Degradation of Polysorbates 20 and 80: Studies on Thermal Autoxidation and Hydrolysis

被引:225
作者
Kishore, Ravuri S. K. [1 ]
Pappenberger, Astrid [2 ]
Dauphin, Isabelle Bauer [1 ]
Ross, Alfred [3 ]
Buergi, Beatrice [3 ]
Staempfli, Andreas [3 ]
Mahler, Hanns-Christian [1 ]
机构
[1] F Hoffmann La Roche & Co Ltd, Pharma Tech Dev Biol Europe, Pharmaceut & Device Dev, CH-4002 Basel, Switzerland
[2] F Hoffmann La Roche & Co Ltd, Pharma Res & Early Dev, Formulat Res, CH-4002 Basel, Switzerland
[3] F Hoffmann La Roche & Co Ltd, Discovery Technol, CH-4002 Basel, Switzerland
关键词
Biopharmaceutics; formulation; surfactants; excipients; chemical stability; POLYOXYETHYLENIC NONIONIC SURFACTANTS; LYOPHILIZED PROTEIN FORMULATIONS; UNSATURATED FATTY-ACIDS; DICARBOXYLIC-ACIDS; RATIONAL DESIGN; AGGREGATION; PRODUCTS; TWEEN; QUANTITATION; PEROXIDATION;
D O I
10.1002/jps.22290
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
The purpose of this work was to study the mechanistic pathways of degradation of polysorbates (PS) 20 and PS80 in parenteral formulations. The fate of PS in typical protein formulations was monitored and analyzed by a variety of methods, including H-1 NMR, high-performance liquid chromatography/evaporative light scattering detection, and ultraviolet visible spectroscopy. Oxidative degradation of PS in neat raw material was studied using thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), and headspace gas chromatography mass spectrometry. TGA DSC studies revealed that autoxidation via a radical mechanism is dominated by statistical random scission in PS20 and PS80. Thermal initiation of radical formation occurs at the polyoxyethylene (POE) as well as the olefin sites. In PS80, radical initiation at the olefinic site precedes initiation at the POE site, leading to modified degradation profile. Corresponding to these results, in aqueous formulations, a surge peroxide content was detected in PS20-containing samples and in higher concentrations in those containing PS80. Hydrolysis in aqueous formulations, as followed by H-1 NMR, was found to have a half-life of 5 months at 40 degrees C. On the basis of the obtained results, PSs degrade mainly via autoxidation and also via hydrolysis at higher temperatures. Further studies are required to investigate on potential effects of degradation on surface activity and protein stability in PS-containing formulations. (C) 2010 Wiley-Liss, Inc. and the American Pharmacists Association J Pharm Sci 100:721-731, 2011
引用
收藏
页码:721 / 731
页数:11
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