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一种用于测定含铝盐佐剂疫苗中蛋白质浓度的内荧光法。

An intrinsic fluorescence method for the determination of protein concentration in vaccines containing aluminum salt adjuvants.

机构信息

BioProcess Research and Development, Sanofi Pasteur, 1755 Steeles Ave West, Toronto, Ontario M3R 3T4, Canada.

BioProcess Research and Development, Sanofi Pasteur, 1755 Steeles Ave West, Toronto, Ontario M3R 3T4, Canada.

出版信息

Vaccine. 2018 Sep 11;36(38):5738-5746. doi: 10.1016/j.vaccine.2018.08.005. Epub 2018 Aug 11.

Abstract

Determination of protein concentration in vaccines containing aluminum salt adjuvant typically necessitates desorption of the protein prior to analysis. Here we describe a method based on the intrinsic fluorescence of tyrosine and tryptophan that requires no desorption of proteins. Adjuvanted formulations of three model Bordetella pertussis antigens were excited at 280 nm and their emission spectra collected from 290 to 400 nm. Emission spectra of protein antigens in the presence of aluminum salt adjuvants were able to be detected, the effects of adjuvants on the spectra were analyzed, and linear regressions were calculated. The fluorescence method proved to be very sensitive with a limit of quantification between 0.4 and 4.4 µg/mL and limit of linearity between 100 and 200 µg/mL, across the formulations tested. The fluorescence method was found to be influenced by adjuvant presence, type of adjuvant, adjuvant concentration, buffer and pH conditions. The method also demonstrated ability to monitor the percent adsorption of antigens to the adjuvants. Furthermore, intrinsic fluorescence showed good correlation with micro-Kjeldahl elemental assay in quantifying protein concentration. Being a non-invasive, quick and sensitive method, intrinsic fluorescence has the potential to be utilized as a high throughput tool for vaccine development and conceivably implemented in-line, using in-line fluorimeters, to monitor antigen concentration during formulation processing.

摘要

测定含铝盐佐剂疫苗中的蛋白质浓度通常需要在分析前将蛋白质解吸。在这里,我们描述了一种基于酪氨酸和色氨酸固有荧光的方法,该方法不需要蛋白质解吸。三种模式百日咳博德特氏菌抗原的佐剂制剂在 280nm 处激发,并在 290nm 至 400nm 范围内收集其发射光谱。能够检测到含有铝盐佐剂的蛋白质抗原的发射光谱,分析了佐剂对光谱的影响,并计算了线性回归。荧光法非常灵敏,在测试的制剂中,定量下限在 0.4 到 4.4μg/ml 之间,线性下限在 100 到 200μg/ml 之间。发现荧光法受佐剂存在、佐剂类型、佐剂浓度、缓冲液和 pH 值条件的影响。该方法还证明能够监测抗原对佐剂的吸附百分比。此外,固有荧光与微量凯氏定氮元素分析在定量蛋白质浓度方面具有良好的相关性。作为一种非侵入性、快速和灵敏的方法,固有荧光有可能被用作疫苗开发的高通量工具,并可以使用在线荧光计在线实施,以在制剂处理过程中监测抗原浓度。

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