In Situ Tracking of Membrane HER2 - Antibody–Drug Conjugate Interaction with Surface Plasmon Resonance Imaging
Haiying Ding, Xiaoyin Liu, Bingxue Guo, Yueping Qiu, Jingyu Wu, Yunxiao Wang, Baiqi Cui, Luo Fang, Fenni ZhangAbstract
Antibody–drug conjugates (ADCs) rely on specific recognition of tumor-associated membrane receptors to achieve targeted intracellular drug delivery, yet in situ characterization of their interaction dynamics remains limited. Here, we develop a single-cell plasmonic imaging platform to quantitatively resolve the interaction between the membrane human epidermal growth factor receptor 2 (HER2) and HER2-targeted therapeutics. This label-free approach enables continuous monitoring of the molecular interaction process, allowing real-time extraction of detailed binding kinetics. Using this platform, we systematically compare the binding behaviors of the HER2-targeting antibody trastuzumab (Herceptin) and clinically relevant ADCs (T-DM1 and T-DXd), revealing distinct kinetic signatures associated with the drug conjugation. Analysis across cell lines with different HER2 expressions reveals that increased receptor density does not necessarily enhance binding stability, suggesting a potential trade-off between receptor availability and effective interaction dynamics. To further evaluate the potential capability of tracking membrane-associated dynamics, polystyrene nanoparticle probes were employed to validate real-time imaging of endocytosis dynamics, distinguishing uptake behavior in live versus fixed cells.This work establishes cell-based plasmonic imaging as a quantitative and mechanistic approach for evaluating ADC-receptor interactions in situ, offering valuable insights for rational ADC design and precision therapeutic optimization.