Perico Natalie, Purtell Judith, Dillon Thomas M, Ricci Margaret S
Amgen Inc., Formulation & Analytical Resources, Process & Product Development, One Amgen Center Dr., Thousand Oaks, California 91320, USA.
J Pharm Sci. 2009 Sep;98(9):3031-42. doi: 10.1002/jps.21539.
Antibody formulation development relies on accelerated stability data at elevated temperatures to optimize formulation parameters. However, the pH- and temperature-dependence of aggregation is complicated for antibody formulations. In this study, a human monoclonal IgG2 antibody exhibited typical pH-dependent dimer formation under normal storage conditions (4 and/or 29 degrees C). However, an inversed pH-dependence was discovered for high molecular weight aggregate formation at elevated temperatures (37 degrees C). The different stability profiles exhibited at the various storage conditions resulted in nonlinearity of the Arrhenius kinetics. Thermal unfolding at or below 37 degrees C was not evident by differential scanning calorimetry. Enriched populations of the structural isoforms of the IgG2 subclass were tested for their unique temperature and pH-dependence of aggregation. The Arrhenius kinetics of aggregation for each of the individual IgG2 isoforms was also nonlinear. However, the temperature-dependence of clipping suggested that clip-mediated aggregation was responsible for the increased higher order aggregates at low pH and elevated temperatures. Unique clip species resulting from the conformational differences between the IgG2 isoforms lead to increased aggregation. These results have implications on the mechanisms of antibody aggregation and on the validity of accelerated data to predict shelf-life accurately.
抗体制剂的开发依赖于高温下的加速稳定性数据,以优化制剂参数。然而,抗体制剂中聚集现象对pH值和温度的依赖性较为复杂。在本研究中,一种人源单克隆IgG2抗体在正常储存条件下(4℃和/或29℃)表现出典型的pH依赖性二聚体形成。然而,在高温(37℃)下,高分子量聚集体的形成呈现出相反的pH依赖性。在不同储存条件下表现出的不同稳定性特征导致了阿累尼乌斯动力学的非线性。差示扫描量热法显示,在37℃及以下温度时热解折叠并不明显。对IgG2亚类结构异构体的富集群体进行了聚集对温度和pH依赖性的独特测试。每种单独的IgG2异构体的聚集阿累尼乌斯动力学也是非线性的。然而,剪切作用对温度的依赖性表明,剪切介导的聚集是导致低pH值和高温下高阶聚集体增加的原因。IgG2异构体之间构象差异产生的独特剪切物种导致聚集增加。这些结果对抗体聚集机制以及加速数据准确预测保质期的有效性具有重要意义。