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Published on: August 2, 2024
Enterolactone and trabectedin suppress epithelial ovarian cancer synergistically via upregulating THBS1
Zheng Zeng1,2,3,4, Caiji Lin1,2, Meng-Chun Zhang1,2
1Genomics Research Center, Key Laboratory of Gut Microbiota and Pharmacogenomics of Heilongjiang Province, State-Province Key Laboratory of Biomedicine-Pharmaceutics of China, College of Pharmacy, Harbin Medical University, Harbin, China.
Abstract:
Epithelial ovarian cancer (EOC) is the most common and fatal subtype of ovarian malignancies, with no effective therapeutics available. Our previous studies have demonstrated extraordinary suppressive efficacy of enterolactone (ENL) on EOC. A chemotherapeutic agent, trabectedin (Trabe), is shown to be effective on ovarian cancer, especially when combined with other therapeutics, such as pegylated liposomal doxorubicin or oxaliplatin. Thrombospondin 1 (THBS1), a kind of matrix glycoprotein, plays important roles against cancer development through inhibiting angiogenesis but whether it is involved in the suppression of EOC by ENL or Trabe remains unknown. To test combined suppressive effects of ENL and Trabe on EOC and possible involvement of THBS1 in the anticancer activities of ENL and Trabe. The EOC cell line ES-2 was transfected with overexpressed THBS1 by lentivirus vector. We employed tube formation assay to evaluate the anti-angiogenesis activity of ENL and of its combined use with Trabe after THBS1 overexpression and established drug intervention and xenograft nude mouse cancer models to assess the in vivo effects of the hypothesized synergistic suppression between the agents and the involvement of THBS1. Mouse fecal samples were collected for 16S rDNA sequencing and microbiota analysis. We detected strong inhibitory activities of ENL and Trabe against the proliferation and migration of cancer cells and observed synergistic effects between ENL and Trabe in suppressing EOC. ENL and Trabe, given either separately or in combination, could suppress the tube formation capability of human microvascular endothelial cells, and this inhibitory effect became even stronger with THBS1 overexpression. In the ENL plus Trabe combination group, the expression of tissue inhibitor of metalloproteinases 3 and cluster of differentiation 36 was both upregulated, whereas matrix metalloproteinase 9, vascular endothelial growth factor, and cluster of differentiation 47 were all decreased. With the overexpression of THBS1, the results became even more pronounced. In animal experiments, combined use of ENL and Trabe showed superior inhibitory effects to either single agent and significantly suppressed tumor growth, and the overexpression of THBS1 further enhanced the anti-cancer activities of the drug combination group. ENL and Trabe synergistically suppress EOC and THBS1 could remarkably facilitate the synergistic anticancer effects of ENL and Trabe.
Insights
Enterolactone (ENL) and trabectedin (Trabe) synergistically suppress epithelial ovarian cancer (EOC) by inhibiting angiogenesis. Thrombospondin 1 (THBS1) overexpression enhances these combined anticancer effects, offering a promising therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Epithelial ovarian cancer (EOC) is a leading cause of cancer-related deaths with limited therapeutic options.
- Enterolactone (ENL) and trabectedin (Trabe) have shown individual efficacy against EOC.
- The role of Thrombospondin 1 (THBS1) in ENL and Trabe-mediated EOC suppression is unexplored.
Purpose of the Study:
- To investigate the combined suppressive effects of ENL and Trabe on EOC.
- To determine the involvement of THBS1 in the anticancer activities of ENL and Trabe.
- To evaluate the therapeutic potential of ENL and Trabe in combination, with or without THBS1 modulation.
Main Methods:
- EOC cell line (ES-2) transfected with overexpressed THBS1.
- In vitro tube formation assays to assess anti-angiogenesis.
- In vivo xenograft nude mouse models for drug intervention studies.
- 16S rDNA sequencing for microbiota analysis.
Main Results:
- ENL and Trabe exhibited synergistic inhibition of EOC cell proliferation and migration.
- Combined ENL and Trabe suppressed angiogenesis, an effect amplified by THBS1 overexpression.
- Upregulation of TIMP3 and CD36, and downregulation of MMP9, VEGF, and CD47 observed.
- In vivo studies confirmed superior tumor growth inhibition with the drug combination, further enhanced by THBS1.
Conclusions:
- ENL and Trabe demonstrate synergistic anticancer activity against EOC.
- THBS1 plays a crucial role in facilitating the combined therapeutic effects of ENL and Trabe.
- This combination therapy, potentially modulated by THBS1, represents a promising strategy for EOC treatment.
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