Doxorubicin Delivery by pYEEIE Peptide-Functionalized Rhodiola rosea-Derived Exosome-Like Nanovesicles for Targeted Melanoma Therapy

Duan, Meitao and Chen, Binbin and Yi, Xue and Mahal, Ahmed and Song, Linwei and Xu, Moxun and Obaidullah, Ahmad J. and Yu, Shuwei and Wang, Chen (2025) Doxorubicin Delivery by pYEEIE Peptide-Functionalized Rhodiola rosea-Derived Exosome-Like Nanovesicles for Targeted Melanoma Therapy. Frontiers in Pharmacology, 16: 1619998. ISSN 1663-9812 (online)

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Abstract

Introduction: Melanoma is the most common cause of skin cancer-related deaths due to its aggressive nature. Plant-derived exosome-like nanovesicles (PELNs) are promising natural nanoparticles for therapeutic applications owing to their biocompatibility and diverse bioactive components. However, research on Rhodiola rosea-derived exosome-like nanovesicles (RELNs) remains limited.

Methods: This study evaluated the therapeutic efficacy and safety of a novel targeted drug delivery system, pYEEIE peptide-functionalized RELNs loaded with doxorubicin (DOX) (pYEEIE-RELNs-DOX), in melanoma-bearing mice.

Results: Fluorescence imaging and histopathological assessments demonstrated that pYEEIE-RELNs-DOX exhibited superior tumor-targeting ability and significantly inhibited melanoma growth compared to free DOX and non-targeted RELNs-DOX. Importantly, pYEEIE-RELNs-DOX showed no toxicity to major organs (heart, liver, spleen, lungs, and kidneys), whereas free DOX induced cardiac tissue damage. Meanwhile, the serum ALT and AST levels remained normal, indicating no liver cell damage.

Conclusion: These findings highlight the potential of pYEEIE-RELNs-DOX as a low-toxicity, high-efficacy targeted delivery system for melanoma therapy, providing a foundation for clinical translation.

Item Type: Article
Uncontrolled Keywords: Rhodiola rosea, Rhodiola-derived exosome-like nanovesicles, Doxorubicin, pYEEIE peptide, Drug delivery system, Melanoma
Subjects: Q Science > QK Botany
R Medicine > RC Internal medicine > RC0254 Neoplasms. Tumors. Oncology (including Cancer)
R Medicine > RM Therapeutics. Pharmacology
T Technology > TP Chemical technology
Divisions: Department of Medical Biochemical Analysis > Research papers
Depositing User: ePrints Depositor
Date Deposited: 14 Aug 2025 06:47
Last Modified: 14 Aug 2025 06:47
URI: https://eprints.cihanuniversity.edu.iq/id/eprint/4758

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