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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Oncogenicity evaluations of chemopreventive soy components in p53((+/-)) (p53 knockout) mice
William D Johnson1, Lawrence Dooley, Robert L Morrissey
1Life Sciences Group, IIT Research Institute, Chicago, Illinois 60616, USA.
Abstract:
Epidemiologic data suggest that soy consumption may protect against cancer induction in several tissues in humans. Although the soy components responsible for this activity remain unidentified, isoflavones (e.g., genistein) and protease inhibitors (e.g., Bowman-Birk inhibitor complex [BBIC]) demonstrate chemopreventive activity in several animal cancer models. As part of their preclinical development for cancer prevention, PTI G-2535 (a soy isoflavone mixture containing 45% genistein, 23% daidzein, and 4% glycitein) and BBIC were evaluated for oncogenicity in p53((+/-)) mice. In separate studies, groups of 25 p53((+/-)) mice/sex received daily gavage exposure to PTI G-2535 (0, 250, 1000, or 2500 mg/kg/day) or BBIC (0, 500, 1000, or 2000 mg/kg/day) for 6 months. The high doses of both PTI G-2535 and BBIC were limited by viscosity. p-Cresidine (400 mg/kg/day) served as a positive-control article in both studies. PTI G-2535 induced no gross toxicity in any animal, but did induce a dose-related suppression of body weight gain in male mice. Modest hematologic alterations and increased liver and spleen weights were seen in both sexes exposed to the isoflavone mixture. BBIC had no significant effect on body weight, food consumption, clinical pathology, or organ weights in either sex. Histopathologic evaluations demonstrated no increases in the incidence of either benign or malignant tumors in any group of p53((+/-)) mice exposed to PTI G-2535 or to BBIC. By contrast, the positive-control article, p-cresidine, induced urinary bladder cancers in both studies. Neither PTI G-2535 nor BBIC demonstrates any evidence of oncogenicity in the p53((+/-)) mouse model.
Insights
Soy isoflavones (PTI G-2535) and Bowman-Birk inhibitor complex (BBIC) were tested for cancer-causing potential in mice. Neither soy component showed oncogenicity, suggesting safety for cancer prevention research.
Area of Science:
- Oncology
- Toxicology
- Nutritional Science
Background:
- Epidemiologic studies suggest soy consumption may offer cancer protection.
- Soy isoflavones and Bowman-Birk inhibitor complex (BBIC) show chemopreventive potential in animal models.
- Preclinical evaluation of soy components is crucial for cancer prevention development.
Purpose of the Study:
- To assess the oncogenic potential of PTI G-2535 (a soy isoflavone mixture) and BBIC.
- To evaluate the safety of these soy compounds in a p53(+/-) mouse model.
- To determine if PTI G-2535 or BBIC induce tumors under preclinical testing conditions.
Main Methods:
- p53(+/-) mice (25/sex/group) were gavaged daily with PTI G-2535 (0-2500 mg/kg/day) or BBIC (0-2000 mg/kg/day) for 6 months.
- Positive control p-cresidine was administered at 400 mg/kg/day.
- Oncogenicity was evaluated through gross pathology, clinical pathology, organ weights, and histopathology.
Main Results:
- PTI G-2535 caused dose-related body weight gain suppression in males and modest hematologic/organ weight changes.
- BBIC did not significantly affect body weight, food consumption, clinical pathology, or organ weights.
- No increase in benign or malignant tumors was observed in mice treated with PTI G-2535 or BBIC.
- The positive control, p-cresidine, induced urinary bladder cancers.
Conclusions:
- Neither PTI G-2535 nor BBIC demonstrated oncogenic activity in the p53(+/-) mouse model.
- These findings support the safety of these soy-derived compounds for further cancer prevention research.
- The p53(+/-) mouse model effectively identified the oncogenicity of the positive control, p-cresidine.
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