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Synergistic antiangiogenic effects of stathmin inhibition and taxol exposure
Sucharita J Mistry1, Alexander Bank, George F Atweh
1Division of Hematology-Oncology, Department of Medicine, Box 1079, Mount Sinai School of Medicine, One Gustave L. Levy Place, New York, NY 10029, USA. sucharita.mistry@mssm.edu
Abstract:
Stathmin is one of the key regulators of the microtubule cytoskeleton and the mitotic spindle in eukaryotic cells. It is expressed at high levels in a wide variety of human cancers and may provide an attractive target for cancer therapy. We had previously shown that stathmin inhibition results in the abrogation of the malignant phenotype. The microtubule-interfering drug, taxol, has both antitumorigenic and antiangiogenic properties. We had also shown that the antitumor activities of taxol and stathmin inhibition are synergistic. We hypothesized that taxol and stathmin inhibition may also have synergistic antiangiogenic activities. A replication-deficient bicistronic adenoviral vector that coexpresses green fluorescent protein and an anti-stathmin ribozyme was used to target stathmin mRNA. Exposure of endothelial cells to anti-stathmin adenovirus alone resulted in a dose-dependent inhibition of proliferation, migration, and differentiation into capillary-like structures. This inhibition was markedly enhanced by exposure of transduced endothelial cells to very low concentrations of taxol, which resulted in a virtually complete loss of proliferation, migration, and differentiation of endothelial cells. In contrast, exposure of nontransduced endothelial cells to taxol alone resulted in a modest inhibition of proliferation, migration, and differentiation. Our detailed analysis showed that the antiangiogenic effects of the combination of stathmin inhibition and taxol exposure are synergistic. Our studies also showed that the mechanism of this synergistic interaction is likely to be mediated through the stabilization of microtubules. Thus, this novel combination may provide an attractive therapeutic strategy that combines a synergistic antitumor activity with a synergistic antiangiogenic activity.
Insights
Combining stathmin inhibition with taxol demonstrates synergistic antiangiogenic effects. This approach enhances the suppression of endothelial cell proliferation, migration, and differentiation, offering a promising cancer therapy strategy.
Area of Science:
- Cell Biology
- Cancer Research
- Molecular Medicine
Background:
- Stathmin regulates microtubule dynamics and is overexpressed in many cancers.
- Stathmin inhibition abrogates the malignant phenotype.
- Taxol exhibits antitumor and antiangiogenic properties.
Purpose of the Study:
- To investigate the synergistic antiangiogenic activities of combining stathmin inhibition and taxol.
- To explore the therapeutic potential of this combination strategy.
Main Methods:
- Utilized a replication-deficient adenoviral vector for stathmin mRNA targeting.
- Exposed endothelial cells to anti-stathmin adenovirus and varying concentrations of taxol.
- Assessed endothelial cell proliferation, migration, and differentiation into capillary-like structures.
Main Results:
- Stathmin inhibition alone dose-dependently inhibited endothelial cell functions.
- The combination of stathmin inhibition and low-dose taxol showed synergistic antiangiogenic effects.
- Taxol alone had a modest inhibitory effect on endothelial cells.
Conclusions:
- The combination of stathmin inhibition and taxol exhibits synergistic antiangiogenic activity.
- Microtubule stabilization likely mediates this synergistic interaction.
- This combination represents a novel therapeutic strategy with combined antitumor and antiangiogenic benefits.
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