Department of Analytical Science Biologicals, UCB , Braine L'Alleud , Belgium.
Department of Analytical Science Biologicals, UCB , Slough , UK.
MAbs. 2019 Nov-Dec;11(8):1391-1401. doi: 10.1080/19420862.2019.1634460. Epub 2019 Oct 4.
In the biopharmaceutical environment, controlling the Critical Quality Attributes (CQA) of a product is essential to prevent changes that affect its safety or efficacy. Physico-chemical techniques and bioassays are used to screen and monitor these CQAs. The higher order structure (HOS) is a CQA that is typically studied using techniques that are not commonly considered amenable to quality control laboratories. Here, we propose a peptide mapping-based method, named native peptide mapping, which could be considered as straightforward for HOS analysis and applicable for IgG4 and IgG1 antibodies. The method was demonstrated to be fit-for-purpose as a stability-indicating assay by showing differences at the peptide level between stressed and unstressed material. The unfolding pathway induced by a heat stress was also studied via native peptide mapping assay. Furthermore, we demonstrated the structure-activity relationship between HOS and biological activity by analyzing different types of stressed samples with a cell-based assay and the native peptide mapping. The correlation between both sets of results was highlighted by monitoring peptides located in the complementary-determining regions and the relative potency of the biotherapeutic product. This relationship represents a useful approach to interrogate the criticality of HOS as a CQA of a drug.
在生物制药环境中,控制产品的关键质量属性(Critical Quality Attributes,CQAs)对于防止影响其安全性或疗效的变化至关重要。物理化学技术和生物测定用于筛选和监测这些 CQAs。高级结构(Higher Order Structure,HOS)是一种 CQA,通常使用通常不被认为适合质量控制实验室的技术进行研究。在这里,我们提出了一种基于肽图的方法,命名为天然肽图,该方法可被视为 HOS 分析的直接方法,适用于 IgG4 和 IgG1 抗体。该方法通过显示应激和未应激材料在肽水平上的差异,证明了其作为稳定性指示测定的适用性。还通过天然肽图测定法研究了热应激诱导的展开途径。此外,我们通过使用基于细胞的测定法和天然肽图分析不同类型的应激样品,证明了 HOS 与生物活性之间的结构-活性关系。通过监测位于互补决定区的肽和生物治疗产品的相对效力,突出了这两组结果之间的相关性。这种关系代表了一种有用的方法,可以探究 HOS 作为药物 CQA 的关键性。