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Updated: Oct 8, 2026

Patient-Derived Tumor Explants As a "Live" Preclinical Platform for Predicting Drug Resistance in Patients
Published on: February 7, 2021
Human lung explants as a predictive platform for evaluating the on-target, off-tumor toxicity of T cell bispecifics
Manuel Tschan1, Tania Jetzer1, Melanie Obenloch2
1Insititute of Human Biology (IHB), Roche Pharma Research and Early Development, Roche Innovation Center Basel, Basel, Switzerland.
Abstract:
T cell bispecifics (TCBs) are potent immunotherapies with proven efficacy in hematological cancers but limited success in solid tumors, where on-target, off-tumor toxicity has restricted their therapeutic index. Here, we establish a human lung explant model to assess TCB activity in matched tumors and normal adjacent tissues. Using a multi-modal approach combining flow cytometry, cytokine profiling, and multiplexed immunofluorescence, we show that EpCAM and FolR1 TCBs drive robust T cell activation and, critically, quantifiable epithelial cell killing above background levels. Normal lung explants exhibited consistently higher levels of killing than tumor counterparts, reflecting the on-target, off-tumor toxicities observed preclinically and clinically with the tested TCBs. Our findings establish lung explants as a predictive and clinically relevant preclinical model that uniquely enables simultaneous quantification of TCB-mediated T cell activation and target cell killing, recapitulating clinically observed toxicities and advancing the preclinical safety assessment of immunotherapies for solid tumors.

