Thompson Ronald W, Latypov Ramil F, Wang Ying, Lomakin Aleksey, Meyer Julie A, Vunnum Suresh, Benedek George B
Process and Product Development, Amgen Inc., Seattle, Washington 98119, USA.
Materials Processing Center, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, USA.
J Chem Phys. 2016 Nov 14;145(18):185101. doi: 10.1063/1.4966708.
Colloidal stability of IgG antibody solutions is important for pharmaceutical and medicinal applications. Solution pH and ionic strength are two key factors that affect the colloidal stability of protein solutions. In this work, we use a method based on the PEG-induced liquid-liquid phase separation to examine the effects of pH and ionic strength on the colloidal stability of IgG solutions. We found that at high ionic strength (≥0.25M), the colloidal stability of most of our IgGs is insensitive to pH, and at low ionic strength (≤0.15M), all IgG solutions are much more stable at pH 5 than at pH 7. In addition, the PEG-induced depletion force is less efficient in causing phase separation at pH 5 than at pH 7. In contrast to the native inter-protein interaction of IgGs, the effect of depletion force on phase separation of the antibody solutions is insensitive to ionic strength. Our results suggest that the long-range electrostatic inter-protein repulsion at low ionic strength stabilizes the IgG solutions at low pH. At high ionic strength, the short-range electrostatic interactions do not make a significant contribution to the colloidal stability for most IgGs with a few exceptions. The weaker effect of depletion force at lower pH indicates a reduction of protein concentration in the condensed phase. This work advances our basic understanding of the colloidal stability of IgG solutions and also introduces a practical approach to measuring protein colloidal stability under various solution conditions.
IgG抗体溶液的胶体稳定性对于制药和医学应用至关重要。溶液的pH值和离子强度是影响蛋白质溶液胶体稳定性的两个关键因素。在本研究中,我们采用基于聚乙二醇(PEG)诱导的液-液相分离的方法,来考察pH值和离子强度对IgG溶液胶体稳定性的影响。我们发现,在高离子强度(≥0.25M)下,我们大多数IgG的胶体稳定性对pH值不敏感;而在低离子强度(≤0.15M)下,所有IgG溶液在pH 5时比在pH 7时稳定得多。此外,PEG诱导的排空力在pH 5时引起相分离的效率低于pH 7时。与IgG天然的蛋白间相互作用不同,排空力对抗体溶液相分离的影响对离子强度不敏感。我们的结果表明,在低离子强度下,长程静电蛋白间排斥作用使IgG溶液在低pH值下保持稳定。在高离子强度下,除少数例外,短程静电相互作用对大多数IgG的胶体稳定性贡献不大。在较低pH值下排空力的较弱作用表明凝聚相中蛋白质浓度降低。这项工作增进了我们对IgG溶液胶体稳定性的基本理解,同时也引入了一种在各种溶液条件下测量蛋白质胶体稳定性的实用方法。