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A digital mRNA expression signature to classify challenging Spitzoid melanocytic neoplasms
Author(s) -
Hillen Lisa M.,
Geybels Milan S.,
Spassova Ivelina,
Becker Jürgen C.,
Gambichler Thilo,
Garmyn Marjan,
Hausen Axel,
Oord Joost,
Winnepenninckx Véronique
Publication year - 2020
Publication title -
febs open bio
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.718
H-Index - 31
ISSN - 2211-5463
DOI - 10.1002/2211-5463.12897
Subject(s) - melanoma , transcriptome , biology , gene expression profiling , pathology , cancer research , medicine , oncology , gene , gene expression , genetics
Spitzoid neoplasms are a challenging group of cutaneous melanocytic proliferations. They are characterized by epithelioid and/or spindle‐shaped melanocytes and classified as benign Spitz nevi (SN), atypical Spitz tumors (AST), or malignant Spitz tumors (MST). The intermediate AST category represents a diagnostically challenging group since on purely histopathological grounds, their benign or malignant character remains unpredictable. This results in uncertainties in patient treatment and prognosis. The molecular properties of Spitzoid lesions, especially their transcriptomic landscape, remain poorly understood, and genomic alterations in melanoma‐associated oncogenes are typically absent. The aim of this study was to characterize their transcriptome with digital mRNA expression profiling. Formalin‐fixed paraffin‐embedded samples (including 27 SN, 10 AST, and 14 MST) were analyzed using the NanoString nCounter PanCancer Pathways Panel. The number of significantly differentially expressed genes in SN vs. MST, SN vs. AST, and AST vs. MST was 68, 167, and 18, respectively. Gene set enrichment analysis revealed upregulation of pathways related to epithelial–mesenchymal transition and immunomodulatory‐, angiogenesis‐, hormonal‐, and myogenesis‐associated processes in AST and MST. A molecular signature of SN vs. MST was discovered based on the top‐ranked most informative genes: NRAS , NF1 , BMP2 , EIF2B4 , IFNA17 , and FZD9 . The AST samples showed intermediate levels of the identified signature. This implies that the gene signature can potentially be used to distinguish high‐grade from low‐grade AST with a larger study cohort in the future. This combined histopathological and transcriptomic methodology is promising for prospective diagnostics of Spitzoid neoplasms and patient management in dermatological oncology.

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