Original ArticlePharmacognosy MagazineVol. 15 | Issue 66s | 2019 | pp. S520–S526Open access
Cellular Protection Induced by Genistein in Mouse and its Antioxidant Capacity
- 1*,
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- 2,
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- 1 Department of Biochemistry, National Institute of Rehabilitation.
- 2 Department of Computer, Computer Research Center, National Polytechnic Institute.
- 3 Department of Graduate, Conservation Medicine Laboratory, National Polytechnic Institute.
- 4 Department of Morphology, Genetics Laboratory, National Polytechnic Institute, Mexico City, México.
Published in Pharmacognosy Magazine
Correspondence: Rogelio Paniagua-Pérez
Department of Biochemistry, National Institute of Rehabilitation.
Email: eduardo.madrigal@lycos.com
Copyright: © 2019 Manuscript Technomedia. This is an open access article.
- Published:
- Nov 28, 2019
- Received:
- Feb 22, 2019
- DOI:
- 10.4103/pm.pm_78_19
How to cite
Paniagua-Pérez, R., Reyes-Cadena, S., Martínez-Canseco, C., Reyes-Legorreta, C., Martínez-Castro, J., Madrigal-Santillán, E. O., Morales-González, J. A., Cristóbal-Luna, J. M., Álvarez-González, I., & Madrigal-Bujaidar, E. (2019). Cellular Protection Induced by Genistein in Mouse and its Antioxidant Capacity. Pharmacognosy Magazine, 15(66s), S520–S526. https://doi.org/10.4103/pm.pm_78_19
Abstract
Objective: The main objective of the study is to determine the capacity of GT to inhibit the genotoxic and cytotoxic damage induced by CP in mouse, as well as its immunostimulant ability and its capacity to scavenge free radicals. Materials and Methods: We determined the effect of six doses of GT on the rate of sister chromatid exchanges (SCEs) and of micronuclei (MN) in mice administered with 5 mg/kg of CP. Besides, we determined its capacity to increase the amount of lymphocytes in mouse and to reduce oxidation with the 2,2‑diphenyl‑1‑picrylhydrazyl assay. Results: Our results showed that GT (10–60 mg/kg) significantly decreased the frequency of SCE and of MN in mice. Furthermore, we also observed a moderate bone marrow cytotoxic correction of the damage induced by CP, as shown by an improvement in the rate of polychromatic erythrocytes. In addition, with 60 mg/kg, GT increased 69.6% the production of mouse lymphocytes over the control value throughout a 72‑h trial. Moreover, the compound also showed a high capacity to trap free radicals (95.25%, with 250 µg/ml). Conclusion: Our results, therefore, established that GT is an effective cellular protective agent against the action of CP.
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Article metadata
| Title | Cellular Protection Induced by Genistein in Mouse and its Antioxidant Capacity |
|---|---|
| Authors | Rogelio Paniagua-Pérez; Susana Reyes-Cadena; Carlos Martínez-Canseco; Celia Reyes-Legorreta; Jesús Martínez-Castro; Eduardo O. Madrigal-Santillán; José A. Morales-González; José M. Cristóbal-Luna; Isela Álvarez-González; Eduardo Madrigal-Bujaidar |
| Affiliations | Department of Biochemistry, National Institute of Rehabilitation.; Department of Computer, Computer Research Center, National Polytechnic Institute.; Department of Graduate, Conservation Medicine Laboratory, National Polytechnic Institute.; Department of Morphology, Genetics Laboratory, National Polytechnic Institute, Mexico City, México. |
| Corresponding author | eduardo.madrigal@lycos.com |
| Journal | Pharmacognosy Magazine |
| Volume / Issue | Vol. 15, Issue 66s (2019) |
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