Have a personal or library account? Click to login

Possible protective effect of curcumin on the thyroid gland changes induced by sodium fluoride in albino rats: light and electron microscopic study

Open Access
|Apr 2018

References

  1. Anuradha CD, Kanno S, Hirano S. Oxidative damage to mitochondria is a preliminary step to caspase-3 activation in fluoride-induced apoptosis in HL-60 cells. Free Radic Biol Med 31, 367–373, 2001.10.1016/S0891-5849(01)00591-3
  2. Bancroft JD, Gamble M. Theory and Practice of Histological Techniques (6th ed.). Churchill Livingstone, Elsevier, 2008.
  3. Barbier O, Arreola-Mendoza L, Del Razo LM. Molecular mechanisms of fluoride toxicity. Chem Biol Interact 188, 319–333, 2010.10.1016/j.cbi.2010.07.01120650267
  4. Bishayee K, Khuda-Bukhsh AR. 5-lipoxygenase antagonist therapy: a new approach towards targeted cancer chemotherapy. Acta Biochim Biophys Sin (Shanghai) 45, 709–719, 2013.10.1093/abbs/gmt06423752617
  5. Bouaziz H, Ammar E, Ghorbel H, Ketata S, Jamoussi K, Ayadi F, Guermazi F, Zeghal N. Effect of fluoride ingested by lactating mice on the thyroid function and bone maturation of their suckling pups. Fluoride 37, 133–142, 2004.
  6. Bouaziz H, Soussia L, Guermazi F, Zeghal N. Fluoride-induced thyroid proliferative changes and their reversal in female mice and their pups. Fluoride 38, 185–192, 2005.
  7. Carton RJ. Review of the 2006 United States National Research Council Report: Fluoride in drinking water. Fluoride 39, 163–172, 2006.
  8. Chen D, Nie M, Fan MW, Bian Z. Anti-inflammatory activity of curcumin in macrophages stimulated by lipopolysaccharides from Porphyromonas gingivalis. Pharmacology 82, 264–269, 2008.10.1159/00016112718849645
  9. De Felice M, Postiglione MP, Di Lauro R. Minireview: thyrotropin receptor signaling in development and differentiation of the thyroid gland: insights from mouse models and human diseases. Endocrinology 145, 4062–4067, 2004.10.1210/en.2004-050115231702
  10. Durrant-Peatfield B. The effects of fluoride on the thyroid gland. Synthesis/Regeneration, Election 2004: Green analyses, Biodevastation, Winter 2005.
  11. El-Marakby DM, Ismail DI. Histological and immunohistochemical study on the adverse effects of sodium chlorate on the pituitary–thyroid axis of albino rats and the possible protective effect of curcumin. Egypt J Histol 36, 681–690, 2013.10.1097/01.EHX.0000432848.44823.9f
  12. Gartner LP, Hiatt JL. Color Textbook of Histology (3rd ed.). Saunders, Elsevier, 2007.
  13. Graham L, Orenstein JM. Processing tissue and cells for transmission electron microscopy in diagnostic pathology and research. Nat Protoc 2, 2439–2450, 2007.10.1038/nprot.2007.304708654517947985
  14. Irizarry L, Youssef NA, Wray AA. Thyroid Hormone Toxicity (Ed. Tarabar A). Medscape, 2014. https://emedicine.medscape.com/article/819692-overview#showall
  15. Jayaprakasha GK, Rao LJ, Sakariah KK. Antioxidant activities of curcumin, demethoxycurcumin and bisdemethoxycurcumin. Food Chemistry 98, 720–724, 2006.10.1016/j.foodchem.2005.06.037
  16. Junqueira LC, Carneiro J. Basic Histology: Text&Atlas (10th ed.). McGraw-Hill Co., New York, 2003.
  17. Khan MA, Fenton SE, Swank AE, Hester SD, Williams A, Wolf DC. A mixture of ammonium perchlorate and sodium chlorate enhances alterations of the pituitary-thyroid axis caused by the individual chemicals in adult male F344 rats. Toxicol Pathol 33, 776–783, 2005.10.1080/0192623050044983216392172
  18. Kita T, Imai S, Sawada H, Kumagai H, Seto H. The biosynthetic pathway of curcuminoid in turmeric (Curcuma longa) as revealed by 13C-labeled precursors. Biosci Biotechnol Biochem 72, 1789–1798, 2008.10.1271/bbb.8007518603793
  19. Korutla L, Kumar R. Inhibitory effect of curcumin on epidermal growth factor receptor kinase activity in A431 cells. Biochim Biophys Acta 1224, 597–600, 1994.10.1016/0167-4889(94)90299-2
  20. Liu GY, Chai CY, Kang SL. Effects of fluoride on the ultrastructure of thyroid in chicks. Chin J Vet Sci 22, 512–514, 2002.
  21. Manolova Y, Deneva V, Antonov L, Drakalska E, Momekova D, Lambov N. The effect of the water on the curcumin tautomerism: A quantitative approach. Spectrochim Acta A Mol Biomol Spectrosc 132, 815–820, 2014.10.1016/j.saa.2014.05.096
  22. Miquelis R, Simon C. The thyroid lysosomal system: dynamic state of the organelles in relation to iodine release. Eur J Cell Biol 24, 70–73, 1981.
  23. Mohamed HZ, Ragab IK, Ghaffer HH. A histological study on the possible protective effect of selenium against chromium-induced thyrotoxicity in adult male albino rats. The Egyptian Journal of Histology 39, 1–11, 2016.10.1097/01.EHX.0000481747.20806.2d
  24. Nabavi SF, Moghaddam AH, Nabavi SM, Eslami S. Protective effect of curcumin and quercetin on thyroid function in sodium fluoride intoxicated rats. Fluoride 44, 147–152, 2011.
  25. Ng JC, Wang J, Shraim A. A global health problem caused by arsenic from natural sources. Chemosphere 52, 1353–1359, 2003.10.1016/S0045-6535(03)00470-3
  26. Oner J, Kukner A, Oner H, Ozan E, Yekeler H. Effect of vitamin E on follicular cell proliferation and expression of apoptosis-associated factors in rats with 6-N-propyl-2-thiouracil-induced goitrogenesis. Folia Histochem Cytobiol 41, 213–217, 2003.
  27. Patil VV. Dhurvey VT. Exposure to sodium fluoride affects thyroid follicular cells in albino rats. Int J Plant Animal Environ Sci 5, 56–61, 2015.
  28. Pereira M, Dombrowski PA, Losso EM, Chioca LR, Da Cunha C, Andreatini R. Memory impairment induced by sodium fluoride is associated with changes in brain monoamine levels. Neurotox Res 19, 55–62, 2011.10.1007/s12640-009-9139-5
  29. Petersen PE, Lennon MA. Effective use of fluorides for the prevention of dental caries in the 21st century: the WHO approach. Community Dent Oral Epidemiol 32, 319–321, 2004.10.1111/j.1600-0528.2004.00175.x
  30. Rajkovic V, Matavulj M, Johansson O. Light and electron microscopic study of the thyroid gland in rats exposed to power-frequency electromagnetic fields. J Exp Biol 209, 3322–3328, 2006.10.1242/jeb.02375
  31. Rillema JA, Yu TX, Jhiang SM. Effect of prolactin on sodium iodide symporter expression in mouse mammary gland explants. Am J Physiol Endocrinol Metab 279, E769–E772, 2000.10.1152/ajpendo.2000.279.4.E769
  32. Rubin R, Strayer DS. The Endocrine System. In: Rubin’s Pathology: Clinicopathologic Foundation of Medicine (5th ed.), (Ed. Rubin E), pp. 935–973, Lippincott Williams & Wilkins, 2008.
  33. Shepherd G. Fluoride. In: Encyclopedia of Toxicology Vol. 2 (2nd ed.), pp. 342–343, Elsevier, Academic Press, 2005.10.1016/B0-12-369400-0/00419-1
  34. Shivarajashankara YM, Shivashankara AR, Rao SH, Bhat PG. Oxidative stress in children with endemic skeletal fluorosis. Fluoride 34, 103–107, 2001.
  35. Surh YJ, Chun KS, Cha HH, Han SS, Keum YS, Park KK, Lee SS. Molecular mechanisms underlying chemopreventive activities of anti-inflammatory phytochemicals: down-regulation of COX-2 and iNOS through suppression of NF-kappa B activation. Mutat Res 480–481, 243–268, 2001.10.1016/S0027-5107(01)00183-X
  36. Thrane EV, Refsnes M, Thoresen GH, Lag M, Schwarze PE. Fluoride-induced apoptosis in epithelial lung cells involves activation of MAP kinases p38 and possibly JNK. Toxicol Sci 61, 83–91, 2001.10.1093/toxsci/61.1.8311294978
  37. Tietz NW. Tietz Textbook of Clinical Chemistry (2nd ed.), (Eds. Burtis CA, Ashwood ER). WB Saunders, 1994.
  38. Trabelsi M, Guermazi F, Zeghal N. Effect of fluoride on thyroid function and cerebellar development in mice. Fluoride 34, 165–173, 2001.
  39. Whithead TP, Thorpe GH, Carter TJ, Kricka LJ. Enhanced luminescence procedure for sensitive determination of peroxidase-labelled conjugates in immunoassay. Nature; 305, 158–159, 1983.10.1038/305158a0
  40. Zhan X, Xu Z, Li J, Wang M. Effects of excessive feed fluorine on structure and function of thyroid gland in piglets. J Chinese Cereals and Oils Assoc 1, 117–121, 2006.
DOI: https://doi.org/10.2478/enr-2018-0007 | Journal eISSN: 1336-0329 | Journal ISSN: 1210-0668
Language: English
Page range: 59 - 68
Published on: Apr 30, 2018
Published by: Slovak Academy of Sciences, Mathematical Institute
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2018 Mohamed Mostafa Abdelaleem, Nashwa Fathy Gamal El-Tahawy, Samah Mohammed Mahmoud Abozaid, Shima Abdel-Baset Abdel-Hakim, published by Slovak Academy of Sciences, Mathematical Institute
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.