Related Experiment Videos
Activity of triphenylselenonium chloride in mammary cancer prevention
1Department of Surgical Oncology, Roswell Park Cancer Institute, Buffalo, NY 14263.
Abstract:
The present study was designed to evaluate the tolerance and cancer chemopreventive activity of triphenylselenonium chloride in female Sprague-Dawley rats. No information is available in the literature on the anticarcinogenic efficacy of a lipophilic cationic selenium compound as exemplified by the triphenylselenonium ion. A short-term preliminary study indicated that it was well tolerated via the dietary route. Supplementation at levels up to 200 p.p.m. Se did not produce any apparent adverse effect in the animals. In the dimethylbenzanthracene mammary cancer model, a level of 30 p.p.m. Se in the diet reduced the total tumor yield by approximately 70% when treatment was applied during either the initiation phase or the post-initiation phase. In the MNU mammary cancer model, the inhibitory response was expressed only during the post-initiation phase. These findings suggest that the triphenylselenonium ion may have multiple modes of action in suppressing the development of neoplasia. Tissue analysis confirmed that there was minimal accumulation of total selenium until the level of supplementation reached 100 p.p.m. Se or above. Our study therefore convincingly demonstrates that triphenylselenonium chloride fits the criteria of an effective and desirable anticancer agent with a distinct separation between the chemopreventive dose range and the toxic dose range.
Insights
Triphenylselenonium chloride shows promise as a cancer chemopreventive agent. It effectively reduced mammary tumors in rats with minimal selenium accumulation, indicating a safe therapeutic window.
Area of Science:
- Oncology
- Toxicology
- Nutritional Science
Background:
- Limited data exists on the anticancer efficacy of lipophilic cationic selenium compounds.
- Triphenylselenonium ion is a novel compound for cancer chemoprevention research.
Purpose of the Study:
- To evaluate the tolerance and cancer chemopreventive activity of triphenylselenonium chloride.
- To determine the safety and efficacy of this selenium compound in a rat model.
Main Methods:
- Assessed tolerance via dietary supplementation up to 200 p.p.m. Selenium (Se).
- Evaluated chemopreventive effects in dimethylbenzanthracene (DMBA) and N-methyl-N-nitrosourea (MNU) induced mammary cancer models.
- Analyzed tissue selenium accumulation.
Main Results:
- Triphenylselenonium chloride was well tolerated up to 200 p.p.m. Se.
- A dietary level of 30 p.p.m. Se reduced tumor yield by approximately 70% in the DMBA model.
- Inhibitory effects were observed during post-initiation in the MNU model, suggesting multiple mechanisms of action.
- Minimal selenium accumulation occurred below 100 p.p.m. Se supplementation.
Conclusions:
- Triphenylselenonium chloride demonstrates significant anticancer potential with a favorable safety profile.
- The compound exhibits chemopreventive activity in mammary cancer models.
- A clear separation exists between the chemopreventive and toxic dose ranges, supporting its potential as an anticancer agent.