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The Identification of Small Molecule Inhibitors That Reduce Invasion and Metastasis of Aggressive Cancers
Arjanneke F van de Merbel1, Onno van Hooij2, Geertje van der Horst1
1Department of Urology, Leiden University Medical Center, 2333 ZA Leiden, The Netherlands.
Abstract:
Transformed epithelial cells can activate programs of epithelial plasticity and switch from a sessile, epithelial phenotype to a motile, mesenchymal phenotype. This process is linked to the acquisition of an invasive phenotype and the formation of distant metastases. The development of compounds that block the acquisition of an invasive phenotype or revert the invasive mesenchymal phenotype into a more differentiated epithelial phenotype represent a promising anticancer strategy. In a high-throughput assay based on E-cadherin (re)induction and the inhibition of tumor cell invasion, 44,475 low molecular weight (LMW) compounds were screened. The screening resulted in the identification of candidate compounds from the PROAM02 class. Selected LMW compounds activated E-cadherin promoter activity and inhibited cancer cell invasion in multiple metastatic human cancer cell lines. The intraperitoneal administration of selected LMW compounds reduced the tumor burden in human prostate and breast cancer in vivo mouse models. Moreover, selected LMW compounds decreased the intra-bone growth of xenografted human prostate cancer cells. This study describes the identification of the PROAM02 class of small molecules that can be exploited to reduce cancer cell invasion and metastases. Further clinical evaluation of selected candidate inhibitors is warranted to address their safety, bioavailability and antitumor efficacy in the management of patients with aggressive cancers.
Insights
Researchers identified PROAM02 small molecules that inhibit cancer cell invasion and metastasis. These compounds show promise in reducing tumor burden and intra-bone growth in preclinical models, warranting further clinical investigation.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Epithelial plasticity enables cancer cells to become invasive and metastasize.
- Targeting this plasticity offers a potential anticancer strategy.
- Reverting mesenchymal phenotype to epithelial is a key therapeutic goal.
Purpose of the Study:
- To screen for compounds that inhibit cancer cell invasion and induce epithelial characteristics.
- To identify novel small molecules targeting epithelial-mesenchymal transition.
- To evaluate the efficacy of identified compounds in preclinical cancer models.
Main Methods:
- High-throughput screening of 44,475 low molecular weight (LMW) compounds.
- Assay based on E-cadherin (re)induction and tumor cell invasion inhibition.
- In vivo studies using prostate and breast cancer mouse models.
Main Results:
- Identification of PROAM02 class compounds with E-cadherin promoter activity.
- Inhibition of cancer cell invasion in multiple metastatic human cancer cell lines.
- Reduction of tumor burden and intra-bone cancer growth in vivo.
Conclusions:
- PROAM02 small molecules effectively reduce cancer cell invasion and metastasis.
- These compounds demonstrate therapeutic potential in preclinical models.
- Further clinical evaluation is necessary to assess safety and efficacy.
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