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Noninvasive Monitoring of Lesion Size in a Heterologous Mouse Model of Endometriosis
Published on: February 26, 2019
Targeting dopamine receptor D2 as a novel therapeutic strategy in endometrial cancer
Stuart R Pierce1, Ziwei Fang1,2, Yajie Yin1
1Division of Gynecologic Oncology, Department of Obstetrics and Gynecology, University of North Carolina at Chapel Hill, Chapel Hill, NC, 27599, USA.
Background:
ONC201 is a dopamine receptor D2 (DRD2) antagonist that inhibits tumor growth in preclinical models through ClpP activation to induce integrated stress response pathway and mitochondrial events related to inhibition of cell growth, which is being explored in clinical trials for solid tumors and hematological malignancies. In this study, we investigated the anti-tumorigenic effect of ONC201 in endometrial cancer cell lines and a genetically engineered mouse model of endometrial cancer.
Methods:
Cell proliferation was assessed by MTT and colony formation assays. Cell cycle and apoptosis were evaluated by Cellometer. Invasion capacity was tested using adhesion, transwell and wound healing assays. LKB1fl/flp53fl/fl mouse model of endometrial cancer were fed a control low fat diet versus a high fat diet to mimic diet-induced obesity. Following tumor onset, mice were treated with placebo or ONC201. Metabolomics and lipidomics were used to identify the obesity-dependent effects of ONC201 in the mouse endometrial tumors. DRD2 expression was analyzed by immunohistochemistry in human endometrioid and serous carcinoma specimens. DRD2 mRNA expression from the Cancer Genome Atlas (TCGA) database was compared between the four molecular subtypes of endometrial cancer.
Results:
Increasing DRD2 expression in endometrial cancer was significantly associated with grade, serous histology and stage, as well as worse progression free survival and overall survival. Higher expression of DRD2 mRNA was found for the Copy Number High (CNH) subtype when compared to the other subtypes. ONC201 inhibited cell proliferation, induced cell cycle G1 arrest, caused cellular stress and apoptosis and reduced invasion in endometrial cancer cells. Diet-induced obesity promoted endometrial tumor growth while ONC201 exhibited anti-tumorigenic efficacy in the obese and lean LKB1fl/fl/p53fl/fl mice. Metabolomic analysis demonstrated that ONC201 reversed the obesity-driven upregulation of lipid biosynthesis and reduced protein biosynthesis in obese and lean mice.
Conclusion:
ONC201 has anti-tumorigenic effects in endometrial cancer cells and a transgenic mouse model of endometrial cancer, and DRD2 expression was documented in both human serous and endometrioid endometrial cancer. These studies support DRD2 antagonism via ONC201 as a promising therapeutic strategy for endometrial cancer that has already demonstrated pharmacodynamic activity and clinical benefit in both serous and endometrioid endometrial cancer patients.
Insights
ONC201, a dopamine receptor D2 (DRD2) antagonist, demonstrated anti-tumorigenic effects in endometrial cancer models. This drug shows promise as a therapeutic strategy, particularly in obesity-associated cancers.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- ONC201 is a dopamine receptor D2 (DRD2) antagonist investigated for cancer therapy.
- It inhibits tumor growth via ClpP activation, inducing integrated stress response and mitochondrial events.
- ONC201 is being explored in clinical trials for various malignancies.
Purpose of the Study:
- To investigate the anti-tumorigenic effect of ONC201 in endometrial cancer.
- To assess ONC201 efficacy in a genetically engineered mouse model of endometrial cancer.
- To explore the role of DRD2 expression and obesity in endometrial cancer response to ONC201.
Main Methods:
- Assessed cell proliferation, cell cycle, apoptosis, and invasion in endometrial cancer cell lines.
- Utilized a diet-induced obesity mouse model (LKB1fl/flp53fl/fl) treated with ONC201 or placebo.
- Conducted metabolomic and lipidomic analyses, and analyzed DRD2 expression in human endometrial cancer specimens and TCGA data.
Main Results:
- Increased DRD2 expression correlated with higher grade, serous histology, advanced stage, and poorer survival in endometrial cancer.
- ONC201 inhibited proliferation, induced G1 arrest, apoptosis, and reduced invasion in cancer cells.
- ONC201 demonstrated anti-tumorigenic efficacy in both obese and lean mice, reversing obesity-driven lipid and protein biosynthesis alterations.
Conclusions:
- ONC201 exhibits significant anti-tumorigenic effects in endometrial cancer cells and a preclinical mouse model.
- DRD2 expression is present in human endometrioid and serous endometrial cancers, supporting DRD2 antagonism as a therapeutic strategy.
- ONC201 represents a promising therapeutic strategy for endometrial cancer, with demonstrated clinical benefit.
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