Single-cell spatial pharmacobiology identifies conserved stromal barriers to therapeutic antibody delivery in human solid tumors

Nature Biotechnology

Guolan Lu, John W. Hickey, Maximilian Haist, Xulei Qin, Emily Zhao, Abdullah Naveed, Erna Forgo, Marc-A. Baertsch, Lucas Mani, Xavier Rovira-Clavé, Andrey Finegersh, Yury Goltsev, Chiara Caraccio, Nynke S. van den Berg, Marisa Hom, Deana R. Colburg, Brock A. Martin, Christina S. Kong, Natalie S. Lui, George A. Fisher, A. Dimitrios Colevas, Robert B. West, Greg M. Thurber, George A. Poultsides, Garry P. Nolan & Eben L. Rosenthal

Demonstration of coregistration of systemically infused pan800 microscopic imaging with CODEX multiplexed imaging for HNSCC tissues.

Summary

The development of effective antibody therapeutics has been hampered by a lack of methods to measure drug delivery and activity within tumors at single-cell resolution. Here we introduce single-cell spatial pharmacobiology (SSP), an experimental and analytical framework that integrates in situ imaging of a systemically infused, fluorescently labeled therapeutic antibody with high-plex spatial proteomics to quantify antibody distribution, target engagement and tumor microenvironment (TME) architecture. We applied SSP to tumor tissues from participants with head and neck squamous cell carcinoma and pancreatic ductal adenocarcinoma who received the antibody panitumumab-IRDye800 in phase 1 trials. SSP identified pronounced spatial heterogeneity in single-cell drug delivery and target engagement, shaped by conserved stromal barriers, including periostin-rich extracellular matrix assemblies and fibroblast-activation-protein-positive cancer-associated fibroblast neighborhoods, which were associated with reduced antibody delivery in both tumor types. SSP measures drug–target–TME interactions in human tumors and can support studies of resistance mechanisms, dosing strategies and discovery of spatial biomarkers for precision oncology.

Citation

Lu, Guolan, et al. “Single-cell spatial pharmacobiology identifies conserved stromal barriers to therapeutic antibody delivery in human solid tumors.” Nature Biotechnology (2026): 1-15.

BibTex

@article{lu2026single, title={Single-cell spatial pharmacobiology identifies conserved stromal barriers to therapeutic antibody delivery in human solid tumors}, author={Lu, Guolan and Hickey, John W and Haist, Maximilian and Qin, Xulei and Zhao, Emily and Naveed, Abdullah and Forgo, Erna and Baertsch, Marc-A and Mani, Lucas and Rovira-Clav{\’e}, Xavier and others}, journal={Nature Biotechnology}, pages={1–15}, year={2026}, publisher={Nature Publishing Group} }

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