Original Article

Amelioration of Acrylamide Induced Neurotoxicity in Wistar Rats

Year: 2020 | Month: April | Volume 10 | Issue 2

References (31)

1.Abo-El-matty, D.M., Rizk, M.K., Aly, H.F., Abd-Alla, H.L., Saleh, S.M. and Younis, E.A. 2018. Role of fruit waste and flavanones-loaded silica nanoparticles in ameliorating oxidative stress and histological changes in rat brain induced by acrylamide. J. Mater. Env. Sci., 6: 1817-1828.

View at Google Scholar

2.Ahmed, R.S.; Seth, V., Pasha, S.T. and Banerjee, B.D. 2000. Influence of dietary Ginger (Zingiber officinales Rosc) on oxidative stress induced by malathion in rats. Food. Chem. Toxicol., 38: 443- 450.

View at Google Scholar View at PUBMED

3.Bergmeyer, H.U., 1983. U.V. method of catalase assay. In: Methods of enzymatic analysis, III 3rd Ed. Weinheim, Dacrfield Beach, Florida, Basal. 273.

View at Google Scholar

4.Chen, J.H. and Chou, C.C. 2015. Acrylamide inhibits cellular differentiation of human neuroblastoma and glioblastoma cells. Food. Chem. Toxicol., 82: 27-35.

View at Google Scholar View at PUBMED

5.CIAA. 2011. The CIAA acrylamide toolbox. Confederation of the European Food and Drink Industries (CIAA), Brussels.

View at Google Scholar

6.Esmaeelpanah E., Rahmatkhah A., Poormahmood N., Razavi MB., Hasani FV. and Zadeh HH. 2015. Protective effects of Green tea aqueous extract on acrylamide induced neurotoxicity. J.Nat.Pharm.Prod., 10(2): e18506.

View at Google Scholar

7.Gupta A,. 2009. Studies on antibacterial and antiviral properties of Ocimum sanctum leaves with reference to immunomodulatory effects in rats. MVSc Thesis submitted to U.P. Pandit Deendayal Upadhayaya Pashu Chikitsa Vigyan Vishwavidyalaya Evam Go Anusandhan Sansthan, Mathura, U.P, India.

View at Google Scholar

8.Habig, W.H., Pabst, M. J. and Jakoby, W.B. 1974. Glutathione- S-transferase: the first enzymatic step in mercapturic acid formation. J. Biol. Chem., 249: 7130–7139.

View at Google Scholar View at PUBMED

9.Halliwell, B. and Gutteridge, J.M.C. 2007. Free radicals in biology and medicine, 4th Edn, Clarendon Press, Oxford.

View at Google Scholar

10.Huang, Y.L., Yu, F.Z., Si, Y.W. and Shi, N. 2007. NF-E2 related factor 2 activation and hemeoxygenase- 1 induction by tertbutylhydroquinone protect against deltamethrin-mediated oxidative stress in PC12 cells. Chem. Res. Toxicol., 20: 1242- 1251

View at Google Scholar

11.Keramat, J., Lebail, A., Prost, C. and Jafari, M. 2011. Acrylamide in baking products: a review article. Food Biopro. Tech., 4: 530-543.

View at Google Scholar

12.Kumar, J., Das, S. andTeoh, Lin S. 2018. Dietary acrylamide and the risks of developing cancer: Facts to Ponder. Front. Nutri., 5: 14

View at Google Scholar

13.Laborde, E. 2010. Glutathione transferases as mediators of signaling pathways involved in cell proliferation and cell death. Cell. Death. Differ., 45: 67-98.

View at Google Scholar View at PUBMED

14.Lowery, O.H., Rosenbrough, N.J., Farr, A.L., Randall, R.J., 1951. Protein measurement with the Folin phenol reagent. J. Biol. Chem., 193: 265-275.

View at Google Scholar View at PUBMED

15.Luna, L. G., 1968. Manual of histology staining methods of the Armed Forces Institute of Pathology, 3rd edn. Mcgraw-Hill Book Co., New-York.

View at Google Scholar

16.Madesh, M., and Balasubramanian, A. K., 1998. Microtiter plate assay for superoxide dismutase using MTT reduction by superoxide. Ind. J. Biochem. Biophys., 35:184-188.

View at Google Scholar View at PUBMED

17.Mandil, R., Rahal, A., Prakash, A., Garg, S.K., Gangwar, N.K., Swain, D.K., 2016. Ameliorative potential of alphatocopherol against flubendiamide and copper-induced testicular-injury in Wistar rats. Chem. Biol. Interact., 260: 91-10.

View at Google Scholar View at PUBMED

18.Mehdi, G., Mombeini MA., Fatemi I., Aminzadeh A., Kalantari H., Nesari A., Najafzadehvarzi H., Mehrzadi S.2019. Neuroprotective effects of Ellagic acid gainst acrylamide induced neurotoxiciry in rats. Neuro. Res., 1743-1328.

View at Google Scholar View at PUBMED

19.Mehri S., Abnous K., Khooei A., Mousavi SH., Shariaty MV., Hosseinzadeh H. 2015. Crocin reduced acrylamide induced neurotoxicity in wistar rats through inhibition of oxidative stress. Iran. J. Basic Med. Sci., 18(9): 902-908.

View at Google Scholar View at PUBMED

20.Paglia, D.E., Valantine, W.N., 1967. Studies on the quantitative and qualitative characterization of erythrocyte glutathione peroxidase. J. Lab. Clin. Med., 70: 158-169.

View at Google Scholar View at PUBMED

21.Rehman, H., Ali, M., Atif, F., Kaur, M., Bhatia, K. and Raisuddin, S. 2006. The modulatory effect of deltamethrin on antioxidants in mice. Clin. Chim. Acta., 369: 61-65.

View at Google Scholar View at PUBMED

22.Samar S Elblehi., Omnia I. El Euony., Yasser S. El-Sayed. 2020. Apoptosis and astrogliosis perturbations and expressions of regulatory inflammatory factors and neurotransmitters in acrylamide induced neurotoxicity under Ω fatty acids protections in rats. Neurtoxicology, 76: 44-57.

View at Google Scholar View at PUBMED

23.Sedlak, J. and Lindsay, R.H. 1968. Estimation of total protein bound NPSH groups in tissues with Ellaman’s reagent. Anal. Biochem., 25: 192-205.

View at Google Scholar View at PUBMED

24.Shafiq-U-Rehman. 1984. Lead-induced regional lipid peroxidation in brain. Toxicol. Lett., 21: 333-337.

View at Google Scholar View at PUBMED

25.Sinomol George K., Sunitha, S., Pankaj Satapathy, Ishtaparan Sahoo and Farhan Zameer. 2019. Acrylamide induced toxicity and the propensity of phytochemicals in amelioration: A Review. Cen. Nerv. Sys. Med. Chem., 19: 1-14.

View at Google Scholar View at PUBMED

26.Song, HX., Wang, R., Geng, ZM., Cao, SX., Liu, TZ., 2008. Subchronic exposure to acrylamide affect reproduction and testis endocrine function of rats. Zhanghua. Nan. Ke. Xue., 14: 406-410.

View at Google Scholar View at PUBMED

27.Surdyk, N., Rose,´N.J., Andersson, R. and Aman, P. 2004. Effects of asparagine, fructose, and baking conditions on acrylamide content in yeast-leavened wheat bread. J. Agric. Food. Chem., 52: 2047–2051.

View at Google Scholar View at PUBMED

28.Tredici, G., Cavaletti, G., Petruccioli, M.G., Fbbrica, D., Tedeschi, M. and Venturino, P. 1994. Low-dose glutathione administration in the prevention of cisplatin-induced peripheral neuropathy in rats. Neurotoxicology, 15(3): 701-4.

View at Google Scholar View at PUBMED

29.Yagi, K. 1989. A simple fluorimetric assay for lipid peroxides in blood serum or plasma. In: CRC Handbook of Free Radicals and Antioxidants in Biomedicine, 3: 215-218.

View at Google Scholar

30.Zhang, L. Zhang, G. and Zhang, Y. 2005. Occurrence and analytical methods of acrylamide in heat treated foods: Review and recent developments. J. Chromatography, 1075: 1–21.

View at Google Scholar View at PUBMED

31.Zhang, Y., Liu, M., Tan, D., Tong, C., Xu, Y., Liu, X., Gao, Y. and Hou, M. 2015. Blueberry anthocyanins ameliorate radiationinduced lung injury through the protein kinase RNA activated pathway. Chemico-Bio. Interact., 242: 363-371.

View at Google Scholar View at PUBMED

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