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Genome sequencing reveals molecular subgroups in oral epithelial dysplasia
MÁRQUEZ, Agustín; MUJICA, Isidora; JORDAN, Natalia; BAEZ, Pablo; TARQUINIO, Sandra; NUNES, Jean; ADORNO, Daniela; MARTÍNEZ, Benjamín; MORALES-PISON, Sebastian; FERNANDEZ-RAMIRES, Ricardo.
Affiliation
  • MÁRQUEZ, Agustín; Universidad Autónoma. Faculty of Dentistry. Santiago. CL
  • MUJICA, Isidora; Universidad de Los Andes. Faculty of Dentistry. Santiago. CL
  • JORDAN, Natalia; Pontificia Universidad Católica de Chile. Faculty of Science. Santiago. CL
  • BAEZ, Pablo; Universidad de Chile. Faculty of Science. Santiago. CL
  • TARQUINIO, Sandra; Universidade Federal de Pelotas. School of Dentistry. Pelotas. BR
  • NUNES, Jean; Universidade Federal da Bahia. School of Dentistry. Salvador. BR
  • ADORNO, Daniela; Universidad de Chile. Faculty of Dentistry. Santiago. CL
  • MARTÍNEZ, Benjamín; Universidad Mayor. Faculty of Dentistry,. Santiago. CL
  • MORALES-PISON, Sebastian; Universidad Mayor. Precision Oncology Center. Santiago. CL
  • FERNANDEZ-RAMIRES, Ricardo; Universidad Mayor. Faculty of Medicine and Heatlh Sciences. Santiago. CL
Braz. oral res. (Online) ; 37: e063, 2023. tab, graf
Article in English | LILACS-Express | LILACS, BBO - Dentistry | ID: biblio-1439735
Responsible library: BR1.1
ABSTRACT
Abstract This study aimed to analyze the molecular characteristics of oral epithelial dysplasia (OED), highlighting the pathways and variants of genes that are frequently mutated in oral squamous cell carcinoma (OSCC) and other cancers. Ten archival OED cases were retrieved for retrospective clinicopathological analysis and exome sequencing. Comparative genomic analysis was performed between high-grade dysplasia (HGD) and low-grade dysplasia (LGD), focusing on 57 well-known cancer genes, of which 10 were previously described as the most mutated in OSCC. HGD cases had significantly more variants; however, a similar mutational landscape to OSCC was observed in both groups. CASP8+FAT1/HRAS, TP53, and miscellaneous molecular signatures were also present. FAT1 is the gene that is most affected by pathogenic variants. Hierarchical divisive clustering showed division between the two groups "HGD-like cluster" with 4HGD and 2LGD and "LGD-like cluster" with 4 LGD. MLL4 pathogenic variants were exclusively in the "LGD-like cluster". TP53 was affected in one case of HGD; however, its pathway was usually altered. We describe new insights into the genetic basis of epithelial malignant transformation by genomic analysis, highlighting those associated with FAT1 and TP53. Some LGDs presented a similar mutational landscape to HGD after cluster analysis. Perhaps molecular alterations have not yet been reflected in histomorphology. The relative risk of malignant transformation in this molecular subgroup should be addressed in future studies.


Full text: Available Collection: International databases Database: BBO - Dentistry / LILACS Type of study: Etiology study Language: English Journal: Braz. oral res. (Online) Journal subject: Dentistry Year: 2023 Document type: Article / Project document Affiliation country: Brazil / Chile Institution/Affiliation country: Pontificia Universidad Católica de Chile/CL / Universidad Autónoma/CL / Universidad Mayor/CL / Universidad de Chile/CL / Universidad de Los Andes/CL / Universidade Federal da Bahia/BR / Universidade Federal de Pelotas/BR

Full text: Available Collection: International databases Database: BBO - Dentistry / LILACS Type of study: Etiology study Language: English Journal: Braz. oral res. (Online) Journal subject: Dentistry Year: 2023 Document type: Article / Project document Affiliation country: Brazil / Chile Institution/Affiliation country: Pontificia Universidad Católica de Chile/CL / Universidad Autónoma/CL / Universidad Mayor/CL / Universidad de Chile/CL / Universidad de Los Andes/CL / Universidade Federal da Bahia/BR / Universidade Federal de Pelotas/BR
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