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蛋白质和溶液性质对蛋白质超滤过程中唐南效应的影响。

Effect of protein and solution properties on the Donnan effect during the ultrafiltration of proteins.

机构信息

Biotherapeutics R&D, Pfizer, Andover, MA 01810, USA.

出版信息

Biotechnol Prog. 2011 Jan-Feb;27(1):140-52. doi: 10.1002/btpr.523. Epub 2010 Dec 3.

Abstract

Formulation of protein biopharmaceuticals as highly concentrated liquids can improve the drug substance storage and supply chain, improve the target product profile, and allow greater flexibility in dosing methods. The Donnan effect can cause a large offset in pH from the target value established with the diafiltration buffer during the concentration and diafiltration of charged proteins with ultrafiltration membranes. For neutral formulations, the pH will typically increase above the diafiltration buffer pH for basic monoclonal antibodies and decline below the diafiltration buffer pH for acidic Fc-fusion proteins. In this study, new equations for the Donnan effect during the diafiltration and concentration of proteins in solutions containing monovalent and divalent ions were derived. The new Donnan models obey mass conservation laws, account for the buffering capacity of proteins, and account for protein-ion binding. Data for the pH offsets of an Fc-fusion protein and a monoclonal antibody were predicted in both monovalent and divalent buffers using these equations. To compensate for the pH offset caused by the Donnan effect, diafiltration buffers with pH and excipient values offset from the ultrafiltrate pool specifications can be used. The Donnan offset observed during the concentration of an acidic Fc-fusion protein was mitigated by operating at low temperature. It is important to account for the Donnan effect during preformulation studies. The excipients levels in an ultrafiltration pool may differ from the levels in a protein solution obtained by adding buffers into concentrated protein solutions due to the Donnan effect.

摘要

将蛋白生物制剂配制成高浓度溶液可以改善药物物质的储存和供应链,改善目标产品特性,并允许在给药方法上有更大的灵活性。Donnan 效应会导致带电荷的蛋白质在超滤膜浓缩和渗滤过程中,其 pH 值与渗滤缓冲液目标值产生较大偏移。对于中性配方,对于碱性单克隆抗体,pH 值通常会高于渗滤缓冲液 pH 值,而对于酸性 Fc 融合蛋白,pH 值会低于渗滤缓冲液 pH 值。在这项研究中,推导出了用于含有单价和二价离子溶液中蛋白质渗滤和浓缩过程中 Donnan 效应的新方程。新的 Donnan 模型遵守质量守恒定律,考虑了蛋白质的缓冲能力,并考虑了蛋白质-离子结合。使用这些方程,预测了在单价和二价缓冲液中 Fc 融合蛋白和单克隆抗体的 pH 值偏移数据。为了补偿 Donnan 效应引起的 pH 值偏移,可以使用 pH 值和赋形剂值与超滤液池规格偏移的渗滤缓冲液。通过在低温下操作,可以减轻酸性 Fc 融合蛋白浓缩过程中 Donnan 效应引起的 pH 值偏移。在预配方研究中,考虑 Donnan 效应非常重要。由于 Donnan 效应,超滤液池中的赋形剂水平可能与通过向浓缩蛋白质溶液中添加缓冲液获得的蛋白质溶液中的赋形剂水平不同。

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