Albumin displacement at the air-water interface by Tween (Polysorbate) surfactants

被引:31
作者
Rabe, Martin [1 ,2 ]
Kerth, Andreas [1 ]
Blume, Alfred [1 ]
Garidel, Patrick [3 ]
机构
[1] Martin Luther Univ Halle Wittenberg, Inst Chem, Phys Chem, Von Danckelmann Pl 4, D-06120 Halle, Germany
[2] Max Planck Inst Eisenforsch GmbH, Max Planck Str 1, D-40237 Dusseldorf, Germany
[3] Boehringer Ingelheim Pharma GmbH & Co KG, Innovat Unit, PDB, D-88397 Biberach, Germany
来源
EUROPEAN BIOPHYSICS JOURNAL WITH BIOPHYSICS LETTERS | 2020年 / 49卷 / 07期
关键词
Protein; Albumin; Tween (polysorbate); IRRAS; BAM; Protein-surfactant interaction; REFLECTION-ABSORPTION SPECTROSCOPY; BETA-CASEIN LAYERS; AIR/WATER INTERFACE; AIR/SOLUTION INTERFACE; OROGENIC DISPLACEMENT; PROTEIN FORMULATIONS; SERUM ALBUMINS; ADSORPTION; BINDING; MICROSCOPY;
D O I
10.1007/s00249-020-01459-4
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Tween (polysorbate) 20 and 80 are surfactants used for the development of parenteral protein drugs, due to their beneficial safety profile and stabilisation properties. To elucidate the mechanism by which Tween 20 and 80 stabilise proteins in aqueous solutions, either by a "direct" protein to surfactant interaction and/or by an interaction with the protein film at the air-water interface, we used spectroscopic (Infrared Reflection Absorption Spectroscopy, IRRAS) and microscopic techniques (Brewster Angle Microscopy, BAM) in combination with surface pressure measurements. To this end, the impact of both types of Tweens with regard to the displacement of the protein from the air-water interface was studied. As a model protein, human serum albumin (HSA) was used. The results for the displacement of the adsorbed HSA films by Tweens 20 and 80 can partially be understood on the basis of an orogenic displacement mechanism, which depends on the critical surface pressure of the adsorbed protein film. With increasing concentration of Tween in the sub-phase, BAM images showed the formation of different domain morphologies. IRRA-spectra supported the finding that at high protein concentration in the sub-phase, the protein film could not be completely displaced by the surfactants. Comparing the impact of both surfactants, we found that Tween 20 adsorbed faster to the protein film than Tween 80. The adsorption kinetics of both Tweens and the speed of protein displacement increased with rising surfactant concentration. Tween 80 reached significant lower surface pressures than Tween 20, which led to an incomplete displacement of the observed HSA film.
引用
收藏
页码:533 / 547
页数:15
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