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Updated: Jun 15, 2026

Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
Targeting activated integrin alphavbeta3 with patient-derived antibodies impacts late-stage multiorgan metastasis
Karin Staflin1, Joseph S Krueger, Janna Hachmann
1Department of Molecular and Experimental Medicine, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, CA 92037, USA.
Abstract:
Advanced metastatic disease is difficult to manage and specific therapeutic targets are rare. We showed earlier that metastatic breast cancer cells use the activated conformer of adhesion receptor integrin alphavbeta3 for dissemination. We now investigated if targeting this form of the receptor can impact advanced metastatic disease, and we analyzed the mechanisms involved. Treatment of advanced multi-organ metastasis in SCID mice with patient-derived scFv antibodies specific for activated integrin alphavbeta3 caused stagnation and regression of metastatic growth. The antibodies specifically localized to tumor lesions in vivo and inhibited alphavbeta3 ligand binding at nanomolar levels in vitro. At the cellular level, the scFs associated rapidly with high affinity alphavbeta3 and dissociated extremely slowly. Thus, the scFvs occupy the receptor on metastatic tumor cells for prolonged periods of time, allowing for inhibition of established cell interaction with natural alphavbeta3 ligands. Potential apoptosis inducing effects of the antibodies through interaction with caspase-3 were studied as potential additional mechanism of treatment response. However, in contrast to a previous concept, neither the RGD-containing ligand mimetic scFvs nor RGD peptides bound or activated caspase-3 at the cellular or molecular level. This indicates that the treatment effects seen in the animal model are primarily due to antibody interference with alphavbeta3 ligation. Inhibition of advanced metastatic disease by treatment with cancer patient derived single chain antibodies against the activated conformer of integrin alphavbeta3 identifies this form of the receptor as a suitable target for therapy.
Insights
Targeting activated integrin alphavbeta3 with patient-derived antibodies halts metastatic breast cancer growth. These single-chain variable fragment (scFv) antibodies bind the receptor, preventing cancer cell spread and causing tumor regression in mice.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Advanced metastatic disease presents significant management challenges with limited therapeutic targets.
- Metastatic breast cancer cells utilize the activated integrin alphavbeta3 conformation for dissemination.
Purpose of the Study:
- To investigate if targeting the activated integrin alphavbeta3 conformation can impact advanced metastatic disease.
- To analyze the mechanisms underlying the therapeutic effects of targeting this receptor.
Main Methods:
- Treatment of SCID mice with advanced multi-organ metastasis using patient-derived single-chain variable fragment (scFv) antibodies specific for activated integrin alphavbeta3.
- In vivo localization studies of antibodies to tumor lesions.
- In vitro assessment of antibody inhibition of integrin alphavbeta3 ligand binding.
- Analysis of antibody-receptor interactions at the cellular and molecular level, including potential caspase-3 involvement.
Main Results:
- Treatment led to stagnation and regression of metastatic growth in mice.
- Antibodies specifically localized to tumor lesions and inhibited integrin alphavbeta3 ligand binding.
- scFvs exhibited rapid association and extremely slow dissociation from activated integrin alphavbeta3, prolonging receptor occupancy.
- Antibody treatment effects were primarily due to interference with integrin alphavbeta3 ligation, not caspase-3 activation.
Conclusions:
- Targeting the activated conformer of integrin alphavbeta3 with patient-derived scFv antibodies is a viable strategy for inhibiting advanced metastatic disease.
- Activated integrin alphavbeta3 is identified as a suitable therapeutic target for metastatic breast cancer.
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