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Molecular characteristics of malignant ovarian germ cell tumors and comparison with testicular counterparts: implications for pathogenesis. | LitMetric

AI Article Synopsis

  • This review explores the molecular characteristics and development of rare malignant ovarian germ cell tumors (mOGCTs), focusing on their genomic aberrations and transcriptome profiles.
  • It compares mOGCTs with male testicular germ cell tumors (TGCTs), discussing their origins and developmental pathways, while highlighting key differences in their genomic and expression patterns.
  • The study presents integrated molecular profiles of the main mOGCT subtypes - dysgerminoma, yolk sac tumor, and immature teratoma - suggesting that their development involves various pathways and resembles pluripotent precursor cells.

Article Abstract

This review focuses on the molecular characteristics and development of rare malignant ovarian germ cell tumors (mOGCTs). We provide an overview of the genomic aberrations assessed by ploidy, cytogenetic banding, and comparative genomic hybridization. We summarize and discuss the transcriptome profiles of mRNA and microRNA (miRNA), and biomarkers (DNA methylation, gene mutation, individual protein expression) for each mOGCT histological subtype. Parallels between the origin of mOGCT and their male counterpart testicular GCT (TGCT) are discussed from the perspective of germ cell development, endocrinological influences, and pathogenesis, as is the GCT origin in patients with disorders of sex development. Integrated molecular profiles of the 3 main histological subtypes, dysgerminoma (DG), yolk sac tumor (YST), and immature teratoma (IT), are presented. DGs show genomic aberrations comparable to TGCT. In contrast, the genome profiles of YST and IT are different both from each other and from DG/TGCT. Differences between DG and YST are underlined by their miRNA/mRNA expression patterns, suggesting preferential involvement of the WNT/β-catenin and TGF-β/bone morphogenetic protein signaling pathways among YSTs. Characteristic protein expression patterns are observed in DG, YST and IT. We propose that mOGCT develop through different developmental pathways, including one that is likely shared with TGCT and involves insufficient sexual differentiation of the germ cell niche. The molecular features of the mOGCTs underline their similarity to pluripotent precursor cells (primordial germ cells, PGCs) and other stem cells. This similarity combined with the process of ovary development, explain why mOGCTs present so early in life, and with greater histological complexity, than most somatic solid tumors.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3787935PMC
http://dx.doi.org/10.1210/er.2012-1045DOI Listing

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