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Updated: Jan 29, 2026

Isolated Hepatic Perfusion as a Treatment for Liver Metastases of Uveal Melanoma
Published on: January 25, 2015
Melanocortin 1 Receptor-Targeted α-Particle Therapy for Metastatic Uveal Melanoma
Narges K Tafreshi1, Christopher J Tichacek1,2,3, Darpan N Pandya4
1Department of Cancer Physiology, H. Lee Moffitt Cancer Center and Research Institute, Tampa, Florida.
Abstract:
New effective therapies are greatly needed for metastatic uveal melanoma, which has a very poor prognosis with a median survival of less than 1 y. The melanocortin 1 receptor (MC1R) is expressed in 94% of uveal melanoma metastases, and a MC1R-specific ligand (MC1RL) with high affinity and selectivity for MC1R was previously developed. Methods: The 225Ac-DOTA-MC1RL conjugate was synthesized in high radiochemical yield and purity and was tested in vitro for biostability and for MC1R-specific cytotoxicity in uveal melanoma cells, and the lanthanum-DOTA-MC1RL analog was tested for binding affinity. Non-tumor-bearing BALB/c mice were tested for maximum tolerated dose and biodistribution. Severe combined immunodeficient mice bearing uveal melanoma tumors or engineered MC1R-positive and -negative tumors were studied for biodistribution and efficacy. Radiation dosimetry was calculated using mouse biodistribution data and blood clearance kinetics from Sprague-Dawley rat data. Results: High biostability, MC1R-specific cytotoxicity, and high binding affinity were observed. Limiting toxicities were not observed at even the highest administered activities. Pharmacokinetics and biodistribution studies revealed rapid blood clearance (<15 min), renal and hepatobillary excretion, MC1R-specific tumor uptake, and minimal retention in other normal tissues. Radiation dosimetry calculations determined pharmacokinetics parameters and absorbed α-emission dosages from 225Ac and its daughters. Efficacy studies demonstrated significantly prolonged survival and decreased metastasis burden after a single administration of 225Ac-DOTA-MC1RL in treated mice relative to controls. Conclusion: These results suggest significant potential for the clinical translation of 225Ac-DOTA-MC1RL as a novel therapy for metastatic uveal melanoma.
Insights
A novel targeted therapy using 225Ac-DOTA-MC1RL shows promise for metastatic uveal melanoma. This treatment targets the melanocortin 1 receptor (MC1R) and significantly improved survival in preclinical models.
Area of Science:
- Oncology
- Radiopharmaceutical Therapy
- Molecular Imaging and Therapy
Background:
- Metastatic uveal melanoma has a poor prognosis with limited treatment options.
- The melanocortin 1 receptor (MC1R) is highly expressed in uveal melanoma metastases.
- A previously developed MC1R-specific ligand (MC1RL) offers a targeted approach.
Purpose of the Study:
- To evaluate the preclinical efficacy and safety of the 225Ac-DOTA-MC1RL conjugate as a targeted therapy for metastatic uveal melanoma.
- To assess the binding affinity, biostability, and tumor-specific uptake of the radioconjugate.
Main Methods:
- Synthesis and characterization of 225Ac-DOTA-MC1RL.
- In vitro assessment of biostability and MC1R-specific cytotoxicity.
- In vivo studies in mice for maximum tolerated dose, biodistribution, and therapeutic efficacy.
- Radiation dosimetry calculations.
Main Results:
- The 225Ac-DOTA-MC1RL conjugate demonstrated high biostability, MC1R-specific cytotoxicity, and high binding affinity.
- Preclinical studies showed rapid blood clearance, MC1R-specific tumor uptake, and minimal off-target toxicity.
- A single administration significantly prolonged survival and reduced metastasis burden in tumor-bearing mice.
Conclusions:
- 225Ac-DOTA-MC1RL exhibits significant potential as a novel targeted radiopharmaceutical therapy for metastatic uveal melanoma.
- The findings support further clinical translation for this challenging cancer.
- Targeting MC1R with alpha-emitting radioconjugates is a promising strategy.
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