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胶束驱动的氧化机制及不同聚山梨酯 20 和 80 级别的新型氧化标志物。

Micelle Driven Oxidation Mechansim and Novel Oxidation Markers for Different Grades of Polysorbate 20 and 80.

机构信息

Coriolis Pharma Research, Fraunhoferstr. 18 b, 82152 Martinsried, Germany.

Janssen Research and Development, DPD&S BioTherapeutics Development, Hochstrasse 201, 8205 Schaffhausen, Switzerland.

出版信息

J Pharm Sci. 2020 Oct;109(10):3064-3077. doi: 10.1016/j.xphs.2020.06.028. Epub 2020 Jul 10.

Abstract

Different types and quality grades of polysorbate (PS) were subjected to oxidative stress (in absence of protein), and novel oxidation markers were discovered by our newly developed liquid chromatography-mass spectrometry (LC-MS) screening method. These markers confirmed that the more homogeneous, PS grades, such as PS80 all-oleate grade (compliant with Chinese pharmacopoeia) and PS20 all-laurate grades are more prone to oxidative degradation compared to their multicompendial grade analogues. In a case study with pharmaceutically relevant monoclonal antibody formulations, we could confirm that the novel oxidation markers are also found in presence of protein. To the best of our knowledge, this is the first report on monitoring of PS oxidation markers in protein containing samples with the help of LC-MS. Based on the observations made in the PS degradation studies, a new hypothesis regarding the mechanism of oxidative PS degradation is suggested: PS oxidation primarily takes place in the PS micelles. This hypothesis was supported experimentally, PS oxidation could no longer be detected if PS micelles were dissolved by tert-butanol. Physiochemical parameters of PS micelles such as density of micelle cores, heterogeneity of PS fatty acid composition, micelle composition and trace metal ions are key driving factors of PS oxidation.

摘要

不同类型和质量等级的聚山梨酯(PS)在没有蛋白质的情况下经历氧化应激,我们新开发的液相色谱-质谱(LC-MS)筛选方法发现了新的氧化标志物。这些标志物证实,与多药典类似物相比,更均匀的 PS 等级,如 PS80 全油酸等级(符合中国药典)和 PS20 全月桂酸等级,更容易发生氧化降解。在一项具有药物相关性的单克隆抗体配方的案例研究中,我们可以确认在存在蛋白质的情况下也可以发现新的氧化标志物。据我们所知,这是首次借助 LC-MS 监测含蛋白质样品中 PS 氧化标志物的报告。基于 PS 降解研究中的观察结果,提出了一种关于 PS 氧化机制的新假设:PS 氧化主要发生在 PS 胶束中。实验支持了这一假设,如果 PS 胶束被叔丁醇溶解,则无法再检测到 PS 氧化。PS 胶束的物理化学参数,如胶束核的密度、PS 脂肪酸组成的异质性、胶束组成和痕量金属离子,是 PS 氧化的关键驱动因素。

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