Host and direct antitumor effects and profound reduction in tumor metastasis with selective EP4 receptor antagonism
Li Yang1, Yuhui Huang, Rut Porta
1Department of Medicine, Vanderbilt University School of Medicine, Nashville, Tennessee, USA. li.yang@vanderbilt.edu
Abstract:
Prostaglandin E(2) (PGE(2)), one of the major metabolites of cyclooxygenase-2, has been implicated in tumorigenesis and tumor progression in several human cancers, including colorectal and lung. Here, we show that one of the PGE(2) receptors, the EP4 receptor, plays an important role in metastasis in both of these tumor types. Using i.v. injected Lewis lung carcinoma (3LL), we found that tumor metastasis to lung was significantly reduced when mice were treated with a specific EP4 antagonist ONO-AE3-208 or when EP4 receptor expression was knocked down in the tumor cells using RNA interference technology. Host EP4 receptors also contributed to tumor metastasis and tumor growth with decreased metastasis and tumor growth observed in EP4 receptor knockout animals. In vitro tumor cell adhesion, motility, invasion, colony formation, and Akt phosphorylation were all significantly inhibited when 3LL cells were treated with the EP4 receptor-specific antagonist. When the cells were treated with an EP4-specific agonist (AE1-734), we observed a worsening of these same features in vitro. Treatment with ONO-AE3-208 also profoundly decreased liver metastases after intrasplenic injection of MC26 colon cancer cells. Our data show that selective antagonism of EP4 receptor signaling results in a profound reduction in lung and colon cancer metastasis. Selective antagonism of the EP4 receptor may thus represent a novel therapeutic approach for the treatment of cancer and especially its propensity to metastasize.
Insights
Selective antagonism of the EP4 receptor significantly reduces lung and colon cancer metastasis. This finding suggests EP4 receptor antagonism as a potential novel therapeutic strategy for treating metastatic cancer.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Prostaglandin E(2) (PGE(2)) is linked to cancer development and progression in various human cancers.
- The EP4 receptor, a key receptor for PGE(2), is implicated in tumor metastasis.
Purpose of the Study:
- To investigate the role of the EP4 receptor in lung and colon cancer metastasis.
- To evaluate the therapeutic potential of EP4 receptor antagonism in reducing cancer metastasis.
Main Methods:
- Utilized Lewis lung carcinoma (3LL) and MC26 colon cancer models in mice.
- Administered a specific EP4 antagonist (ONO-AE3-208) and employed RNA interference for EP4 receptor knockdown.
- Assessed tumor metastasis, tumor growth, in vitro cell adhesion, motility, invasion, colony formation, and Akt phosphorylation.
Main Results:
- EP4 receptor antagonism and knockdown significantly reduced lung metastasis in 3LL models.
- EP4 receptor knockout mice exhibited decreased tumor metastasis and growth.
- In vitro studies showed EP4 antagonism inhibited cancer cell adhesion, motility, invasion, colony formation, and Akt phosphorylation.
- EP4 receptor agonism exacerbated these metastatic features.
- EP4 antagonism reduced liver metastases in MC26 colon cancer models.
Conclusions:
- EP4 receptor signaling plays a critical role in lung and colon cancer metastasis.
- Selective antagonism of the EP4 receptor effectively reduces cancer metastasis.
- EP4 receptor antagonism represents a promising novel therapeutic approach for managing metastatic cancer.
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