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重组因子VIII皮下注射剂——制剂参数对结构和表面吸附的影响

Recombinant factor VIII SQ--the influence of formulation parameters on structure and surface adsorption.

作者信息

Fatouros A, Sjöström B

机构信息

Department of Pharmaceutical Technology, Pharmacia and Upjohn AB, S-112 87, Stockholm, Sweden.

出版信息

Int J Pharm. 2000 Jan 20;194(1):69-79. doi: 10.1016/s0378-5173(99)00369-5.

Abstract

The main aim of this paper was to investigate the influence of temperature, pH and ionic interactions on the structural stability and surface adsorption of a recombinant factor VIII product, r-VIII SQ. The interaction of r-VIII SQ with glass and air interfaces, and possible means of increasing the stability of the formulation, were also investigated. The stability of r-VIII SQ was followed by measuring the biological activity (VIII:C), by circular dichroism (CD) studies and by the measurement of surface tension using the pendant drop method. The results show that the surface tension decreased exponentially with time; this decrease was more pronounced above 20 degrees C, indicating increased conformational flexibility of the protein with increased temperatures. Far UV CD spectra were not influenced in the range 5-55 degrees C and near UV CD measurements did not indicate structural changes below 45 degrees C. During agitation at 25 degrees C, VIII:C was lost rapidly in formulations without a macromolecular additive. Nonionic surfactants such as polysorbate 80 and polysorbate 20 protected VIII:C to an equally high degree against surface adsorption. Albumin was less effective, but it is possible that this is because it is a protein itself and may have been affected by the agitation. The addition of 300 mg/ml of sucrose improved the long term stability of VIII:C, a finding most likely explained by the theory of preferential hydration. Near UV CD spectra at acidic or basic pH mainly indicated changes around 242 nm, especially at low ionic strength. Addition of 10 mM EDTA at pH 7 resulted in similar changes. This effect was completely reversed by the addition of an excess of Ca(2+), Sr(2+) or Mg(2+) ions. In conclusion, CD spectra and surface tension measurements of r-VIII SQ did not reveal any temperature-induced conformational changes in the temperature range 5-20 degrees C; changes were first noted at elevated temperatures. Surface adsorption of r-VIII SQ during agitation was prevented by the addition of a nonionic surfactant. Preferential hydration improved the storage stability of the protein but did not directly prevent its surface adsorption. The structural integrity of the molecule was preserved at pH 7, at an increased ionic strength and in the presence of some divalent metal ions (Ca(2+), Sr(2+) or Mg(2+)).

摘要

本文的主要目的是研究温度、pH值和离子相互作用对重组因子VIII产品r-VIII SQ的结构稳定性和表面吸附的影响。同时,还研究了r-VIII SQ与玻璃和空气界面的相互作用,以及提高制剂稳定性的可能方法。通过测量生物活性(VIII:C)、进行圆二色性(CD)研究以及使用悬滴法测量表面张力来跟踪r-VIII SQ的稳定性。结果表明,表面张力随时间呈指数下降;在20摄氏度以上这种下降更为明显,表明随着温度升高蛋白质的构象灵活性增加。在5至55摄氏度范围内,远紫外CD光谱不受影响,在45摄氏度以下近紫外CD测量未表明结构变化。在25摄氏度搅拌期间,在没有大分子添加剂的制剂中VIII:C迅速丧失。非离子表面活性剂如聚山梨酯80和聚山梨酯20对VIII:C防止表面吸附具有同等高度的保护作用。白蛋白的效果较差,但这可能是因为它本身是一种蛋白质,可能受到搅拌的影响。添加300 mg/ml的蔗糖可提高VIII:C的长期稳定性,这一发现最有可能用优先水化理论来解释。在酸性或碱性pH值下的近紫外CD光谱主要表明在242 nm附近有变化,特别是在低离子强度下。在pH 7时添加10 mM EDTA会导致类似变化。加入过量的Ca(2+)、Sr(2+)或Mg(2+)离子可完全逆转这种效应。总之,r-VIII SQ的CD光谱和表面张力测量未揭示在5至20摄氏度温度范围内任何由温度引起的构象变化;在较高温度下才首次注意到变化。添加非离子表面活性剂可防止搅拌期间r-VIII SQ的表面吸附。优先水化提高了蛋白质的储存稳定性,但并未直接防止其表面吸附。在pH 7、增加的离子强度以及存在一些二价金属离子(Ca(2+)、Sr(2+)或Mg(2+))的情况下,分子的结构完整性得以保留。

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