Elucidating Novel Targets for Ovarian Cancer Antibody–Drug Conjugate Development: Integrating In Silico Prediction and Surface Plasmon Resonance to Identify Targets with Enhanced Antibody Internalization Capacity

Author:

Onyido Emenike Kenechi1ORCID,James David1ORCID,Garcia-Parra Jezabel1ORCID,Sinfield John2,Moberg Anna2,Coombes Zoe1ORCID,Worthington Jenny3,Williams Nicole3,Francis Lewis Webb1,Conlan Robert Steven1ORCID,Gonzalez Deyarina1ORCID

Affiliation:

1. Reproductive Biology and Gynaecological Oncology Group, Swansea University Medical School, Swansea University, Singleton Park, Swansea SA2 8PP, UK

2. Cytiva, Björkgatan 30, 751 84 Uppsala, Sweden

3. Axis Bioservices Ltd., 189 Castleroe Rd, Coleraine BT51 3RP, UK

Abstract

Antibody–drug conjugates (ADCs) constitute a rapidly expanding category of biopharmaceuticals that are reshaping the landscape of targeted chemotherapy. The meticulous process of selecting therapeutic targets, aided by specific monoclonal antibodies’ high specificity for binding to designated antigenic epitopes, is pivotal in ADC research and development. Despite ADCs’ intrinsic ability to differentiate between healthy and cancerous cells, developmental challenges persist. In this study, we present a rationalized pipeline encompassing the initial phases of the ADC development, including target identification and validation. Leveraging an in-house, computationally constructed ADC target database, termed ADC Target Vault, we identified a set of novel ovarian cancer targets. We effectively demonstrate the efficacy of Surface Plasmon Resonance (SPR) technology and in vitro models as predictive tools, expediting the selection and validation of targets as ADC candidates for ovarian cancer therapy. Our analysis reveals three novel robust antibody/target pairs with strong binding and favourable antibody internalization rates in both wild-type and cisplatin-resistant ovarian cancer cell lines. This approach enhances ADC development and offers a comprehensive method for assessing target/antibody combinations and pre-payload conjugation biological activity. Additionally, the strategy establishes a robust platform for high-throughput screening of potential ovarian cancer ADC targets, an approach that is equally applicable to other cancer types.

Funder

Welsh Government

Publisher

MDPI AG

Subject

Drug Discovery,Immunology,Immunology and Allergy

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