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In vivo Imaging and Therapeutic Treatments in an Orthotopic Mouse Model of Ovarian Cancer
Published on: August 17, 2010
In vivo restoration of RhoB expression leads to ovarian tumor regression
B Couderc1, A Pradines, A Rafii
1INSERM U563, CPTP, Toulouse, France. couderc.bettina@claudiusregaud.fr
Abstract:
Ovarian cancers are very aggressive cancers most often diagnosed when metastasis has already occurred in the entire peritoneal cavity. Ovarian adenocarcinoma cells present an undetectable level of RhoB GTPase. Using preclinical ovarian cancer models, we aimed to evaluate the potential use of RhoB cDNA as a tumor suppressor gene in gene therapy. RhoB restoration in vitro, through recombinant adenovirus transduction, resulted in the apoptosis of endogenous RhoB protein low-expressing cell lines (OVCAR-3 and IGROV-1) through the activation of the intrinsic apoptotic caspase cascade. We showed that a single injection of 10(8) p.f.u. of adenoviral vector encoding a reporter gene into the peritoneal cavity of ovarian tumor bearing mice can induce the gene modification of a large quantity of cells throughout the cavity. We thereby tested the effect of AdRhoB injections to treat ovarian cancer-bearing mice. The ectopic expression of RhoB, following its introduction via viral transduction into nude mice in vivo, was highly effective in suppressing tumor growth of ovarian cancer xenografts. Therapeutic agents designed to correct defects of RhoB at the molecular level may thereby provide innovative treatment options for patients not responding to standard therapies.
Insights
Restoring RhoB GTPase in ovarian cancer cells via gene therapy induced apoptosis and suppressed tumor growth in preclinical models. This suggests RhoB cDNA holds potential as a novel therapeutic target for aggressive ovarian cancers.
Area of Science:
- Oncology
- Molecular Biology
- Gene Therapy
Background:
- Ovarian cancers are aggressive, often diagnosed at advanced metastatic stages.
- Ovarian adenocarcinoma cells exhibit undetectable levels of RhoB GTPase.
Purpose of the Study:
- To evaluate RhoB cDNA as a tumor suppressor gene for ovarian cancer gene therapy.
- To investigate RhoB restoration's therapeutic potential in preclinical ovarian cancer models.
Main Methods:
- Adenovirus-mediated RhoB cDNA delivery for in vitro and in vivo gene restoration.
- Assessment of apoptosis induction via caspase cascade activation.
- Evaluation of tumor growth suppression in ovarian cancer xenograft models.
Main Results:
- In vitro RhoB restoration induced apoptosis in low RhoB-expressing ovarian cancer cell lines (OVCAR-3, IGROV-1).
- Adenoviral vector injection into the peritoneal cavity effectively modified a large number of cells.
- In vivo ectopic RhoB expression significantly suppressed ovarian cancer xenograft tumor growth.
Conclusions:
- RhoB restoration via gene therapy demonstrates significant anti-tumor efficacy in preclinical ovarian cancer models.
- Targeting RhoB defects offers a potential innovative therapeutic strategy for treatment-resistant ovarian cancers.
