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Monitoring Functionality and Morphology of Vasculature Recruited by Factors Secreted by Fast-growing Tumor-generating Cells
Published on: November 23, 2014
Increased local vascular endothelial growth factor expression associated with antitumor activity of proteasome
T Stokłosa1, J Gołab, C Wójcik
1Department of Immunology, Center of Biostructure, Medical University of Warsaw, Warsaw, Poland. tstoklosa@ib.amwaw.edu.pl
Abstract:
Inhibition of the proteasome, a multicatalytic proteinase complex, is an attractive approach to cancer therapy. Here we report that a selective inhibitor of the chymotrypsin-like activity of the proteasome, PSI (N-benzyloxycarbonyl-Ile-Glu(O-t-butyl)-Ala-leucinal) may inhibit growth of solid tumors not only through apoptosis induction, but also indirectly--through inhibition of angiogenesis. Two murine tumors: colon adenocarcinoma (C-26) and Lewis lung carcinoma (3LL) were chosen to study the antitumor effect of PSI. In an in vivo model of local tumor growth, PSI exerted significant antitumor effects against C-26 colon carcinoma, but not against 3LL lung carcinoma. Retardation of tumor growth was observed in mice treated with both 10 nmoles and 100 nmoles doses of PSI and in the latter group prolongation of the survival time of tumor-bearing mice was observed. PSI inhibited angiogenesis in the C-26 growing tumors with no such effect in 3LL tumors. Unexpectedly, that activity was associated with upregulation of vascular endothelial growth factor (VEGF) at the level of mRNA expression and protein production in C-26 tumors treated with PSI. C-26 cells treated with PSI produced increased amounts of VEGF in vitro in a dose- and time-dependent manner. We demonstrated that in C-26 colon adenocarcionoma higher VEGF production may render endothelial cells susceptible to the proapoptotic activity of PSI and is associated with inhibition of tumor growth.
Insights
Proteasome inhibitor PSI demonstrated antitumor effects against colon cancer by inhibiting angiogenesis and upregulating vascular endothelial growth factor (VEGF). This suggests a novel therapeutic strategy for solid tumors.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapy
Background:
- Proteasome inhibition is a promising cancer therapy strategy.
- PSI selectively inhibits proteasome's chymotrypsin-like activity.
- PSI may inhibit tumor growth via apoptosis and anti-angiogenesis.
Purpose of the Study:
- To investigate the antitumor effects of PSI on murine colon adenocarcinoma (C-26) and Lewis lung carcinoma (3LL).
- To explore PSI's impact on tumor angiogenesis and vascular endothelial growth factor (VEGF) expression.
Main Methods:
- In vivo studies using C-26 and 3LL tumor models in mice.
- Administration of PSI at 10 and 100 nmol doses.
- Assessment of tumor growth, survival rates, angiogenesis, and VEGF mRNA and protein levels.
Main Results:
- PSI significantly inhibited C-26 tumor growth and prolonged survival in mice.
- PSI did not affect 3LL tumor growth.
- PSI inhibited angiogenesis in C-26 tumors, associated with increased VEGF mRNA and protein.
- In vitro studies showed PSI dose- and time-dependently increased VEGF production in C-26 cells.
Conclusions:
- PSI exhibits significant antitumor activity against C-26 colon adenocarcinoma.
- PSI-induced VEGF upregulation in C-26 tumors may enhance endothelial cell susceptibility to PSI's pro-apoptotic effects.
- This mechanism contributes to PSI's tumor growth inhibition and suggests a novel therapeutic approach.
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