PO.ET02.02 · 实验与分子治疗
抗体药物偶联物载荷-连接子常规色谱分析检测的兼容性研究
Compatibility study of routine chromatographic analytical testing of antibody-drug conjugate payload-linkers
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
载荷-连接子是抗体药物偶联物(ADC)的重要组成部分,通过复杂的化学结构将抗体与细胞毒性药物连接起来,这些结构包括 PEG 链、由二硫键、碳酸酯键、酰胺键或焦磷酸键连接的肽序列(如 GGFG、VC 等)。这些特征使载荷-连接子对水解、氧化、光降解、吸湿和金属离子络合高度敏感,在分析检测中带来重大挑战。其不稳定性要求严格控制样品制备、储存和分析条件,以确保数据准确可靠。本研究旨在为不同结构类型确定适宜的分析条件,以支持稳健的表征和质量控制。我们系统评估了制备工艺、稀释剂、流动相、耗材和仪器,以最大限度减少降解和变异性。优化后的方法采用惰性耗材、具有适当填料和孔径的色谱柱,以及可保持稳定性的稀释剂,以减少分析不稳定性。这些措施使载荷-连接子的分析得以重现且准确,支持 ADC 开发中的质量标准制定和质量保证。我们的发现强调了针对生物偶联平台中结构复杂且高反应活性的中间体,量身定制分析策略的重要性。
查看英文原文 English abstract
Payload-linkers are essential components of antibody-drug conjugates (ADCs), connecting the antibody to the cytotoxic drug through complex chemical structures that include PEG chains, peptide sequences (e.g., GGFG, VC, etc.) linked by disulfide, carbonate, amide, or pyrophosphate bonds. These features make payload-linkers highly sensitive to hydrolysis, oxidation, photodegradation, moisture absorption, and metal ion complexation, posing significant challenges during analytical testing. Their instability requires strict control of sample preparation, storage, and analysis conditions to ensure accurate and reliable data. This study aimed to identify suitable analytical conditions for different structural types to support robust characterization and quality control. We systematically evaluated preparation processes, diluents, mobile phases, consumables, and instrumentation to minimize degradation and variability. The optimized method incorporates inert consumables, chromatography columns with appropriate packing material and pore size, and stability-preserving diluents to reduce analytical instability. These measures enable reproducible and accurate analysis of payload-linkers, supporting specification setting and quality assurance in ADC development. Our findings underscore the importance of tailored analytical strategies for structurally complex and highly reactive intermediates in bioconjugation platforms.
利益披露 Disclosure
T. Xu,
WuXi XDC Employment.
Y. Deng,
WuXi XDC Employment.
X. Yang,
WuXi XDC Employment.
L. Wang,
WuXi XDC Employment.
J. Li,
wuxi xdc Employment.
X. Wei,
WuXi XDC Employment.