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Author Spotlight: Unveiling the Role of TMOD3 in Platinum Resistance and Immune Infiltration in Ovarian Cancer
Published on: August 2, 2024
Multidrug resistance affects the prognosis of primary epithelial ovarian cancer
Bo Gao1,2, Fengmei Yang3, Wei Chen2
1Department of Biochemistry and Molecular Biology, School of Basic Medical Sciences, Xi'an Jiaotong University Health Science Center, Xi'an, Shanxi 710061, P.R. China.
Abstract:
Multidrug-resistant tumor cells can tolerate different structures, functions and antidrug action mechanisms, therefore, allowing these cells to respond to various structurally unrelated mechanisms of different chemotherapy drugs and to exhibit cross-resistance. The present study aimed to investigate the role of Multi-drug resistance gene (MDR1), Placental glutathione S-transferase-P1 (GSTP1), Lung resistance protein (LRP) and Ras association domain family member 1 (RASSF1A) in primary epithelial ovarian cancer (PEOC). The mRNA (protein) expression levels of MDR1, product P glycoprotein, LRP and GSTP1 were evaluated with reverse transcription-quantitative polymerase chain reaction (RT-qPCR) and western blot analysis in all tissue samples, ovarian cancer cell line A2780 and A2780/DDP. Methylation-specific PCR (MSP) was used to detect RASSF1A gene methylation in all tissue samples. The resistance genes/proteins were either poorly or not expressed in A2780, however were highly expressed in A2780/DDP cell line. The expression of resistance genes/proteins decreased following different concentrations of zebularine-stimulated A2780/DDP. Hypermethylation and low expression of RASSF1A gene were detected in PEOC and A2780/DDP. Subsequent to being exposed to different concentrations of zebularine-stimulated A2780/DDP, the RASSF1A methylation level was decreased, while the unmethylation level was increased. The expression of RASSF1A gene/protein was gradually restored, and the gene/protein expression was enhanced with the increase in drug concentration. Multivariate logistic regression indicated that the expression level of gene LRP and GSTP1 was a risk factor for PEOC prognosis. Furthermore, the expression of LRP and GSTP1 in the negative-group survival curves was higher compared with the positive group. High expression of resistance genes may serve an important role in cancer primary resistance. Low expression caused by hyper-methylation of RASSF1A gene may serve an important role in cancer-acquired resistance in PEOC. The present study suggested that resistant gene expression may be a potential prognostic biomarker.
Insights
Multidrug resistance genes like MDR1, GSTP1, and LRP are highly expressed in ovarian cancer, indicating a role in primary resistance. RASSF1A gene hypermethylation and low expression contribute to acquired resistance, suggesting these genes are potential prognostic biomarkers.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Multidrug-resistant (MDR) tumor cells exhibit cross-resistance to various chemotherapy drugs.
- Investigating resistance mechanisms is crucial for understanding and overcoming treatment failure in cancers like primary epithelial ovarian cancer (PEOC).
Purpose of the Study:
- To investigate the role of Multi-drug resistance gene (MDR1), Placental glutathione S-transferase-P1 (GSTP1), Lung resistance protein (LRP), and Ras association domain family member 1 (RASSF1A) in PEOC.
- To evaluate the impact of drug resistance gene expression and RASSF1A methylation on PEOC prognosis.
Main Methods:
- Quantitative reverse transcription-PCR (RT-qPCR) and western blot analysis to assess mRNA and protein expression of MDR1, P-glycoprotein, LRP, and GSTP1.
- Methylation-specific PCR (MSP) to detect RASSF1A gene methylation.
- Treatment of ovarian cancer cell lines (A2780 and A2780/DDP) with zebularine to observe changes in gene expression and methylation.
Main Results:
- Resistance genes/proteins (MDR1, LRP, GSTP1) were highly expressed in the drug-resistant A2780/DDP cell line compared to the sensitive A2780 line, and their expression decreased upon zebularine treatment.
- Hypermethylation and low expression of RASSF1A were observed in PEOC and A2780/DDP cells; zebularine treatment reduced RASSF1A methylation and restored its expression.
- High expression of LRP and GSTP1 correlated with poorer PEOC prognosis, while RASSF1A hypermethylation was linked to acquired resistance.
Conclusions:
- High expression of MDR1, LRP, and GSTP1 may contribute to primary resistance in PEOC.
- RASSF1A hypermethylation and subsequent low expression appear to play a role in acquired resistance in PEOC.
- Expression levels of these resistance genes could serve as potential prognostic biomarkers for PEOC.
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