Friedrich-Alexander University (FAU) Erlangen-Nürnberg, Department of Pharmaceutical Technology and Biopharmacy, Freeze Drying Focus Group (FDFG), Cauerstraße 4, 91058 Erlangen, Germany; Merck KGaA, Global CMC Development, Frankfurter Straße 250, 64293 Darmstadt, Germany.
Merck KGaA, Global CMC Development, Frankfurter Straße 250, 64293 Darmstadt, Germany.
J Pharm Sci. 2024 Aug;113(8):2433-2442. doi: 10.1016/j.xphs.2024.04.023. Epub 2024 Apr 26.
Antibody-drug conjugates (ADCs) tend to be less stable than their parent antibodies, which is often attributed to the hydrophobic nature of their drug payloads. This study investigated how the payload charge affects ADC stability by comparing two interchain cysteine ADCs that had matched drug-to-antibody ratios and identical linkers but differently charged auristatin payloads, vcMMAE (neutral) and vcMMAF (negative). Both ADCs exhibited higher aggregation than their parent antibody under shaking stress and thermal stress conditions. However, conjugation with vcMMAF increased the aggregation rates to a greater extent than conjugation with uncharged but more hydrophobic vcMMAE. Consistent with the payload logD values, ADC-vcMMAE showed the greatest increase in hydrophobicity but minor changes in charge compared with the parent antibody, as indicated by hydrophobic interaction chromatography and capillary electrophoresis data. In contrast, ADC-vcMMAF showed a decrease in net charge and isoelectric point along with an increase in charge heterogeneity. This charge alteration likely contributed to a reduced electrostatic repulsion and increased surface activity in ADC-vcMMAF, thus affecting its aggregation propensity. These findings suggest that not only the hydrophobicity of the payload, but also its charge should be considered as a critical factor affecting the stability of ADCs.
抗体药物偶联物(ADCs)通常不如其母体抗体稳定,这通常归因于其药物有效载荷的疏水性。本研究通过比较两种链间半胱氨酸 ADC,它们具有匹配的药物与抗体比和相同的接头,但带有不同电荷的美登素有效载荷 vcMMAE(中性)和 vcMMAF(负),研究了有效载荷电荷如何影响 ADC 的稳定性。在振动应激和热应激条件下,两种 ADC 的聚集程度都高于其母体抗体。然而,与未带电但疏水性更强的 vcMMAE 缀合相比,与带负电荷的 vcMMAF 缀合更能显著增加聚集率。与母体抗体相比,ADC-vcMMAE 的疏水性增加最大,但电荷变化较小,这与疏水相互作用色谱和毛细管电泳数据一致。相比之下,ADC-vcMMAF 的净电荷和等电点降低,同时电荷异质性增加。这种电荷变化可能导致 ADC-vcMMAF 中静电排斥的减少和表面活性的增加,从而影响其聚集倾向。这些发现表明,不仅有效载荷的疏水性,而且其电荷也应被视为影响 ADC 稳定性的关键因素。