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Updated: Jun 29, 2026

Tracking Bispecific Antibody-Induced T Cell Trafficking Using Luciferase-Transduced Human T Cells
Published on: May 12, 2023
Targeting ErbB2 and ErbB3 with a bispecific single-chain Fv enhances targeting selectivity and induces a therapeutic
M K Robinson1, K M Hodge, E Horak
1Department of Medical Oncology, Fox Chase Cancer Center, Philadelphia, PA, USA. mk_robinson@ fccc.edu
Abstract:
Inappropriate signalling through the EGFR and ErbB2/HER2 members of the epidermal growth factor family of receptor tyrosine kinases is well recognised as being causally linked to a variety of cancers. Consequently, monoclonal antibodies specific for these receptors have become increasingly important components of effective treatment strategies for cancer. Increasing evidence suggests that ErbB3 plays a critical role in cancer progression and resistance to therapy. We hypothesised that co-targeting the preferred ErbB2/ErbB3 heterodimer with a bispecific single-chain Fv (bs-scFv) antibody would promote increased targeting selectivity over antibodies specific for a single tumour-associated antigen (TAA). In addition, we hypothesised that targeting this important heterodimer could induce a therapeutic effect. Here, we describe the construction and evaluation of the A5-linker-ML3.9 bs-scFv (ALM), an anti-ErbB3/ErbB2 bs-scFv. The A5-linker-ML3.9 bs-scFv exhibits selective targeting of tumour cells in vitro and in vivo that co-express the two target antigens over tumour cells that express only one target antigen or normal cells that express low levels of both antigens. The A5-linker-ML3.9 bs-scFv also exhibits significantly greater in vivo targeting of ErbB2'+'/ErbB3'+' tumours than derivative molecules that contain only one functional arm targeting ErbB2 or ErbB3. Binding of ALM to ErbB2'+'/ErbB3'+' cells mediates inhibition of tumour cell growth in vitro by effectively targeting the therapeutic anti-ErbB3 A5 scFv. This suggests both that ALM could provide the basis for an effective therapeutic agent and that engineered antibodies selected to co-target critical functional pairs of TAAs can enhance the targeting specificity and efficacy of antibody-based cancer therapeutics.
Insights
A novel bispecific antibody targeting both ErbB2 and ErbB3 receptors selectively targets cancer cells. This engineered antibody demonstrates enhanced efficacy in inhibiting tumor growth, offering a promising new strategy for cancer therapy.
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- Aberrant signaling of epidermal growth factor receptor (EGFR) family members, including ErbB2/HER2, is implicated in various cancers.
- ErbB3 is increasingly recognized for its role in cancer progression and therapeutic resistance.
- Monoclonal antibodies targeting tumor-associated antigens (TAAs) are crucial in cancer treatment.
Purpose of the Study:
- To investigate the therapeutic potential of co-targeting the ErbB2/ErbB3 heterodimer using a bispecific single-chain variable fragment (bs-scFv) antibody.
- To enhance targeting selectivity and therapeutic efficacy by simultaneously targeting two critical TAAs.
- To construct and evaluate an anti-ErbB3/ErbB2 bs-scFv, designated A5-linker-ML3.9 (ALM).
Main Methods:
- Construction and in vitro/in vivo evaluation of the A5-linker-ML3.9 bs-scFv (ALM).
- Assessment of ALM's targeting selectivity against tumor cells co-expressing ErbB2 and ErbB3 versus cells expressing single antigens or normal cells.
- Comparison of in vivo tumor targeting by ALM against derivative single-target antibodies.
Main Results:
- ALM demonstrated selective targeting of tumor cells co-expressing ErbB2 and ErbB3.
- ALM showed superior in vivo targeting of ErbB2+/ErbB3+ tumors compared to single-target antibodies.
- Binding of ALM to ErbB2+/ErbB3+ cells inhibited tumor cell growth in vitro, primarily via the anti-ErbB3 component.
Conclusions:
- Co-targeting the ErbB2/ErbB3 heterodimer with a bs-scFv enhances targeting specificity and therapeutic efficacy.
- Engineered antibodies targeting critical TAA pairs offer a promising approach for improved cancer therapeutics.
- ALM shows potential as an effective therapeutic agent for cancers overexpressing ErbB2 and ErbB3.
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