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The development of radioresistant oral squamous carcinoma cell lines and identification of radiotherapy-related biomarkers
Huang, Junhong; Liu, Rong; Meng, Qingzhe; Li, Huan; Li, Yahui; Yang, Zihui; Wang, Yan; Wanyan, Chaojie; Yang, Xinjie; Wei, Jianhua.
Affiliation
  • Huang, Junhong; Northwest University. College of Life Science. Xi’an. China
  • Liu, Rong; Northwest University. College of Life Science. Xi’an. China
  • Meng, Qingzhe; Fourth Military Medical University. School of Stomatology. Department of Oral and Maxillofacial Surgery. Xi’an. China
  • Li, Huan; Fourth Military Medical University. School of Stomatology. Department of Oral and Maxillofacial Surgery. Xi’an. China
  • Li, Yahui; Fourth Military Medical University. School of Stomatology. Department of Oral and Maxillofacial Surgery. Xi’an. China
  • Yang, Zihui; Fourth Military Medical University. School of Stomatology. Department of Oral and Maxillofacial Surgery. Xi’an. China
  • Wang, Yan; Fourth Military Medical University. School of Stomatology. Department of Oral and Maxillofacial Surgery. Xi’an. China
  • Wanyan, Chaojie; Fourth Military Medical University. School of Stomatology. Department of Oral and Maxillofacial Surgery. Xi’an. China
  • Yang, Xinjie; Fourth Military Medical University. School of Stomatology. Department of Oral and Maxillofacial Surgery. Xi’an. China
  • Wei, Jianhua; Fourth Military Medical University. School of Stomatology. Department of Oral and Maxillofacial Surgery. Xi’an. China
Clin. transl. oncol. (Print) ; 25(10): 3006-3020, oct. 2023. ilus
Article in En | IBECS | ID: ibc-225081
Responsible library: ES1.1
Localization: ES15.1 - BNCS
ABSTRACT
Background In the treatment of oral squamous cell carcinoma (OSCC), radiation resistance remains an important obstacle to patient outcomes. Progress in understanding the molecular mechanisms of radioresistance has been limited by research models that do not fully recapitulate the biological features of solid tumors. In this study, we aimed to develop novel in vitro models to investigate the underlying basis of radioresistance in OSCC and to identify novel biomarkers. Methods Parental OSCC cells (SCC9 and CAL27) were repeatedly exposed to ionizing radiation to develop isogenic radioresistant cell lines. We characterized the phenotypic differences between the parental and radioresistant cell lines. RNA sequencing was used to identify differentially expressed genes (DEGs), and bioinformatics analysis identified candidate molecules that may be related to OSCC radiotherapy. Results Two isogenic radioresistant cell lines for OSCC were successfully established. The radioresistant cells displayed a radioresistant phenotype when compared to the parental cells. Two hundred and sixty DEGs were co-expressed in SCC9-RR and CAL27-RR, and thirty-eight DEGs were upregulated or downregulated in both cell lines. The associations between the overall survival (OS) of OSCC patients and the identified genes were analyzed using data from the Cancer Genome Atlas (TCGA) database. A total of six candidate genes (KCNJ2, CLEC18C, P3H3, PIK3R3, SERPINE1, and TMC8) were closely associated with prognosis. Conclusion This study demonstrated the utility of constructing isogenic cell models to investigate the molecular changes associated with radioresistance. Six genes were identified based on the data from the radioresistant cells that may be potential targets in the treatment of OSCC (AU)
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Collection: 06-national / ES Database: IBECS Main subject: Mouth Neoplasms / Carcinoma, Squamous Cell Limits: Humans Language: En Journal: Clin. transl. oncol. (Print) Year: 2023 Document type: Article
Search on Google
Collection: 06-national / ES Database: IBECS Main subject: Mouth Neoplasms / Carcinoma, Squamous Cell Limits: Humans Language: En Journal: Clin. transl. oncol. (Print) Year: 2023 Document type: Article