Skip to main navigation Skip to search Skip to main content

The Clinical and Genetic Landscape of Hereditary Cancer: Experience from a Single Clinical Diagnostic Laboratory

  • Nikolaos Tsoulos
  • , Konstantinos Agiannitopoulos*
  • , Kevisa Potska
  • , Anastasia Katseli
  • , Christina Ntogka
  • , Georgia Pepe
  • , Dimitra Bouzarelou
  • , Athanasios Papathanasiou
  • , Dimitrios Grigoriadis
  • , Georgios N. Tsaousis
  • , Helen Gogas
  • , Theodore Troupis
  • , Konstantinos Papazisis
  • , Ioannis Natsiopoulos
  • , Vassileios Venizelos
  • , Kyriakos Amarantidis
  • , Stylianos Giassas
  • , Christos Papadimitriou
  • , Elena Fountzilas
  • , Maroulio Stathoulopoulou
  • Anna Koumarianou, Grigorios Xepapadakis, Alexandru Blidaru, Daniela Zob, Oana Voinea, Mustafa Özdoğan, Mahmut Çerkez Ergören, Alinta Hegmane, Eirini Papadopoulou, George Nasioulas, Christos Markopoulos
*Corresponding author for this work
  • Genekor Medical S.A
  • National and Kapodistrian University of Athens
  • Euromedica General Clinic
  • Interbalkan Medical Center of Thessaloniki
  • Metropolitan Hospital, Athens
  • Democritus University of Thrace
  • IASO
  • St. Lukes's Clinic
  • Attikon University Hospital
  • Saint Constantin Hospital
  • Oncology Institute Professor Doctor Alexandru Trestioreanu
  • Carol Davila University of Medicine and Pharmacy
  • Memorial Antalya Hospital
  • Near East University
  • Riga East University Hospital

Research output: Contribution to journalArticlepeer-review

8 Citations (Scopus)

Abstract

Background/Aim: The application of next-generation sequencing (NGS) technology in the genetic investigation of hereditary cancer is important for clinical surveillance, therapeutic approach, and reducing the risk of developing new malignancies. The aim of the study was to explore genetic predisposition in individuals referred for hereditary cancer. Materials and Methods: A total of 8,261 individuals were referred for multigene genetic testing, during the period 2020-2023, in the laboratory, and underwent multigene genetic testing using NGS. Among the examined individuals, 56.17% were diagnosed with breast cancer, 6.77% with ovarian cancer, 2.88% with colorectal cancer, 1.91% with prostate cancer, 6.43% were healthy with a significant family history of cancer, while 3.06% had a different type of cancer and 0.21% had not provided any information. Additionally, in 85 women with breast cancer we performed whole exome sequencing analysis. Results: 20% of the examined individuals carried a pathogenic variant. Specifically, 54.8% of the patients had a pathogenic variant in a clinically significant gene (BRCA1, BRCA2, PALB2, RAD51C, PMS2, CDKN2A, MLH1, MSH2, TP53, MSH6, APC, RAD51D, PTEN, RET, CDH1, MEN1, and VHL). Among the different types of pathogenic variants detected, a significant percentage (6.52%) represented copy number variation (CNV). With WES analysis, the following findings were detected: CTC1: c.880C>T, p.(Gln294*); MLH3: c.405del, p.(Asp136Metfs*2), PPM1D: c.1426_1430del, p.(Glu476Leufs*3), and SDHB: c.395A>G, p.(His132Arg). Conclusion: Comprehensive multigene genetic testing is necessary for appropriate clinical management of pathogenic variants’ carriers. Additionally, the information obtained is important for determining the risk of malignancy development in family members of the examined individuals.

Original languageEnglish
Pages (from-to)448-463
Number of pages16
JournalCancer Genomics and Proteomics
Volume21
Issue number5
DOIs
Publication statusPublished - Sept 2024
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • Hereditary cancer
  • next generation sequencing
  • whole exome sequencing

Fingerprint

Dive into the research topics of 'The Clinical and Genetic Landscape of Hereditary Cancer: Experience from a Single Clinical Diagnostic Laboratory'. Together they form a unique fingerprint.

Cite this