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Research Article

Cabbage juice supplementation abrogates Lead acetate-induced haematological and haemorheological imbalances in male Wistar rat

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Pages 1331-1340 | Received 24 Mar 2022, Accepted 02 Jun 2022, Published online: 10 Jun 2022

References

  • Abdel-Moneim AM, El-Toweissy MY, Ali AM, Awad Allah AA, Darwish HS, Sadek IA. 2015. Curcumin ameliorates Lead (Pb(2+))-induced hemato-biochemical alterations and renal oxidative damage in a rat model. Biol Trace Elem Res. 168(1):206–220. doi:10.1007/s12011-015-0360-1. Epub 2015 May 7. PMID: 25947936.
  • Alghasham A, Salem TA, Meki ARM. 2013. Effect of cadmium-polluted water on plasma levels of tumor necrosis factor-α, interleukin-6 and oxidative status biomarkers in rats: protective effect of curcumin. Food Chem Toxicol. 59:160–164. doi:10.1016/j.fct.2013.05.059.
  • Ali SO, Darwish HA, Ismail NA. 2014. Modulatory effects of curcumin, silybin-phytosome and alpha-R-lipoic acid against thioacetamide induced liver cirrhosis in rats. Chem Biol Interact. 216:26–33. doi:10.1016/j.cbi.2014.03.009.
  • Ali BH, Al-Salam S, Al Suleimani Y, Al Kalbani J, Al Bahlani S, Ashique M, Manoj P, AlDhahli B, AlAbri N, Naser HT et al. 2018. Curcumin ameliorates kidney function and oxidative stress in experimental chronic kidney disease. Basic Clin Pharmacol Toxicol. 122(1):65–73. doi:10.1111/bcpt.12817.
  • Alwaleedi SA. 2016. Hematobiochemical changes induced by lead intoxication in male and female albino mice. Nat J Physiol Pharm Pharmacol. 6(1):46. doi:10.5455/njppp.2015.5.0910201578.
  • Andjelkovic M, Buha Djordjevic A, Antonijevic E, Antonijevic B, Stanic M, Kotur Stevuljevic J, Spasojevic-Kalimanovska V, Jovanovic M, Boricic N, Wallace D et al. 2019. Toxic effect of acute cadmium and lead exposure in rat blood, liver, and kidney. Int J Environ Res Public Health. 16(2):274. doi:10.3390/ijerph16020274.
  • Aprioku JS, Obianime AW. 2014. Evaluation of the effects of Citrus aurantifolia (lime) juice in lead-induced hematological and testicular toxicity in rats. Pharmacologia. 5(1):36–41. doi:10.5567/pharmacologia.2014.36.41.
  • Asiwe JN, Daubry TME, Okon IA, Akpotu AE, Adagbada EO, Eruotor H, Agbugba LC, Buduburisi BR. 2022a. Ginkgo biloba supplement reverses Lead (II) Acetate–induced haematological imbalances, and hepatic and renal dysfunctions in male Wistar rat. Biol Trace Elem Res. doi:10.1007/s12011-022-03098-6.
  • Asiwe JN, Kolawole TA, Anachuna KK, Ebuwe EI, Nwogueze BC, Eruotor H, Igbokwe V. 2022b. Cabbage juice protect against Lead-induced liver and kidney damage in male Wistar rat. Biomarkers. 27(2):151–158. doi:10.1080/1354x.2021.2022210.
  • Barbee JH. 1973. The effect of temperature on the relative viscosity of human blood. Biorheology. 10(1):1–5. doi:10.3233/BIR-1973-10101.
  • Chan PC, Xia Q, Fu PP. 2007. Ginkgo biloba leave extract: biological, medicinal, and toxicological effects. J Environ Sci Health C Environ Carcinog Ecotoxicol Rev. 25(3):211–44. doi:10.1080/10590500701569414.
  • Dewanjee S, Sahu R, Karmakar S, Gangopadhyay M. 2013. Toxic effects of lead exposure in Wistar rats: involvement of oxidative stress and the beneficial role of edible jute (Corchorus olitorius) leaves. Food Chem Toxicol. 55:78–91. doi:10.1016/j.fct.2012.12.040.
  • El-Boshy ME, Refaat B, Qasem AH, Khan A, Ghaith M, Almasmoum H, Mahbub A, Almaimani RA. 2019. The remedial effect of Thymus vulgaris extract against lead toxicity-induced oxidative stress, hepatorenal damage, immunosuppression, and haematological disorders in rats. Environ Sci Pollut Res Int. 26(22):22736–22746. doi:10.1007/s11356-019-05562-8.
  • El-Kott AF, Saad M, Khalil AM. 2011. Allium sativum prevents the induced-hepatotoxicity, abnormal blood hemolysis and viscosity in rats. Comunicata Scientiae. 2(1):9–17.
  • El-Maddawy ZK, El-Sayed YS. 2018. Comparative analysis of the protective effects of curcumin and N-acetyl cysteine against paracetamol-induced hepatic, renal, and testicular toxicity in Wistar rats. Environ Sci Pollut Res Int. 25(4):3468–3479. doi:10.1007/s11356-017-0750-3.
  • Ercal N, Neal R, Treeratphan P, Lutz PM, Hammond TC, Dennery PA, Spitz DR. 2000. A role for oxidative stress in suppressing serum immunoglobulin levels in lead-exposed Fisher 344 rats. Arch Environ Contam Toxicol. 39(2):251–256. doi:10.1007/s002440010102.
  • Ericson B, Landrigan P, Taylor MP, Frostad J, Caravanos J, Keith J, Fuller R. 2016. The global burden of lead toxicity attributable to informal used Lead-Acid battery sites. Ann Glob Health. 82(5):686–699. doi:10.1016/j.aogh.2016.10.015.
  • Fahim MA, Tariq S, Adeghate E. 2013. Vitamin E modifies the ultrastructure of testis and epididymis in mice exposed to lead intoxication. Ann Anat. 195(3):272–277. doi:10.1016/j.aanat.2012.11.001.
  • Fenga C, Gangemi S, Di Salvatore V, Falzone L, Libra M. 2017. Immunological effects of occupational exposure to lead. Mol Med Rep. 15(5):3355–3360. doi:10.3892/mmr.2017.6381.
  • García-Niño WR, Pedraza-Chaverri J. 2014. Protective effect of curcumin against heavy metals-induced liver damage. Food Chem Toxicol. 69:182–201. doi:10.1016/j.fct.2014.04.016.
  • Garrick MD, Dolan KG, Horbinski C, Ghio AJ, Higgins D, Porubcin M, Moore EG, Hainsworth LN, Umbreit JN, Conrad ME et al. 2003. DMT1: a mammalian transporter for multiple metals. Biometals. 16:41–54. doi:10.1023/A:1020702213099.
  • Gupta SC, Prasad S, Kim JH, Patchva WLJ, Priyadarsini IK, Aggarwal BB, Aggarwal BB. 2011. Multitargeting by curcumin as revealed by molecular interaction studies. Nat Prod Rep. 28(12):1937–1955. doi:10.1039/c1np00051a.
  • He J, Lin J, Li J, Zhang JH, Sun XM, Zeng CM. 2008. Dual effects of Ginkgo biloba leaf extract on human red blood cells. Nordic Pharmacol Soc. 104:138–144.
  • Hosseini A, Hosseinzadeh H. 2018. Antidotal or protective effects of Curcuma longa (turmeric) and its active ingredient, curcumin, against natural and chemical toxicities: a review. Biomed Pharmacother. 99:411–421. doi:10.1016/j.biopha.2018.01.072.
  • Hsu PC, Guo YL. 2002. Antioxidant nutrients and lead toxicity. Toxicology. 180(1):33–44. doi:10.1016/S0300-483X(02)00380-3.
  • Ingram GIC. Ingram GIC. 1952. The determination of plasma fibrinogen by the clot-weight method. Biochem J. 51(5):583–585. doi:10.1042/bj0510583.
  • Isaac LJ, Abah G, Akpan B, Ekaette IU 2013. Haematological properties of different breeds and sexes of rabbits. Proceedings of the 18th Annual Conference of Animal Science Association of Nigeria; Abuja; p. 24–27.
  • Khan TA, Zafar F. 2005. Haematological study in response to varying doses of estrogen in broiler chicken. Int J Poult Sci. 4(10):748–751. doi:10.3923/ijps.2005.748.751.
  • Kumar VM, Henley AK, Nelson CJ, Indumati O, Rao YP, Rajanna S, Rajanna B. 2017. Protective effect of Allium sativum (garlic) aqueous extract against lead-induced oxidative stress in the rat brain, liver, and kidney. Environ Sci Pollut Res Int. 24(2):1544–1552. doi:10.1007/s11356-016-7923-3.
  • Lawrence DA. 1995. Posited mechanisms of metal immunotoxicity. Hum Exp Toxicol. 14(1):114–116. doi:10.1177/096032719501400127.
  • Ogunbajo SO, Alemede IC, Adama JY, Abdullahi J 2009. Haematological parameters of Savannah Brown does fed varying dietary levels of flamboyant tree seed meal. Proceedings of 34th Annual Conference of Nigerian Society for Animal production; Philadelphia; p. 88–91.
  • Olafedehan CO, Obun AM, Yusuf MK, Adewumi OO, Oladefedehan AO, Awofolaji AO, Adeniji AA 2010. Effects of residual cyanide in processed cassava peel meals on haematological and biochemical indices of growing rabbits. Proceedings of 35th Annual Conference of Nigerian Society for Animal Production; lokoja; p. 212.
  • Ovuru SS, Ekweozor IKE. 2004. Haematological changes associated with crude oil ingestion in experimental rabbits. Afr J Biotechnol. 3(6):346–348. doi:10.5897/AJB2004.000-2064.
  • Oyewale JO. 1992. Effects of temperature and pH on osmotic fragility of erythrocytes of the domestic fowl (Gallus domesticus) and guinea-fowl (Numida meleagris). Res Vet Sci. 52(1):1–4. doi:10.1016/0034-5288(92)90049-8.
  • Reid HL, Ugwu AC. 1987. A simple technique for rapid determination of plasma viscosity. Niger J Physiol Sci. 3:45–48.
  • Sabath E, Robles-Osorio ML. 2012. Renal health and the environment: heavy metal nephrotoxicity. Nefrologia. 32(3):279–286. doi:10.3265/Nefrologia.pre2012.Jan.10928.
  • Soliman MM, Baiomy AA, Yassin MH. 2015. Molecular and histopathological study on the ameliorative effects of curcumin against lead acetate-induced hepatotoxicity and nephrotoxicity in Wistar rats. Biol Trace Elem Res. 167(1):91–102. doi:10.1007/s12011-015-0280-0.
  • Yuan G, Dai S, Yin Z, Lu H, Jia R, Xu J, Song X, Li L, Shu Y, Zhao X. 2014. Toxicological assessment of combined lead and cadmium: acute and sub-chronic toxicity study in rats. Food Chem Toxicol. 65:260–268. doi:10.1016/j.fct.2013.12.041.

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