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An Orthotopic Bladder Tumor Model and the Evaluation of Intravesical saRNA Treatment
Published on: July 28, 2012
Exisulind, a novel proapoptotic drug, inhibits rat urinary bladder tumorigenesis
G A Piazza1, W J Thompson, R Pamukcu
1Cell Pathways, Inc., 702 Electronic Drive, Horsham, PA 19044, USA.
Abstract:
Exisulind (Aptosyn) is a novel antineoplastic drug being developed for the prevention and treatment of precancerous and malignant diseases. In colon tumor cells, the drug induces apoptosis by a mechanism involving cyclic GMP (cGMP) phosphodiesterase inhibition, sustained elevation of cGMP, and protein kinase G activation. We studied the effect of exisulind on bladder tumorigenesis induced in rats by the carcinogen, N-butyl-N-(4-hydroxybutyl) nitrosamine. Exisulind at doses of 800, 1000, and 1200 mg/kg (diet) inhibited tumor multiplicity by 36, 47, and 64% and tumor incidence by 31, 38, and 61%, respectively. Experiments on the human bladder tumor cell line, HT1376, showed that exisulind inhibited growth with a GI(50) of 118 microM, suggesting that the antineoplastic activity of the drug in vivo involved a direct effect on neoplastic urothelium. Exisulind also induced apoptosis as determined by DNA fragmentation, caspase activation, and morphology. Analysis of phosphodiesterase (PDE) isozymes in HT1376 cells showed PDE5 and PDE4 isozymes that were inhibited by exisulind with IC(50)s of 112 and 116 microM, respectively. Inhibition of PDE5 appears to be pharmacologically relevant, because treatment of HT1376 cells increased cGMP and activated protein kinase G at doses that induce apoptosis, whereas cyclic AMP levels were not changed. Immunocytochemistry showed that PDE5 was localized in discrete perinuclear foci in HT1376 cells. Immunohistochemistry showed that PDE5 was overexpressed in human squamous and transitional cell carcinomas compared with normal urothelium. The data lead us to conclude that future clinical trials of exisulind for human bladder cancer treatment and/or prevention should be considered and suggest a mechanism of action involving cGMP-mediated apoptosis induction.
Insights
Exisulind effectively inhibits bladder cancer in rats by inducing apoptosis through cyclic GMP (cGMP) pathways. This novel antineoplastic drug shows promise for human bladder cancer treatment and prevention.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Exisulind (Aptosyn) is an antineoplastic drug targeting precancerous and malignant diseases.
- In colon cancer, it induces apoptosis via cyclic GMP (cGMP) phosphodiesterase inhibition, cGMP elevation, and protein kinase G activation.
Purpose of the Study:
- To investigate exisulind's effect on bladder tumorigenesis induced by N-butyl-N-(4-hydroxybutyl) nitrosamine in rats.
- To explore exisulind's mechanism of action on human bladder tumor cells (HT1376).
Main Methods:
- Rats were administered exisulind in their diet at varying doses to assess tumor inhibition.
- Human bladder tumor cell line HT1376 was used to evaluate growth inhibition, apoptosis induction, and phosphodiesterase (PDE) isozyme activity.
- Immunocytochemistry and immunohistochemistry were employed to localize and assess PDE5 expression.
Main Results:
- Exisulind significantly inhibited tumor multiplicity and incidence in a dose-dependent manner in rats.
- In HT1376 cells, exisulind inhibited growth, induced apoptosis, and specifically inhibited PDE5 and PDE4 isozymes.
- Inhibition of PDE5 led to increased cGMP and protein kinase G activation, correlating with apoptosis induction.
Conclusions:
- Exisulind demonstrates significant antineoplastic activity against induced bladder tumors in rats.
- The drug's mechanism involves cGMP-mediated apoptosis induction in neoplastic urothelium.
- Clinical trials for exisulind in human bladder cancer treatment and prevention are warranted.

