Department of Pharmaceutical Chemistry, Macromolecule and Vaccine Stabilization Center, University of Kansas, 2030 Becker Drive, Lawrence, Kansas 66047.
Department of Formulation Sciences, MedImmune LLC, Gaithersburg, Maryland 20878.
J Pharm Sci. 2018 Apr;107(4):1009-1019. doi: 10.1016/j.xphs.2017.12.009. Epub 2017 Dec 18.
Antibodies are molecules that exhibit diverse conformational changes on different timescales, and there is ongoing interest to better understand the relationship between antibody conformational dynamics and storage stability. Physical stability data for an IgG4 monoclonal antibody (mAb-D) were gathered through traditional forced degradation (temperature and stirring stresses) and accelerated stability studies, in the presence of different additives and solution conditions, as measured by differential scanning calorimetry, size exclusion chromatography, and microflow imaging. The results were correlated with hydrogen exchange mass spectrometry (HX-MS) data gathered for mAb-D in the same formulations. Certain parameters of the HX-MS data, including hydrogen exchange in specific peptide segments in the C2 domain, were found to correlate with stabilization and destabilization of additives on mAb-D during thermal stress. No such correlations between mAb physical stability and HX-MS readouts were observed under agitation stress. These results demonstrate that HX-MS can be set up as a streamlined methodology (using minimal material and focusing on key peptide segments at key time points) to screen excipients for their ability to physically stabilize mAbs. However, useful correlations between HX-MS and either accelerated or real-time stability studies will be dependent on a particular mAb's degradation pathway(s) and the type of stresses used.
抗体是在不同时间尺度上表现出多种构象变化的分子,人们一直有兴趣更好地了解抗体构象动力学与储存稳定性之间的关系。通过传统的强制降解(温度和搅拌应力)和加速稳定性研究,在不同添加剂和溶液条件下,使用差示扫描量热法、尺寸排阻色谱法和微流成像法,收集了 IgG4 单克隆抗体(mAb-D)的物理稳定性数据。结果与在相同配方中为 mAb-D 收集的氢交换质谱(HX-MS)数据相关联。在热应力下,HX-MS 数据的某些参数,包括 C2 结构域中特定肽段的氢交换,与添加剂对 mAb-D 的稳定和失稳相关。在搅拌应力下,未观察到 mAb 物理稳定性与 HX-MS 读数之间存在此类相关性。这些结果表明,HX-MS 可以作为一种简化的方法(使用最少的材料并关注关键肽段在关键时间点),筛选赋形剂对 mAb 的物理稳定性的能力。然而,HX-MS 与加速或实时稳定性研究之间的有用相关性将取决于特定 mAb 的降解途径和使用的应力类型。