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Updated: Feb 26, 2026

A 3D Organotypic Melanoma Spheroid Skin Model
Published on: May 18, 2018
Recent Advances in Polymeric Nanosystems for Treating Cutaneous Melanoma and Its Metastasis
Yi-Ping Chou1,2, Yin-Ku Lin3,4, Chun-Han Chen5,6
1Division of Trauma, Department of Emergency, Kaohsiung Veterans General Hospital, Kaohsiung, Taiwan.
Abstract:
Melanoma shows a high possibility of mortality after it metastasizes because of its aggressive nature. Although there are several options for anti-melanoma therapy, this skin malignancy is resistant to some therapies. Chemotherapy, biochemotherapy, immunotherapy, and adoptive cell therapy have failed to exhibit a significant amelioration in overall survival. Nanomedicine provides an opportunity to improve the efficiency of the antimelanoma regimen. Nanoparticles for treating melanoma provide the advantages over conventional therapies such as drug solubility increment, drug stability enhancement, epithelium permeability and bioavailability amelioration, half-life prolonging, tumor targeting, and side effect minimization. Polymeric nanocarriers are the most extensively studied platforms for the treatment of a variety of cancers. The polymers' sophisticated material engineering tailors the controllable physicochemical properties of the nanoparticles for melanoma penetration via passive and active delivery. The present study highlights the recent progress on the development of polymeric nanoparticles for melanoma treatment. We describe the concepts and improvement mechanisms of the nanomedical techniques for melanoma treatment. Passive targeting by modifying the structure and physicochemical characters of polymeric nanocarriers is a strategy for efficient drug delivery to the melanoma and its metastasis. On the other hand, active targeting such as peptide or antibody conjugation is another approach delivering the drugs or genes to the nidus site by the nanocarriers. This review offers an overview of the benefits of polymeric nanosystems for treating melanoma.
Insights
Polymeric nanoparticles offer advanced melanoma treatment by improving drug delivery and minimizing side effects. This nanomedicine approach enhances therapeutic efficiency against aggressive skin cancer, overcoming resistance to traditional therapies.
Area of Science:
- Oncology
- Nanomedicine
- Materials Science
Background:
- Melanoma is an aggressive skin cancer with high mortality upon metastasis.
- Conventional therapies like chemotherapy and immunotherapy show limited efficacy and survival benefits.
- Existing treatments struggle with melanoma's resistance and systemic side effects.
Purpose of the Study:
- To review recent advancements in polymeric nanoparticles for melanoma treatment.
- To explore nanomedicine strategies for enhancing anti-melanoma therapy effectiveness.
- To highlight the benefits of polymeric nanosystems in overcoming therapeutic challenges.
Main Methods:
- Review of current literature on polymeric nanoparticles in melanoma treatment.
- Analysis of passive targeting strategies via nanocarrier modification.
- Examination of active targeting approaches using peptide or antibody conjugation.
Main Results:
- Polymeric nanoparticles improve drug solubility, stability, permeability, and bioavailability.
- Nanocarriers enable enhanced tumor targeting, prolonging drug half-life and minimizing side effects.
- Both passive and active targeting strategies show promise for melanoma treatment.
Conclusions:
- Polymeric nanocarriers represent a promising platform for advanced melanoma therapy.
- Nanomedicine offers significant advantages over conventional treatments for metastatic melanoma.
- Tailored nanocarrier design facilitates efficient drug and gene delivery to melanoma sites.
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