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Updated: Dec 29, 2025

A 3D Organotypic Melanoma Spheroid Skin Model
Published on: May 18, 2018
Evolution of Molecular Targets in Melanoma Treatment
Khanh B Tran1,2, Christina M Buchanan1,2, Peter R Shepherd1,2,3
1Department of Molecular Medicine and Pathology, University of Auckland, New Zealand.
Abstract:
Melanoma is the deadliest type of skin cancers, accounting for more than 80% of skin cancer mortality. Although melanoma was known very early in the history of medicine, treatment for this disease had remained largely the same until very recently. Previous treatment options, including removal surgery and systemic chemotherapy, offered little benefit in extending the survival of melanoma patients. However, the last decade has seen breakthroughs in melanoma treatment, which all emerged following new insight into the oncogenic signaling of melanoma. This paper reviewed the evolution of drug targets for melanoma treatment based on the emergence of novel findings in the molecular signaling of melanoma. One of the findings that are most influential in melanoma treatment is that more than 50% of melanoma tumors contain BRAF mutations. This is fundamental for the development of BRAF inhibitors, which is the first group of drugs that significantly improves the overall survival of melanoma patients compared to the traditional chemotherapeutic dacarbazine. More recently, findings of the role of immune checkpoint molecules such as CTLA-4 and PD1/PD-L1 in melanoma biology have led to the development of a new therapeutic category: immune checkpoint inhibitors, which, for the first time in the history of cancer treatment, produced a durable response in a subset of melanoma patients. However, as this paper discussed next, there is still an unmet need for melanoma treatment. A significant population of patients did not respond to either BRAF inhibitors or immune checkpoint inhibitors. Of those patients who gained an initial response from those therapies, a remarkable percentage would develop drug resistance even when MEK inhibitors were added to the treatment. Finally, this paper discusses some possible targets for melanoma treatment.
Insights
Recent advances in melanoma treatment have yielded targeted therapies like BRAF inhibitors and immune checkpoint inhibitors, significantly improving survival. However, challenges remain due to resistance and non-response in many melanoma patients.
Area of Science:
- Oncology
- Dermatology
- Molecular Biology
Background:
- Melanoma is a deadly skin cancer with historically limited treatment options.
- Recent breakthroughs stem from understanding melanoma's molecular signaling pathways.
- Targeted therapies have emerged as a significant advancement in melanoma treatment.
Purpose of the Study:
- To review the evolution of drug targets in melanoma treatment.
- To highlight the impact of molecular signaling discoveries on therapeutic strategies.
- To discuss current unmet needs and future directions in melanoma therapy.
Main Methods:
- Literature review of melanoma treatment evolution.
- Analysis of key molecular findings in melanoma oncogenesis.
- Discussion of targeted therapies including BRAF inhibitors and immune checkpoint inhibitors.
Main Results:
- BRAF mutations are prevalent in melanoma, leading to effective BRAF inhibitors.
- Immune checkpoint inhibitors (CTLA-4, PD1/PD-L1) offer durable responses in some patients.
- Resistance to targeted therapies and lack of response in a significant patient subset remain challenges.
Conclusions:
- Targeted therapies have revolutionized melanoma treatment, improving survival rates.
- Further research is needed to address treatment resistance and identify new therapeutic targets.
- Understanding molecular signaling is crucial for developing next-generation melanoma therapies.
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