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Updated: Jun 2, 2026

A Robust Discovery Platform for the Identification of Novel Mediators of Melanoma Metastasis
Published on: March 8, 2022
Evolving concepts in melanoma classification and their relevance to multidisciplinary melanoma patient care
Richard A Scolyer1, Georgina V Long, John F Thompson
1Melanoma Institute Australia, Sydney, NSW, Australia. richard.scolyer@sswahs.nsw.gov.au
Abstract:
In the initial period after melanoma was recognised as a disease entity in the early 1800's, it was subclassified on the basis of its presumed origin (from a precursor naevus, from a melanocytic precursor lesion acquired during adult life or in previously blemish-fee skin). In 1967 the eminent American pathologist, Dr Wallace Clark, proposed a histogenetic classification for melanoma in which the disease was subdivided predominantly on the basis of histopathological features of the intra-epidermal component of the tumour adjacent to any dermal invasive component. The subtypes were superficial spreading melanoma (SSM), lentigo maligna melanoma (LMM) and nodular melanoma (NM). Whilst additional entities, including acral lentiginous melanoma, mucosal melanoma, desmoplastic melanoma and naevoid melanoma have since been recognised, SSM, LMM and NM remain in the latest (2006) version of the WHO melanoma classification. Clark's histogenetic classification has been criticised because the criteria upon which it is based include clinical features (such as the site of the melanoma) and non-tumourous histopathological features (such as the character of the associated epidermis and the degree of solar elastosis) and also because of overlap in defining features, lack of an independent association with patient outcome and minimal relevance as a determinant of clinical management. However, such criticisms fail to acknowledge its importance in highlighting the myriad of clinical and histological guises of melanoma, which if not recognized by clinicians and pathologists will inevitably lead to a delay in diagnosis and a concomitant adverse clinical outcome. Recently, mutually exclusive oncogenic mutations in melanomas involving NRAS (15-20%), BRAF (50%), CKIT (2%), and GNAQ/GNA11 (50% of uveal melanomas) have been identified. This might herald the beginning of a new molecular classification of melanoma in which the biologically distinct subsets share a common oncogenic mechanism, behave clinically in a similar fashion and require similar clinical management. These discoveries are already being successfully exploited as therapeutic targets in clinical trials of metastatic melanoma patients with promising activity. Whilst there remains much to be discovered in this rapidly evolving field, there is already great optimism that more rational and effective therapies for melanoma patients will soon be widely available.
Insights
Melanoma classification evolved from histopathology to molecular insights. Understanding these subtypes is crucial for timely diagnosis and developing targeted therapies for better patient outcomes.
Area of Science:
- Dermatopathology
- Oncology
- Molecular Biology
Background:
- Melanoma classification historically relied on histogenetic and histopathological features, notably Clark's 1967 system.
- Clark's classification, while highlighting diverse melanoma presentations, faced criticism for incorporating clinical and non-tumorous features and lacking prognostic relevance.
- Despite limitations, Clark's system emphasized the importance of recognizing varied melanoma appearances to prevent diagnostic delays.
Purpose of the Study:
- To review the evolution of melanoma classification systems.
- To discuss the limitations of traditional histopathological classifications.
- To introduce the emerging molecular classification of melanoma based on oncogenic mutations.
Main Methods:
- Review of historical and contemporary melanoma classification criteria.
- Analysis of criticisms and limitations of Clark's histogenetic classification.
- Summary of recent discoveries in melanoma molecular genetics and their therapeutic implications.
Main Results:
- Superficial spreading melanoma (SSM), lentigo maligna melanoma (LMM), and nodular melanoma (NM) remain key subtypes.
- Identified mutually exclusive oncogenic mutations (NRAS, BRAF, CKIT, GNAQ/GNA11) in distinct melanoma subsets.
- Emerging molecular classification may enable biologically distinct subsets with common oncogenic mechanisms.
Conclusions:
- Molecular classification holds promise for a more rational and effective therapeutic approach to melanoma.
- Targeting identified oncogenic mutations is showing promising activity in clinical trials for metastatic melanoma.
- Continued research in melanoma molecular biology is essential for developing novel and improved therapies.
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