重叠计算来表示。例如,熔融混合方法对 BSA 二级结构几乎没有影响,而湿法制粒混合方法则促进了更多的变化。尺寸排阻色谱分析表明,BSA 在湿法制粒法中使用的水性介质中完全溶解。总之,成功开发了一种ATR FT-IR 光谱法,用于在减去脂质光谱干扰后研究 BSA 在固体脂质基质中的二级结构。ATR FT-IR 光谱法可以进一步应用于研究治疗性蛋白质在制剂开发过程中的二级结构变化。

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