Abstract 967P
Background
HCC is a primary malignant liver disease usually presenting with single or multiple nodules developing from underlying chronic hepatitis or cirrhosis. The Polycomb group (PcG) proteins and DNA methylation systems are epigenetic systems involved in hereditary gene activation inhibition. These epigenetic systems are involved in regulating gene expression and are closely related to the development of HCC. EZH2 is a functional enzymatic component of Polycomb Repressive Complex 2 (PRC2). The inhibition of tumor suppressor genes by EZH2 has been observed, and impeding the activity of EZH2 has been shown to decelerate tumor growth. According to some studies, EZH2 expression is associated with aggressive tumor behavior, a poor prognosis, and a poor response to treatment. The goal was to determine if EZH2 expression levels in HCC are of prognostic significance.
Methods
We picked 103 patients who had pathological diagnoses between 2011-2019. Retrospective screenings were done. EZH2 was checked with immunohistochemistry. Survival and treatment responses were analyzed statistically.
Results
89 (86.4%) patients were male, and 14 (13.6%) were female. The median age of the patients was 68 (min19- max 89). 1% and above was considered positive. Immunohistochemically, EZH2 showed positive staining in 45 (43.7%) patients, and no staining was observed in 58 (56.3%) patients. The patients' median progression-free survival (mPFS) in the positive group was 5 months, while the mPFS of the negative group was 9 months (p=0.012). Based on comprehensive survival analysis, 35 of 45 patients in the positive group had died, and 10 were still alive. In the negative group, 36 patients died, and 22 survived. In the positive group, the median overall survival (mOS) was 8 months; in the negative group, it was 27 months (p=0,007). In our study, EZH2 had prognostic significance for progression-free and overall survival. Furthermore, an increase in EZH2 expression level was associated with a poor prognosis.
Conclusions
We established the prognostic significance of EZH2 for HCC. These findings could lead to new therapeutic strategies (e.g. tazemetostat) for treating and managing HCC. A greater understanding of EZH2's role in HCC requires further research.
Clinical trial identification
Editorial acknowledgement
TRANSLATE with x
English
Legal entity responsible for the study
The authors.
Funding
Cukurova University Scientific Research Project Unit.
Disclosure
All authors have declared no conflicts of interest.
Resources from the same session
842P - Multicenter real-world study of newly diagnosed advanced-stage extranodal natural killer/T cell lymphoma (ENKTL): Proposal for intensive therapy
Presenter: Yu-Ce Wei
Session: Poster session 18
844P - Progression -free survival prediction of multiple myeloma patients in five European countries using machine learning models
Presenter: Maria Luisa Pleguezuelo Witte
Session: Poster session 18
845P - A machine learning based clinical platform for cancer subtyping and data integration in hematological malignancies
Presenter: Michelle Tang
Session: Poster session 18
846P - Artificial intelligence-driven identification of onco-hematology patients who may develop severe COVID-19
Presenter: Souad Assaad
Session: Poster session 18
847P - Fatal infections among leukemia patients
Presenter: Huijie Zhou
Session: Poster session 18
848P - Mortality after rasburicase vs allopurinol anti-hyperuricemia monotherapy in patients with liquid tumors
Presenter: Mitchell Cairo
Session: Poster session 18
849P - Long non-coding RNA signatures and their role in the progression of childhood T cell acute lymphoblastic leukemia
Presenter: Pankaj Sharma
Session: Poster session 18
850P - A zebrafish model of MYC-driven acute myeloid leukemia reveals that neutrophil resistance to oncogenic transformation depends on their ability to promote PP2A-mediated MYC proteasomal degradation
Presenter: Anna Maria Luciano
Session: Poster session 18
851P - Characterization of a zebrafish model of MYC-driven acute myeloid leukemia
Presenter: Anna Maria Luciano
Session: Poster session 18
852P - c-MAF-driven metabolic reprogramming mediates H3K27 hyperacetylation to regulate super enhancer-associated genes
Presenter: Phyllis SY Chong
Session: Poster session 18