Targeting the Melanocortin 1 Receptor in Melanoma: Biological Activity of α-MSH-Peptide Conjugates
Ildikó Szabó1,2, Beáta Biri-Kovács1, Balázs Vári3,4
1HUN-REN-ELTE Research Group of Peptide Chemistry, 1117 Budapest, Hungary.
Abstract:
Malignant melanoma is one of the most aggressive and resistant tumor types, with high metastatic properties. Because of the lack of suitable chemotherapeutic agents for treatment, the 5-year survival rate of melanoma patients with regional and distant metastases is lower than 10%. Targeted tumor therapy that provides several promising results might be a good option for the treatment of malignant melanomas. Our goal was to develop novel melanoma-specific peptide-drug conjugates for targeted tumor therapy. Melanocortin-1-receptor (MC1R) is a cell surface receptor responsible for melanogenesis and it is overexpressed on the surface of melanoma cells, providing a good target. Its native ligand, α-MSH (α-melanocyte-stimulating hormone) peptide, or its derivatives, might be potential homing devices for this purpose. Therefore, we prepared three α-MSH derivative-daunomycin (Dau) conjugates and their in vitro and in vivo antitumor activities were compared. Dau has an autofluorescence property; therefore, it is suitable for preparing conjugates for in vitro (e.g., cellular uptake) and in vivo experiments. Dau was attached to the peptides via a non-cleavable oxime linkage that was applied efficiently in our previous experiments, resulting in conjugates with high tumor growth inhibition activity. The results indicated that the most promising conjugate was the compound in which Dau was connected to the side chain of Lys (Ac-SYSNleEHFRWGK(Dau=Aoa)PV-NH2). The highest cellular uptake by melanoma cells was demonstrated using the compound, with the highest tumor growth inhibition detected both on mouse (38.6% on B16) and human uveal melanoma (55% on OMC-1) cells. The effect of the compound was more pronounced than that of the free drug.
Insights
Researchers developed novel peptide-drug conjugates targeting melanoma cells overexpressing the melanocortin-1 receptor (MC1R). One conjugate showed superior cellular uptake and significant tumor growth inhibition in both mouse and human melanoma models, outperforming the free drug.
Area of Science:
- Oncology
- Medicinal Chemistry
- Pharmacology
Background:
- Malignant melanoma is an aggressive cancer with poor survival rates, necessitating advanced therapeutic strategies.
- Targeted therapies offer a promising approach for melanoma treatment, addressing limitations of conventional chemotherapy.
- Melanocortin-1 receptor (MC1R) is overexpressed on melanoma cells, making it a viable target for drug delivery.
Purpose of the Study:
- To develop and evaluate novel peptide-drug conjugates for targeted melanoma therapy.
- To utilize α-melanocyte-stimulating hormone (α-MSH) derivatives as homing devices for MC1R-expressing melanoma cells.
- To compare the in vitro and in vivo antitumor activities of three α-MSH derivative-daunomycin (Dau) conjugates.
Main Methods:
- Synthesis of three α-MSH derivative-daunomycin (Dau) conjugates using a non-cleavable oxime linkage.
- Evaluation of cellular uptake in melanoma cells using Dau's autofluorescence property.
- Assessment of in vivo antitumor activity against mouse (B16) and human uveal (OMC-1) melanoma models.
Main Results:
- One conjugate, Ac-SYSNleEHFRWGK(Dau=Aoa)PV-NH2, demonstrated the highest cellular uptake in melanoma cells.
- This lead conjugate exhibited significant tumor growth inhibition: 38.6% in mouse B16 melanoma and 55% in human OMC-1 uveal melanoma.
- The conjugate's antitumor effect was more pronounced than that of free daunomycin.
Conclusions:
- The developed α-MSH derivative-Dau conjugate represents a promising targeted therapeutic agent for malignant melanoma.
- MC1R-targeted drug delivery via peptide conjugates can effectively enhance antitumor activity.
- This approach holds potential for improving treatment outcomes in metastatic melanoma.
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