126
Views
11
CrossRef citations to date
0
Altmetric
Original Article

The protective effect of rutin against renal toxicity induced by lead acetate

, , , &
Pages 58-62 | Received 20 Oct 2015, Accepted 15 Feb 2016, Published online: 19 Apr 2016

References

  • Alia M, Mateos R, Ramos S, et al. (2006). Influence of quercetin and rutin on growth and antioxidant defense system of a human hepatoma cell line (HepG2). Eur J Nutr 45:19–28
  • Ansar S. (2015). Pretreatment with diallylsulphide modulates mercury-induced neurotoxicity in male rats. Acta Biochim Pol 62:599–603
  • Ansar S, Iqbal M. (2015a). Ameliorative effect of butylated hydroxyanisole against ferric nitrilotriacetate-induced hepatotoxicity and oxidative stress in rats. Toxicol Ind Health 31:967–73
  • Ansar S, Iqbal M. (2015b). Antioxidant and nephroprotective potential of butylated hydroxyanisole against ferric nitrilotriacetate-induced oxidative stress and early tumor events. Hum Exp Toxicol. DOI: 10.1177/0960327115591378
  • Ansar S, Iqbal M. (2015c). Ascorbic acid inhibits ferric nitrilotriacetate induction of ornithine decarboxylase, DNA synthesis, oxidative stress, and hepatotoxicity in rats. Toxicol Ind Health 31:1008–14
  • Ansar S, Iqbal M. (2016a). Amelioration of ferric nitrilotriacetate-induced hepatotoxicity in Wistar rats by diallylsulfide. Hum Exp Toxicol 35:259–66
  • Ansar S, Iqbal M. (2016b). Protective effect of diallylsulphide against mercuric chloride-induced hepatic injury in rats. Hum Exp Toxicol. DOI: 10.1177/0960327116629723
  • Ansar S, Iqbal M, Aljameil N. (2014). Diallyl sulphide, a component of garlic, abrogates ferric nitrilotriacetate-induced oxidative stress and renal damage in rats. Hum Exp Toxicol 33:1209–16
  • Ashry KM, El-Sayed YS, Khamiss RM, El-Ashmawy IM. (2010). Oxidative stress and immunotoxic effects of lead and their amelioration with myrrh (Commiphora molmol) emulsion. Food Chem Toxicol 48:236–41
  • Biswas NM, Ghosh PK. (2006). Protection of adrenal and male gonadal functions by androgen in lead-treated rats. Kathmandu Univ Med J (KUMJ) 4:218–21
  • Choi I, Park Y, Choi H, Lee EH. (2006). Anti-adipogenic activity of rutin in 3T3-L1 cells and mice fed with high-fat diet. Biofactors 26:273–81
  • Denis MC, Desjardins Y, Furtos A, et al. (2015). Prevention of oxidative stress, inflammation and mitochondrial dysfunction in the intestine by different cranberry phenolic fractions. Clin Sci (Lond) 128:197–212
  • Dubey S, Ganeshpurkar A, Bansal D, Dubey N. (2015). Protective effect of rutin on impairment of cognitive functions of due to antiepileptic drugs on zebrafish model. Indian J Pharmacol 47:86–9
  • Ellman GL. (1959). Tissue sulfhydryl groups. Arch Biochem Biophys 82:70–7
  • Ercal N, Neal R, Treeratphan P, et al. (2000). A role for oxidative stress in suppressing serum immunoglobulin levels in lead-exposed Fisher 344 rats. Arch Environ Contam Toxicol 39:251–6
  • Erdogan E, Ilgaz Y, Gurgor PN, et al. (2015). Rutin ameliorates methotrexate induced hepatic injury in rats. Acta Cir Bras 30:778–84
  • Guardia T, Rotelli AE, Juarez AO, Pelzer LE. (2001). Anti-inflammatory properties of plant flavonoids. Effects of rutin, quercetin and hesperidin on adjuvant arthritis in rat. Farmaco 56:683–7
  • Guimaraes JF, Muzio BP, Rosa CM, et al. (2015). Rutin administration attenuates myocardial dysfunction in diabetic rats. Cardiovasc Diabetol 14:90
  • Habtemariam S, Lentini G. (2015). The therapeutic potential of rutin for diabetes: an update. Mini Rev Med Chem 15:524–8
  • Hafez MM, Al-Harbi NO, Al-Hoshani AR, et al. (2015). Hepato-protective effect of rutin via IL-6/STAT3 pathway in CCl4-induced hepatotoxicity in rats. Biol Res 48:30
  • Hashimoto T, Ueda Y, Oi N, et al. (2006). Effects of combined administration of quercetin, rutin, and extract of white radish sprout rich in kaempferol glycosides on the metabolism in rats. Biosci Biotechnol Biochem 70:279–81
  • Ibrahim NM, Eweis EA, El-Beltagi HS, Abdel-Mobdy YE. (2012). Effect of lead acetate toxicity on experimental male albino rat. Asian Pac J Trop Biomed 2:41–6
  • Jung CH, Lee JY, Cho CH, Kim CJ. (2007). Anti-asthmatic action of quercetin and rutin in conscious guinea-pigs challenged with aerosolized ovalbumin. Arch Pharm Res 30:1599–607
  • Kamalakkannan N, Prince PS. (2006). Antihyperglycaemic and antioxidant effect of rutin, a polyphenolic flavonoid, in streptozotocin-induced diabetic wistar rats. Basic Clin Pharmacol Toxicol 98:97–103
  • Kandemir FM, Ozkaraca M, Yildirim BA, et al. (2015). Rutin attenuates gentamicin-induced renal damage by reducing oxidative stress, inflammation, apoptosis, and autophagy in rats. Ren Fail 37:518–25
  • Kim HY, Nam SY, Hong SW, et al. (2015). Protective effects of rutin through regulation of vascular endothelial growth factor in allergic rhinitis. Am J Rhinol Allergy 29:e87–94
  • Kravchenko LV, Avren’eva LI, Aksenov IV, et al. (2015). [Effects of rutin on protective capacity in rats]. Vopr Pitan 84:22–30
  • Liu MC, Xu Y, Chen YM, et al. (2013). The effect of sodium selenite on lead induced cognitive dysfunction. Neurotoxicology 36:82–8
  • Lopez-Revuelta A, Sanchez-Gallego JI, Hernandez-Hernandez A, et al. (2006). Membrane cholesterol contents influence the protective effects of quercetin and rutin in erythrocytes damaged by oxidative stress. Chem Biol Interact 161:79–91
  • Moreira EG, Rosa GJ, Barros SB, et al. (2001). Antioxidant defense in rat brain regions after developmental lead exposure. Toxicology 169:145–51
  • Mousa HM, Al-Qarawi AA, Ali BH, et al. (2002). Effect of lead exposure on the erythrocytic antioxidant levels in goats. J Vet Med A Physiol Pathol Clin Med 49:531–4
  • Ola MS, Ahmed MM, Ahmad R, et al. (2015). Neuroprotective effects of rutin in streptozotocin-induced diabetic rat retina. J Mol Neurosci 56:440–8
  • Parmar MS, Syed I, Gray JP, Ray SD. (2015). Curcumin, hesperidin, and rutin selectively interfere with apoptosis signaling and attenuate streptozotocin-induced oxidative stress-mediated hyperglycemia. Curr Neurovasc Res 12:363–74
  • Pasinetti GM, Wang J, Ho L, et al. (2015). Roles of resveratrol and other grape-derived polyphenols in Alzheimer’s disease prevention and treatment. Biochim Biophys Acta 1852:1202–8
  • Sarkozi K, Papp A, Mate Z, et al. (2015). Rutin, a flavonoid phytochemical, ameliorates certain behavioral and electrophysiological alterations and general toxicity of oral arsenic in rats. Acta Biol Hung 66:14–26
  • Savov VM, Galabov AS, Tantcheva LP, et al. (2006). Effects of rutin and quercetin on monooxygenase activities in experimental influenza virus infection. Exp Toxicol Pathol 58:59–64
  • Shalan MG, Mostafa MS, Hassouna MM, et al. (2005). Amelioration of lead toxicity on rat liver with Vitamin C and silymarin supplements. Toxicology 206:1–15
  • Sui L, Zhang RH, Zhang P, et al. (2015). Lead toxicity induces autophagy to protect against cell death through mTORC1 pathway in cardiofibroblasts. Biosci Rep 35:e00186
  • Tian R, Yang W, Xue Q, et al. (2016). Rutin ameliorates diabetic neuropathy by lowering plasma glucose and decreasing oxidative stress via Nrf2 signaling pathway in rats. Eur J Pharmacol 771:84–92
  • Umarani V, Muvvala S, Ramesh A, et al. (2015). Rutin potentially attenuates fluoride-induced oxidative stress-mediated cardiotoxicity, blood toxicity and dyslipidemia in rats. Toxicol Mech Methods 25:143–9
  • Wang YB, Ge ZM, Kang WQ, et al. (2015a). Rutin alleviates diabetic cardiomyopathy in a rat model of type 2 diabetes. Exp Ther Med 9:451–5
  • Wang Y, Li JY, Han M, et al. (2015b). Prevention and treatment effect of total flavonoids in Stellera chamaejasme L. on nonalcoholic fatty liver in rats. Lipids Health Dis 14:85
  • Wang R, Sun Y, Huang H, et al. (2015c). Rutin, a natural flavonoid protects PC12 cells against sodium nitroprusside-induced neurotoxicity through activating PI3K/Akt/mTOR and ERK1/2 pathway. Neurochem Res 40:1945–53
  • Wang C, Zhang Y, Liang J, et al. (2006). Impacts of ascorbic acid and thiamine supplementation at different concentrations on lead toxicity in testis. Clin Chim Acta 370:82–8
  • Wildemann TM, Weber LP, Siciliano SD. (2015). Combined exposure to lead, inorganic mercury and methylmercury shows deviation from additivity for cardiovascular toxicity in rats. J Appl Toxicol 35:918–26
  • Yuan L, Zhi W, Liu Y, et al. (2015). Lead toxicity to the performance, viability, and community composition of activated sludge microorganisms. Environ Sci Technol 49:824–30
  • Zeng Y, Wang L, Jiang L, et al. (2015). Joint toxicity of lead, chromium, cobalt and nickel to Photobacterium phosphoreum at no observed effect concentration. Bull Environ Contam Toxicol 95:260–4
  • Zu Y, Li C, Fu Y, Zhao C. (2006). Simultaneous determination of catechin, rutin, quercetin kaempferol and isorhamnetin in the extract of sea buckthorn (Hippophae rhamnoides L.) leaves by RP-HPLC with DAD. J Pharm Biomed Anal 41:714–19

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.