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Background: Ovarian cancer is the second leading cause of gynecologic cancer-associated deaths. Cancer stemness and chemoresistance are responsible for ovarian cancer metastasis and the poor prognosis of patients. In this study, we determined the function of N6-methyladenine (m6A) RNA methylation and prostaglandin E receptor 2 (PTGER2) in ovarian cancer progression.
Methods: The m6A RNA methylation-associated PTGER2 in ovarian cancer was identified using bioinformatics analysis. The role of PTGER2 in ovarian cancer was elucidated in cell lines and clinical samples with cellular and molecular experiments.
Results: In this investigation, bioinformatics analysis based on a public cancer database was used to elucidate the impact of m6A modification on the prognosis of patients with ovarian cancer. Moreover, PTGER2 was identified as a potential oncogene associated with the distant metastasis of ovarian cancer and poor patient prognosis. Interestingly, PTGER2 expression was experimentally shown to be enhanced by N6-adenosine-methyltransferase 70 kDa subunit (METTL3)-mediated m6A modification. In addition, PTGER2 enhanced cancer stem cell self-renewal properties, the epithelial-mesenchymal transition, and DNA damage repair, thus potentiating cell stemness, therapy resistance to carboplatin, proliferation, and metastasis of ovarian cancer. Importantly, PTGER2 expression in clinical samples was associated with distant metastasis, predicted poor patient prognosis, and independently served as a prognostic predictor in ovarian cancer.
Conclusions: Our work defines PTGER2 as an oncogene and reveals that PTGER2 is a prognostic predictor and novel therapeutic target for the management of ovarian cancer.
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http://dx.doi.org/10.31083/j.fbl2809199 | DOI Listing |
Oncogene
September 2025
Department of Obstetrics and Gynecology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Resistance to platinum-based drugs and PARP inhibitors (PARPi) is the leading cause of treatment failure in epithelial ovarian cancer (EOC). This study aimed to identify resistance mechanisms shared by both. Using bioinformatic analyses, EOC tissues, primary tumor cells and organoids, and chemoresistant cell lines, we identified lymphoid enhancer-binding factor 1 (LEF1) as a candidate, whose expression was increased in both platinum-resistant and PARPi-resistant tumors.
View Article and Find Full Text PDFBull Cancer
September 2025
Département d'oncologie médicale, centre Léon-Bérard (CLB-UNICANCER), université Claude-Bernard (UCB Lyon 1), Lyon, France. Electronic address:
Granulosa cell tumors (GCTs) are rare ovarian neoplasms, accounting for 2-5% of all ovarian cancers. Two histological types have been described: juvenile (JGCT) and adult (AGCT), the latter accounting for around 95% of the GCTs. AGCTs are mostly diagnosed at an early stage and commonly have a good prognosis.
View Article and Find Full Text PDFJ Immunother Cancer
September 2025
Cellular Immunotherapy Program, Massachusetts General Hospital, Boston, Massachusetts, USA
Background: Tumor heterogeneity and antigen escape are mechanisms of resistance to chimeric antigen receptor (CAR)-T cell therapy, especially in solid tumors. Targeting multiple antigens with a unique CAR construct could be a strategy for a better tumor control than monospecific CAR-T cells on heterogeneous models. To overcome tumor heterogeneity, we targeted mesothelin (meso) and Mucin 16 (MUC16), two antigens commonly expressed in solid tumors, using a tandem CAR design.
View Article and Find Full Text PDFAdv Med Sci
September 2025
Department of Biology, Lund University, Lund, Sweden.
Purpose: Ovarian cancer ranks as a gynecological malignancy with poor prognosis, specifically if detected late. Primary treatment includes cytoreductive surgery and adjuvant chemotherapy with curative intent. Local anesthetics (LA) administered in the perioperative period may potentially impact patient outcome by several mechanisms.
View Article and Find Full Text PDFCancer Genet
September 2025
Department of Pathology, Kangnam Sacred Heart Hospital, Hallym University College of Medicine, Seoul 07441, Republic of Korea. Electronic address:
Background: Homologous recombination deficiency (HRD)-related genetic mutations in ovarian high-grade serous carcinoma (HGSC) are known to be ethnic specific. Here, we assessed the diagnostic performance of HRD and its clinical implication in Korean HGSC patients using the SOPHiA DDM HRD Solution.
Methods: Sixty-three ovarian cancer (OC) patients were enrolled, including 53 with HGSC and 10 with other subtypes.