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Updated: Feb 8, 2026

Antigen Specific In Vivo Killing Assay using CFSE Labeled Target Cells
Published on: November 9, 2010
Development of a Target cell-Biologics-Effector cell (TBE) complex-based cell killing model to characterize target
Xiling Jiang1, Xi Chen1, Thomas J Carpenter1
1a Biologics Development Sciences , Janssen Biotherapeutics, Janssen Research & Development, LLC, Spring House, PA, USA.
Abstract:
T-cell redirecting bispecific antibodies (bsAbs) or antibody-derived agents that combine tumor antigen recognition with CD3-mediated T cell recruitment are highly potent tumor-killing molecules. Despite the tremendous progress achieved in the last decade, development of such bsAbs still faces many challenges. This work aimed to develop a mechanism-based pharmacokinetic/pharmacodynamic (PK/PD) modeling framework that can be used to assist the development of T-cell redirecting bsAbs. A Target cell-Biologics-Effector cell (TBE) complex-based cell killing model was developed using in vitro and in vivo data, which incorporates information on binding affinities of bsAbs to CD3 and target receptors, expression levels of CD3 and target receptors, concentrations of effector and target cells, as well as respective physiological parameters. This TBE model can simultaneously evaluate the effect of multiple system-specific and drug-specific factors on the T-cell redirecting bsAb exposure-response relationship on a physiological basis; it reasonably captured multiple reported in vitro cytotoxicity data, and successfully predicted the effect of some key factors on in vitro cytotoxicity assays and the efficacious dose of blinatumomab in humans. The mechanistic nature of this model uniquely positions it as a knowledge-based platform that can be readily expanded to guide target selection, drug design, candidate selection and clinical dosing regimen projection, and thus support the overall discovery and development of T-cell redirecting bsAbs.
Insights
A new pharmacokinetic/pharmacodynamic (PK/PD) model aids the development of T-cell redirecting bispecific antibodies (bsAbs). This mechanism-based model predicts bsAb efficacy by integrating various biological and drug-specific factors for improved cancer therapy.
Area of Science:
- Immunology
- Pharmacology
- Biotechnology
Background:
- T-cell redirecting bispecific antibodies (bsAbs) are potent cancer therapeutics.
- Challenges remain in optimizing bsAb development and predicting clinical efficacy.
Purpose of the Study:
- To develop a mechanism-based pharmacokinetic/pharmacodynamic (PK/PD) modeling framework.
- To assist in the development and optimization of T-cell redirecting bsAbs.
Main Methods:
- Developed a Target cell-Biologics-Effector cell (TBE) complex-based cell killing model.
- Integrated in vitro and in vivo data, including binding affinities, receptor expression, and cell concentrations.
- Validated the model against existing cytotoxicity data and clinical dosing of blinatumomab.
Main Results:
- The TBE model accurately captured in vitro cytotoxicity data.
- The model successfully predicted the impact of key factors on bsAb activity.
- It also predicted the efficacious dose of blinatumomab in humans.
Conclusions:
- The PK/PD model provides a physiological basis for understanding bsAb exposure-response relationships.
- This knowledge-based platform can guide bsAb discovery, drug design, and clinical development.
- The model supports the advancement of T-cell redirecting bispecific antibody therapies.
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