Original ArticlePharmacognosy MagazineVol. 12 | Issue 45s | 2016 | pp. S76–S81Open access
Protective Mechanisms of Thymoquinone on Methotrexate‑induced Intestinal Toxicity in Rats
- 2,
- 2,3*,
- 1 Department of Pharmacology.
- 2 Department of Pharmaceutical Sciences, College of Clinical Pharmacy, King Faisal University, Al-Ahsa 31982, Saudi Arabia.
- 3 Histology, Faculty of Medicine, Minia University, El‑Minia 61511, Egypt.
Published in Pharmacognosy Magazine
Correspondence: Mohamed A. Morsy
Department of Pharmaceutical Sciences, College of Clinical Pharmacy, King Faisal University, Al-Ahsa 31982, Saudi Arabia.; Histology, Faculty of Medicine, Minia University, El‑Minia 61511, Egypt.
Email: momorsy@kfu.edu.sa
Copyright: © 2016 Manuscript Technomedia. This is an open access article.
- Published:
- Jan 1, 2016
How to cite
El‑Sheikh, A. A., Morsy, M. A., & Hamouda, A. H. (2016). Protective Mechanisms of Thymoquinone on Methotrexate‑induced Intestinal Toxicity in Rats. Pharmacognosy Magazine, 12(45s), S76–S81. https://doi.org/10.4103/0973-1296.176106
Abstract
Background: Intestinal toxicity is a serious side effect in methotrexate (MTX) chemotherapy. Objective: To investigate the mechanisms by which the anticancer drug MTX‑induced intestinal damage could be prevented by thymoquinone (TQ), an active ingredient of Nigella sativa. Materials and Methods: TQ was given orally for 10 days, and MTX toxicity was induced at the end of day 3 of the experiment, with or without TQ pretreatment. Results: MTX caused intestinal damage, represented by distortion in normal intestinal histological structure, with significant oxidative stress, exhibited as decrease in reduced glutathione concentration and catalase activity, along with significant increase in malondialdehyde level compared to control group. MTX also caused nitrosative stress evident by increased intestinal nitric oxide (NO) level, with up‑regulation of inducible NO synthase expression shown in immunohistochemical staining. Furthermore, MTX caused inflammatory effects as evident by up‑regulation of intestinal necrosis factor‑kappa beta and cyclooxygenase‑2 expressions, which were confirmed by increased intestinal tumor necrosis factor‑alpha level via enzyme‑linked immunosorbent assay. Moreover, MTX caused apoptotic effect, as it up‑regulated intestinal caspase 3 expression. Concomitant TQ significantly reversed the MTX‑induced intestinal toxic effects by reversing intestinal microscopic damage, as well as significantly improving oxidative/ nitrosative stress, inflammatory and apoptotic markers tested compared to MTX alone. Conclusion: TQ may possess beneficial intestinal protective effects as an adjuvant co‑drug against MTX intestinal toxicity during cancer chemotherapy. TQ protection is conferred via antioxidant, anti‑nitrosative, anti‑inflammatory, and anti‑apoptotic mechanisms.
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Article metadata
| Title | Protective Mechanisms of Thymoquinone on Methotrexate‑induced Intestinal Toxicity in Rats |
|---|---|
| Authors | Azza A. El‑Sheikh; Mohamed A. Morsy; Azza H. Hamouda |
| Affiliations | Department of Pharmacology.; Department of Pharmaceutical Sciences, College of Clinical Pharmacy, King Faisal University, Al-Ahsa 31982, Saudi Arabia.; Histology, Faculty of Medicine, Minia University, El‑Minia 61511, Egypt. |
| Corresponding author | momorsy@kfu.edu.sa |
| Journal | Pharmacognosy Magazine |
| Volume / Issue | Vol. 12, Issue 45s (2016) |
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- S1 Identification and Quantification of the Major Constituents in Egyptian Carob Extract by Liquid Chromatography–Electrospray Ionization‑Tandem Mass Spectrometrypp. S1–S6
- S7 Alteration in Memory and Electroencephalogram Waves with Sub‑acute Noise Stress in Albino Rats and Safeguarded by Scoparia dulcispp. S7–S13
- Steroidal Saponin Diosgenin from Dioscorea bulbifera Protects Cardiac Cells from Hypoxia-reoxygenation Injury Through Modulation of Pro-survival and Pro-death Moleculespp. S14–S20
- S21 Molecular Docking Analysis of Selected Clinacanthus nutans Constituents as Xanthine Oxidase, Nitric Oxide Synthase, Human Neutrophil Elastase, Matrix Metalloproteinase 2, Matrix Metalloproteinase 9 and Squalene Synthase Inhibitorspp. S21–SS6
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