Baldisseri Donna, Luo Shen, Ancajas Christelle Anne F, Ortega-Rodriguez Uriel, Fischer Christian, Zou Guozhang, Gu Jianghong, Keire David, Piotto Martial, Zhang Baolin
Application Laboratory, Bruker BioSpin Corp, Billerica, MA, USA.
Office of Pharmaceutical Quality Research, Office of Pharmaceutical Quality, Center for Drug Evaluation and Research, Food and Drug Administration, Silver Spring, MD, USA.
MAbs. 2025 Dec;17(1):2551208. doi: 10.1080/19420862.2025.2551208. Epub 2025 Sep 8.
The analytical comparability of biologic products and their biosimilars, including higher-order structure (HOS) assessment, ensures product quality and is required for regulatory approval. In this study, nuclear magnetic resonance (NMR) spectroscopy was used to evaluate the HOS of Humira (adalimumab) and its biosimilars under normal and photo-stressed conditions. Under normal conditions, 1D and 2D NMR spectra showed strong structural similarity among all products. However, photo-stressed samples exhibited distinct structural differences, including increased methionine oxidation, and localized conformational changes, most notably in the reference product. These changes correlated with findings from size-exclusion chromatography, capillary isoelectric focusing, and mass spectrometry (MS), which revealed size and charge heterogeneity, as well as site-specific methionine oxidation in the heavy chains. The differences in photostability were found to be influenced by container closure systems (CCSs) and formulations. In contrast, circular dichroism spectral analysis showed minimal variation in secondary structures among stressed and unstressed samples. These results underscore the utility of NMR as a sensitive tool for comparative structural analysis of monoclonal antibodies and their biosimilars, particularly under stress conditions, and highlight the impact of formulation and CCS on product stability.
生物制品及其生物类似药的分析可比性,包括高阶结构(HOS)评估,可确保产品质量,也是监管批准所必需的。在本研究中,利用核磁共振(NMR)光谱法评估了修美乐(阿达木单抗)及其生物类似药在正常和光应激条件下的高阶结构。在正常条件下,一维和二维NMR光谱显示所有产品之间具有很强的结构相似性。然而,光应激样品表现出明显的结构差异,包括甲硫氨酸氧化增加以及局部构象变化,最显著的是在参比产品中。这些变化与尺寸排阻色谱、毛细管等电聚焦和质谱(MS)的结果相关,后者揭示了大小和电荷异质性以及重链中位点特异性的甲硫氨酸氧化。发现光稳定性差异受容器密封系统(CCS)和制剂的影响。相比之下,圆二色光谱分析显示应激和非应激样品之间二级结构的变化极小。这些结果强调了NMR作为单克隆抗体及其生物类似药比较结构分析的灵敏工具的实用性,尤其是在应激条件下,并突出了制剂和CCS对产品稳定性的影响。