Department of Industrial and Physical Pharmacy, Purdue University, Robert E. Heine Pharmacy Building, 575 W Stadium Ave, West Lafayette, IN 47907, United States.
Baxter BioPharma Solutions, Bloomington, IN 47403, United States.
J Pharm Sci. 2021 Jun;110(6):2379-2385. doi: 10.1016/j.xphs.2021.03.006. Epub 2021 Mar 10.
Antibody drug conjugates (ADCs) have been at the forefront in cancer therapy due to their target specificity. All the FDA approved ADCs are developed in lyophilized form to minimize instability associated with the linker that connects the cytotoxic drug and the antibody during shipping and storage. We present here solid-state hydrogen-deuterium exchange with mass spectrometric analysis (ssHDX-MS) as a tool to analyze protein structure and matrix interactions for formulations of an ADC with and without commonly used excipients. We compared results of the ssHDX-MS with accelerated stability results using size-exclusion chromatography and determined that the former technique was able to successfully identify the destabilizing effects of mannitol and polysorbate 80. In comparison, Fourier-transform infrared spectroscopy results were inconclusive. The agreement between ssHDX-MS and stressed stability studies supports the potential of ssHDX-MS as a method of predicting relative stability of different formulations.
抗体药物偶联物(ADCs)由于其靶向特异性而成为癌症治疗的前沿。所有获得 FDA 批准的 ADC 都是以冻干形式开发的,以最大限度地减少与在运输和储存过程中连接细胞毒性药物和抗体的连接子相关的不稳定性。我们在这里提出固态氘氢交换与质谱分析(ssHDX-MS)作为一种工具,用于分析具有和不具有常用赋形剂的 ADC 制剂的蛋白质结构和基质相互作用。我们将 ssHDX-MS 的结果与使用尺寸排阻色谱法获得的加速稳定性结果进行了比较,并确定该技术能够成功识别甘露醇和聚山梨酯 80 的失稳作用。相比之下,傅里叶变换红外光谱结果没有定论。ssHDX-MS 与应激稳定性研究之间的一致性支持了 ssHDX-MS 作为预测不同制剂相对稳定性的方法的潜力。