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An Orthotopic Model of Serous Ovarian Cancer in Immunocompetent Mice for in vivo Tumor Imaging and Monitoring of Tumor Immune Responses
Published on: November 28, 2010
Antitumor activity of a novel homodimeric SMAC mimetic in ovarian carcinoma
Laura Gatti1, Michelandrea De Cesare, Emilio Ciusani
1Department of Experimental Oncology and Molecular Medicine, Fondazione IRCCS Istituto Nazionale dei Tumori , Via Amadeo 42, Milan 20133, Italy.
Abstract:
Treatment of ovarian carcinoma often fails to be curative because of drug resistance, and many efforts are directed to overcome tumor cell resistance by increasing apoptosis induction. The potential of second mitochondria-derived activator of caspases (SMAC) mimetics (SMACm) has appeared in preclinical studies, but novel proapoptotic agents of this class with improved pharmacological profile are needed. To identify novel treatment options for ovarian carcinoma by interfering with antiapoptotic factors, in the present study a novel homodimeric SMACm (SM83) was employed in preclinical models both in vitro and in vivo. An investigation of the structural features of dimeric SM83 as compared to a closely related reference compound indicated slight differences, likely because of the interaction between one of the terminal phenyl groups and triazole rings of SM83 with the BIR2 domain. Although SM83 per se did not inhibit cell proliferation, it displayed a synergistic effect in combination with TNF-related apoptosis inducing ligand (TRAIL) in cell sensitivity assays. Because the tumor microenvironment is a reservoir of cytokines that may act in conjunction with SMACm to affect tumor growth, the activity of the novel compound was tested in vivo in ovarian carcinoma cells subcutaneously xenografted into immunodeficient mice. A significant tumor volume inhibition was observed together with activation of caspase 3 and apoptotic cell death. A biochemical analysis of tumor necrosis factor (TNF) and TRAIL content in specimens from xenografted mice indicated that SM83 downmodulated the levels of human TNF in plasma samples and tended to upmodulate human TRAIL levels in tumors. Thus, TRAIL appears to contribute to the antitumor activity of novel SMACm SM83 in subcutaneously grown ovarian carcinoma. Overall, our results indicate that SM83 is an attractive candidate for further development.
Insights
A novel second mitochondria-derived activator of caspases mimetic (SMACm), SM83, shows promise in treating ovarian carcinoma. It synergizes with TRAIL to inhibit tumor growth and induce apoptosis, suggesting potential for drug development.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Ovarian carcinoma treatment is limited by drug resistance, necessitating novel therapeutic strategies.
- Inducing apoptosis is a key approach to overcome tumor cell resistance.
- Second mitochondria-derived activator of caspases (SMAC) mimetics (SMACm) show preclinical potential but require improved agents.
Purpose of the Study:
- To investigate a novel homodimeric SMACm, SM83, as a potential treatment for ovarian carcinoma.
- To evaluate the in vitro and in vivo efficacy of SM83, alone and in combination with TRAIL.
- To explore the underlying mechanisms of SM83's anti-tumor activity.
Main Methods:
- In vitro cell sensitivity assays using ovarian carcinoma cell lines.
- In vivo studies with subcutaneously xenografted ovarian carcinoma cells in immunodeficient mice.
- Biochemical analysis of TNF and TRAIL levels in plasma and tumor specimens.
Main Results:
- SM83 demonstrated synergistic effects with TRAIL in enhancing apoptosis induction.
- In vivo, SM83 significantly inhibited tumor volume and promoted caspase 3 activation and apoptotic cell death.
- SM83 modulated TNF and TRAIL levels, suggesting a role for these cytokines in its anti-tumor activity.
Conclusions:
- The novel SMACm, SM83, exhibits significant anti-tumor activity against ovarian carcinoma, particularly in combination with TRAIL.
- SM83 demonstrates a favorable pharmacological profile and is a promising candidate for further preclinical development.
- TRAIL appears to contribute to the efficacy of SM83 in ovarian carcinoma models.
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