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Updated: May 11, 2025

Tracking Bispecific Antibody-Induced T Cell Trafficking Using Luciferase-Transduced Human T Cells
Published on: May 12, 2023
Successful targeting of multidrug-resistant tumors with bispecific antibodies
Raffaella Briante1, Qianting Zhai2, Suchismita Mohanty3
1Antibody Engineering, Kenjockety Biotechnology Inc, Tiburon, CA, USA.
Abstract:
Multidrug resistance (MDR) hinders efficacious cancer chemotherapy. Overexpression of the P-glycoprotein (P-gp) efflux pump (EP) on cancer cells is a primary cause of MDR since it expels numerous anticancer drugs. Small molecule intracellular P-gp antagonists have been investigated clinically to redress MDR but have failed primarily due to adverse effects on P-gp in normal tissue. We used a new approach to counteract P-gp with bispecific antibodies (BsAbs) that simultaneously bound P-gp and CD47 in cis on MDR cells but not normal tissue. Affinities of the individual arms of the BsAbs were low enough to minimize normal tissue binding, but, when the two targets were co-located on MDR cancer cells, both arms of the BsAb engaged with effective avidity. Proof-of-concept was shown in three different MDR xenograft tumor models with a non-humanized chimeric BsAb (targeting P-gp and CD47) that potently restored tumor sensitivity to paclitaxel. Fully humanized variants were successfully developed and characterized. Significant anti-tumor efficacy was observed with the BsAbs both when combined with paclitaxel and as single agents in the absence of paclitaxel. Treatment of MDR cancers with BsAbs using this novel approach has several distinct advantages over prior efforts with small molecule antagonists, including 1) invoking a direct immune attack on the tumors, 2) multimodal mechanisms of action, 3) tumor-specific targeting (with reduced toxicity to normal tissue), and 4) broad applicability as single agents and compatibility with other therapeutics.
Insights
New bispecific antibodies (BsAbs) target P-glycoprotein (P-gp) and CD47 on multidrug-resistant (MDR) cancer cells, restoring chemotherapy sensitivity and offering potent anti-tumor effects with reduced toxicity.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Multidrug resistance (MDR) in cancer chemotherapy is often caused by P-glycoprotein (P-gp) efflux pump overexpression.
- Previous attempts using small molecule P-gp antagonists failed due to adverse effects on normal tissues.
Purpose of the Study:
- To develop a novel bispecific antibody (BsAb) approach to overcome P-gp-mediated MDR.
- To target P-gp and CD47 simultaneously on MDR cancer cells for enhanced efficacy and reduced toxicity.
Main Methods:
- Design and characterization of bispecific antibodies (BsAbs) targeting P-gp and CD47.
- Evaluation of BsAb efficacy in preclinical MDR xenograft tumor models.
- Assessment of BsAbs as single agents and in combination with paclitaxel.
Main Results:
- BsAbs effectively restored tumor sensitivity to paclitaxel in three different MDR xenograft models.
- Significant anti-tumor efficacy was observed with BsAbs, both alone and with paclitaxel.
- The BsAb approach demonstrated tumor-specific targeting with reduced toxicity to normal tissues.
Conclusions:
- Bispecific antibodies targeting P-gp and CD47 offer a promising strategy to combat MDR cancer.
- This novel approach provides multimodal mechanisms of action, tumor-specific targeting, and broad applicability.
- BsAbs represent an advancement over small molecule antagonists, with potential for reduced systemic toxicity.
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