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Trabectedin impairs invasiveness and metastasis in adrenocortical carcinoma preclinical models
Andrea Abate1, Mariangela Tamburello1, Elisa Rossini1
1Section of Pharmacology, Department of Molecular and Translational Medicine, University of Brescia, Brescia, Italy.
Abstract:
The pharmacological approach to adrenocortical carcinoma (ACC) is based on mitotane with/without etoposide, doxorubicin, and cisplatin, according to the disease stage. Considering the limited efficacy and toxicity of this treatment, new strategies are required. Trabectedin is a marine-derivated antitumoral agent that inhibits oncogenic transcription. We have already demonstrated trabectedin cytotoxic activity at sub-nanomolar concentrations in ACC cells. Here, we expanded the investigation of trabectedin effect on ACC preclinical models, evaluating whether trabectedin could affect ACC cells' invasiveness and metastasis formation. NCI-H295R, MUC-1, and TVBF-7 cell lines were used. Cell tumor xenografts in Danio rerio embryos were performed. The tumor mass areas and the number of embryos with metastasis were evaluated. The in vitro invasiveness of cells was evaluated. Effects of trabectedin of MMP2, TIMP1, and TIMP2 were evaluated at gene level qRT-PCR. MMP2 secreted in the cell medium was evaluated by Western blot and by zymography. Xenograft experiments demonstrated that trabectedin significantly reduced the tumor area in each ACC cell model and metastasis formation in embryos injected with metastasis-derived cell lines. Trabectedin treatment reduced the invasiveness of ACC cells across the matrix, which was greater at baseline for the metastatic models. In metastatic cell models, protein analysis demonstrated a reduction of MMP2 secretion and activity in the culture medium after treatment. Our results indicate that trabectedin interferes with invasiveness and metastasis processes, both dramatic features of ACC. Furthermore, these results support those previously published in providing the rationale for a clinical evaluation of the efficacy of trabectedin in ACC patients.
Insights
Trabectedin significantly reduces tumor growth and metastasis in preclinical adrenocortical carcinoma (ACC) models. This marine-derived drug also decreases cancer cell invasiveness, supporting its potential for treating ACC patients.
Area of Science:
- Oncology
- Pharmacology
- Marine Biotechnology
Background:
- Current adrenocortical carcinoma (ACC) treatments have limited efficacy and significant toxicity.
- New therapeutic strategies are urgently needed for adrenocortical carcinoma.
- Trabectedin, a marine-derived agent, shows potent cytotoxic activity against ACC cells.
Purpose of the Study:
- To evaluate trabectedin's effect on adrenocortical carcinoma (ACC) cell invasiveness and metastasis.
- To assess trabectedin's impact on preclinical ACC models, including xenografts in zebrafish embryos.
- To investigate trabectedin's influence on matrix metalloproteinase 2 (MMP2) in ACC.
Main Methods:
- Utilized NCI-H295R, MUC-1, and TVBF-7 cell lines for in vitro and in vivo studies.
- Conducted xenograft experiments in Danio rerio (zebrafish) embryos to assess tumor growth and metastasis.
- Analyzed gene expression (qRT-PCR) and protein levels/activity (Western blot, zymography) of MMP2, TIMP1, and TIMP2.
Main Results:
- Trabectedin significantly reduced tumor area in all tested ACC cell xenografts.
- Trabectedin decreased metastasis formation in zebrafish embryos and reduced in vitro cell invasiveness.
- Treatment with trabectedin led to decreased secretion and activity of MMP2 in metastatic ACC models.
Conclusions:
- Trabectedin effectively inhibits invasiveness and metastasis in preclinical adrenocortical carcinoma models.
- These findings provide a strong rationale for the clinical evaluation of trabectedin in adrenocortical carcinoma patients.
- Trabectedin represents a promising therapeutic agent for adrenocortical carcinoma, addressing limitations of current treatments.
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