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Nectin-4, Bladder Cancer, and Nuclear Medicine: A Theranostic Frontier
Joseph Kabunda1, Honest Ndlovu2, Karishma Singh3
1Nuclear Medicine Research Infrastructure, Pretoria, South Africa; Department of Nuclear Medicine, University of Pretoria, Pretoria, South Africa; Department of Nuclear Medicine, Cancer Diseases Hospital, Lusaka, Zambia.
Abstract:
Bladder cancer is among the top ten most common cancers globally, with advanced or metastatic disease associated with dismal survival outcomes. Current diagnostic imaging and therapies have significant limitations, highlighting the urgent need for novel theranostic targets. Nectin-4, a cell adhesion molecule frequently overexpressed in bladder cancer, especially urothelial carcinoma (∼60%-87% of tumors), has emerged as a promising biomarker and therapeutic target. This review critically evaluates the role of Nectin-4 in bladder cancer and explores its exciting potential in nuclear medicine for combined molecular imaging and targeted radionuclide therapy-embracing the "theranostic" paradigm. Nectin-4 is abundantly and selectively expressed in most urothelial carcinomas, correlating with advanced disease and poorer prognosis. Clinically validated by the FDA-approved antibody-drug conjugate enfortumab vedotin, Nectin-4 targeting achieves objective response rates around 40%-50% and significantly improves survival in refractory advanced urothelial carcinoma. Recent clinical advances in Nectin-4-targeted PET imaging (such as 68Ga-labeled agents) have demonstrated excellent tumor localization and specificity, enabling precise patient selection for targeted therapies. Additionally, emerging radionuclide therapeutics (eg, 225Ac- and 177Lu-based agents) show promising preclinical and early clinical efficacy, robust tumor targeting, and favorable safety profiles. Targeting Nectin-4 represents a new frontier in the management of bladder cancer, bridging the gap between precise molecular diagnostics and personalized targeted radionuclide therapy. Ongoing clinical trials and translational research are rapidly advancing this promising theranostic strategy towards routine clinical application, with significant potential to enhance patient selection, treatment monitoring, and ultimately, clinical outcomes.
Insights
Nectin-4 is a promising target for bladder cancer theranostics. Targeting Nectin-4 enables advanced molecular imaging and radionuclide therapy, improving outcomes for urothelial carcinoma patients.
Area of Science:
- Nuclear Medicine
- Oncology
- Molecular Imaging
Background:
- Bladder cancer, particularly advanced or metastatic disease, has poor survival rates.
- Current diagnostic and therapeutic options for bladder cancer are limited.
- Nectin-4, a cell adhesion molecule, is overexpressed in urothelial carcinoma, presenting a potential theranostic target.
Purpose of the Study:
- To review the role of Nectin-4 in bladder cancer.
- To explore Nectin-4's potential in nuclear medicine for theranostics (imaging and therapy).
- To evaluate Nectin-4 as a biomarker and therapeutic target for urothelial carcinoma.
Main Methods:
- Review of existing literature on Nectin-4 in bladder cancer.
- Analysis of clinical data for Nectin-4 targeted therapies (e.g., enfortumab vedotin).
- Evaluation of Nectin-4-targeted PET imaging agents (e.g., 68Ga) and radionuclide therapeutics (e.g., 225Ac, 177Lu).
Main Results:
- Nectin-4 is highly and selectively expressed in most urothelial carcinomas, correlating with advanced disease.
- Nectin-4 targeting with enfortumab vedotin shows significant response rates (40%-50%) and improved survival.
- Nectin-4-targeted PET imaging demonstrates excellent tumor localization, and radionuclide therapies show promising efficacy and safety.
Conclusions:
- Nectin-4 targeting offers a novel theranostic approach for bladder cancer management.
- This strategy bridges molecular diagnostics and personalized radionuclide therapy.
- Ongoing research aims to integrate Nectin-4 theranostics into routine clinical practice for improved patient outcomes.

