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聚山梨醇酯20和80对达比加群酯的物理和生物物理效应。

Physical and biophysical effects of polysorbate 20 and 80 on darbepoetin alfa.

作者信息

Deechongkit Songpon, Wen Jie, Narhi Linda O, Jiang Yijia, Park Sungae S, Kim Justin, Kerwin Bruce A

机构信息

Department of Process and Product Development, Formulation and Analytical Resources, Amgen, Inc., One Amgen Center Drive, Thousand Oaks, California 91320, USA.

出版信息

J Pharm Sci. 2009 Sep;98(9):3200-17. doi: 10.1002/jps.21740.

Abstract

We studied the physical and biophysical affects of the nonionic surfactants polysorbate 20 and 80 and their mechanism of interaction using darbepoetin alfa, a 4-helix bundle protein, as the exemplary protein. Differences were observed between the abilities of the polysorbates to prevent surface loss/aggregation and correlated with each polysorbates initiation of micelle formation prior to the critical micelle concentration (CMC). The biophysical properties monitored by far-UV circular dichroism (CD) and tryptophan (Trp) fluorescence showed effects due to polysorbates, but were not correlated with their CMC. At a constant protein concentration PS-80 induced alpha-helix in the protein with a maximal effect at 15:1 molar ratio of PS-80/protein. PS-20 initially induced alpha-helix with a maximal effect at 1.5:1 ratio followed by a decrease in the alpha-helix content. PS-80 had no effect on near-UV CD but increased Trp fluorescence only at the 150:1 polysorbate/protein ratio. PS-20 decreased the near-UV CD and Trp fluorescence. Thermodynamic studies by isothermal titration calorimetry (ITC) demonstrated that the protein interacts with monomeric polysorbate, but not with polysorbate micelles. The data suggest that the polysorbates differentially interact with the protein and that the biophysical effects are dependent on the structure of the polysorbate and the polysorbate to protein ratio.

摘要

我们以4-螺旋束蛋白阿法达贝泊汀作为示例蛋白,研究了非离子表面活性剂聚山梨醇酯20和80的物理及生物物理影响及其相互作用机制。观察到聚山梨醇酯在防止表面损失/聚集能力方面存在差异,且与各聚山梨醇酯在临界胶束浓度(CMC)之前开始形成胶束有关。通过远紫外圆二色性(CD)和色氨酸(Trp)荧光监测的生物物理性质显示出聚山梨醇酯的影响,但与它们的CMC无关。在恒定的蛋白质浓度下,PS - 80在蛋白质中诱导α - 螺旋,在PS - 80/蛋白质摩尔比为15:1时效果最佳。PS - 20最初在1.5:1的比例下诱导α - 螺旋达到最大效果,随后α - 螺旋含量下降。PS - 80对近紫外CD没有影响,但仅在聚山梨醇酯/蛋白质比例为150:1时增加Trp荧光。PS - 20降低了近紫外CD和Trp荧光。通过等温滴定量热法(ITC)进行的热力学研究表明蛋白质与单体聚山梨醇酯相互作用,但不与聚山梨醇酯胶束相互作用。数据表明聚山梨醇酯与蛋白质的相互作用存在差异,且生物物理效应取决于聚山梨醇酯的结构以及聚山梨醇酯与蛋白质的比例。

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