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基于过氧化氢添加实验的单克隆抗体中甲硫氨酸氧化的动力学建模

Kinetic Modeling of Methionine Oxidation in Monoclonal Antibodies from Hydrogen Peroxide Spiking Studies.

作者信息

Hui Ada, Lam Xanthe M, Kuehl Christopher, Grauschopf Ulla, Wang Y John

机构信息

Late Stage Pharmaceutical Development, Genentech Inc., a member of the Roche Group, 1 DNA Way, South San Francisco, CA 94080, USA;

University of Kansas, 1450 Jayhawk Blvd, Lawrence, KS 66045, USA;

出版信息

PDA J Pharm Sci Technol. 2015 Jul-Aug;69(4):511-25. doi: 10.5731/pdajpst.2015.01059.

Abstract

UNLABELLED

When isolator technology is applied to biotechnology drug product fill-finish process, hydrogen peroxide (H2O2) spiking studies for the determination of the sensitivity of protein to residual peroxide in the isolator can be useful for assessing a maximum vapor phase hydrogen peroxide (VPHP) level. When monoclonal antibody (mAb) drug products were spiked with H2O2, an increase in methionine (Met 252 and Met 428) oxidation in the Fc region of the mAbs with a decrease in H2O2 concentration was observed for various levels of spiked-in peroxide. The reaction between Fc-Met and H2O2 was stoichiometric (i.e., 1:1 molar ratio), and the reaction rate was dependent on the concentrations of mAb and H2O2. The consumption of H2O2 by Fc-Met oxidation in the mAb followed pseudo first-order kinetics, and the rate was proportional to mAb concentration. The extent of Met 428 oxidation was half of that of Met 252, supporting that Met 252 is twice as reactive as Met 428. Similar results were observed for free L-methionine when spiked with H2O2. However, mAb formulation excipients may affect the rate of H2O2 consumption. mAb formulations containing trehalose or sucrose had faster H2O2 consumption rates than formulations without the sugars, which could be the result of impurities (e.g., metal ions) present in the excipients that may act as catalysts. Based on the H2O2 spiking study results, we can predict the amount Fc-Met oxidation for a given protein concentration and H2O2 level. Our kinetic modeling of the reaction between Fc-Met oxidation and H2O2 provides an outline to design a H2O2 spiking study to support the use of VPHP isolator for antibody drug product manufacture.

LAY ABSTRACT

Isolator technology is increasing used in drug product manufacturing of biotherapeutics. In order to understand the impact of residual vapor phase hydrogen peroxide (VPHP) levels on protein product quality, hydrogen peroxide (H2O2) spiking studies may be performed to determine the sensitivity of monoclonal antibody (mAb) drug products to residual peroxide in the isolator. In this study, mAbs were spiked with H2O2; an increase in methionine (Met) oxidation of the mAbs with a decrease in H2O2 concentration was observed for various levels of spiked-in peroxide. The reaction between Met and H2O2 was 1:1, and its rate was dependent on mAb and H2O2 concentrations. Consumption of H2O2 by Met followed pseudo first-order kinetics; the rate was proportional to mAb concentration. Formulations containing trehalose or sucrose had faster consumption rates than formulations without the sugars, which could be due to excipient impurities. Based on H2O2 spiking study results, we can predict the amount of Met oxidation for a given mAb concentration and H2O2 level. Our modeling of the reaction between Fc-Met oxidation and H2O2 provides an outline to design a H2O2 spiking study that supports using VPHP isolators during manufacture of mAb products.

摘要

未标注

当隔离器技术应用于生物技术药物产品的灌装-冻干工艺时,通过过氧化氢(H₂O₂)加标研究来测定蛋白质对隔离器中残留过氧化物的敏感性,有助于评估气相过氧化氢(VPHP)的最大水平。当单克隆抗体(mAb)药物产品中加入H₂O₂时,对于不同加标水平的过氧化物,观察到mAb的Fc区域中甲硫氨酸(Met 252和Met 428)氧化增加,同时H₂O₂浓度降低。Fc-甲硫氨酸与H₂O₂之间的反应是化学计量的(即1:1摩尔比),反应速率取决于mAb和H₂O₂的浓度。mAb中Fc-甲硫氨酸氧化消耗H₂O₂遵循准一级动力学,速率与mAb浓度成正比。Met 428的氧化程度是Met 252的一半,这表明Met 252的反应活性是Met 428的两倍。当向游离L-甲硫氨酸中加入H₂O₂时,也观察到了类似结果。然而,mAb制剂辅料可能会影响H₂O₂的消耗速率。含有海藻糖或蔗糖的mAb制剂比不含糖的制剂具有更快的H₂O₂消耗速率,这可能是由于辅料中存在的杂质(如金属离子)起到了催化剂的作用。基于H₂O₂加标研究结果,我们可以预测给定蛋白质浓度和H₂O₂水平下Fc-甲硫氨酸的氧化量。我们对Fc-甲硫氨酸氧化与H₂O₂之间反应的动力学建模为设计H₂O₂加标研究提供了一个框架,以支持在抗体药物产品生产中使用VPHP隔离器。

摘要

隔离器技术在生物治疗药物产品制造中的应用日益增加。为了了解残留气相过氧化氢(VPHP)水平对蛋白质产品质量的影响,可进行过氧化氢(H₂O₂)加标研究,以确定单克隆抗体(mAb)药物产品对隔离器中残留过氧化物的敏感性。在本研究中,向mAb中加入H₂O₂;对于不同加标水平的过氧化物,观察到mAb的甲硫氨酸(Met)氧化增加,同时H₂O₂浓度降低。Met与H₂O₂之间的反应为1:1,其速率取决于mAb和H₂O₂的浓度。Met消耗H₂O₂遵循准一级动力学;速率与mAb浓度成正比。含有海藻糖或蔗糖的制剂比不含糖的制剂具有更快的消耗速率,这可能是由于辅料杂质所致。基于H₂O₂加标研究结果,我们可以预测给定mAb浓度和H₂O₂水平下Met的氧化量。我们对Fc-甲硫氨酸氧化与H₂O₂之间反应的建模为设计H₂O₂加标研究提供了一个框架,该研究支持在mAb产品生产过程中使用VPHP隔离器。

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