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Next-generation cell-penetrating antibodies for tumor targeting and RAD51 inhibition
Madison Rackear1,2, Elias Quijano1,2, Zaira Ianniello1
1Department of Therapeutic Radiology, Yale University School of Medicine, New Haven, CT 06520, USA.
Researchers developed a humanized antibody, 3E10, that targets intracellular cancer proteins. This antibody uses the ENT2 transporter for cell entry and shows promise for novel cancer therapies.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Monoclonal antibody therapies are successful but mainly target cell surface antigens.
- Many cancer targets are intracellular, limiting current antibody therapy applications.
- The lupus-derived autoantibody 3E10 shows potential for intracellular targeting.
Purpose of the Study:
- To humanize the 3E10 antibody for potential cancer therapy.
- To investigate the mechanism of cell penetration and tumor targeting of 3E10 variants.
- To evaluate the therapeutic potential of humanized 3E10 against intracellular targets.
Main Methods:
- Humanization of the monoclonal antibody 3E10.
- Assessment of cell uptake via nucleoside transporter ENT2.
- Evaluation of antibody affinity for nucleic acids and RAD51 binding.
- In vivo tumor targeting studies in preclinical models.
Main Results:
- Humanized 3E10 variants demonstrated cell uptake dependent on ENT2.
- Higher nucleic acid binding affinity correlated with faster cell uptake and enhanced tumor targeting.
- One human variant retained binding to RAD51, inhibiting homology-directed repair.
- The antibody showed specific tumor targeting after systemic administration.
Conclusions:
- Humanized 3E10 antibody is a promising platform for targeting intracellular cancer proteins.
- ENT2-mediated cell penetration is crucial for antibody efficacy.
- Targeting RAD51 offers a synthetic lethal approach for cancer treatment.
- This antibody platform enables rational design for specific systemic cancer therapy.
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