Toxicity of cyhalothrin lambda on erythrogram and renal parameters attenuated by Lavendula stoechas essential oil in rabbit

Keywords: Rabbit, lambda cyhalothrin, Lavendula s essential oil, biological parameter

Abstract

Among the pyrethroid insecticides used in Algeria against a wide range of agricultural pests is lambda-cyhalothrin (LCT). The aim of this study was to investigate the beneficial effects of Lavendula stoechas essential oil on the hematotoxicity and nephrotoxicity of the insecticide lambda cyhalothrin in rabbits (Cuniculus Lepus). Twenty-seven (27) healthy local rabbits, with an average weight of 1.8 kg, were divided into three groups of nine each: the first group considered as control, the second group treated with (100 mg/kg/BW) (LCT) and the third group treated with a mixture of (100 mg/kg/BW) (LCT) and (500 mg/ kg/BW) Lavandula s. essential oil (LS.EO). The doses tested occurred daily in the diet over a 4-week period. Blood analysis revealed significant variations in the haemogram  between the treated and control groups. A highly significant increase was recorded in the white blood cell, lymphocyte count in the LCT-treated group compared with the control group (P<0.001), highly and very highly significant decreases were observed in Red Blood Cell (RED), Hematocrit (HCT) and Hemoglobin(HGB) levels in the LCT-treated group compared with the control (P<0.001; P<0.0001), with the same result obtained for erythrocyte indices . Biochemical analysis of renal parameters showed a highly and very highly significant increase in urea and creatinine concentrations respectively in the LCT-treated group versus the control (P<0.001; P<0.0001).  In  contrast, the addition of lavendula essential oil improved the previous hematological and biochemical alterations.

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References

Greenlee AR, Arbuckle TE, Chyou PH. Risk factors for female infertility in an agricultural Region. Epidemiology. [Internet]. 2003; 14(4):429-436. doi: https://doi.org/fvjsmm DOI: https://doi.org/10.1097/01.EDE.0000071407.15670.aa

Sharma A, Kumar V, Shahzad B, Tanveer M, Sidhu GPS, Handa N, Kohli SK, Yadav P, Bali AS, Parihar RD, Dar OI, Singh K, Jasrotia S, Bakshi P, Ramakrishnan M, Kumar S, Bhardwaj R, Thukral AK. Worldwide pesticide usage and its impacts on ecosystem. SN. Appl. Sci. [Internet]. 2019; 1:1446. doi: https://doi.org/ggwtsg DOI: https://doi.org/10.1007/s42452-019-1485-1

Settar A, Khaldoun H, Tarzaali D, Djennane N, Makhlouf C, Selmani I, Oularbi Y, Khaldoune A. Lambda cyhalothrin and chlorantraniliprole caused biochemical, histological, and immunohistochemical alterations in male rabbit liver: Ameliorative effect of vitamins A, D, E, C mixture. Toxicology. [Internet]. 2023; 487:153464. doi: https://doi.org/n644 DOI: https://doi.org/10.1016/j.tox.2023.153464

Sule RO, Condon L, Gomes AV. A common feature of pesticides: Oxidative stress—The role of oxidative stress in pesticide-induced toxicity. Oxid. Med. Cell. Longev. [Internet] 2022; 2022:5563759. doi: https://doi.org/n645 DOI: https://doi.org/10.1155/2022/5563759

Dahamna S, Harzallah D, Guemache A, Sekfali N. Biochemical investigation of cypermethrin toxicity in rabbits. Commun Agric. Appl. Biol. Sci. [Internet]. 2009; 74(1):149-153. PMID: 20218522

Sabarwal A, Kumar K, Singh RP. Hazardous effects of chemical pesticides on human health–Cancer and other associated disorders. Environ. Toxicol. Pharma- col. [Internet]. 2018; 63:103–114. doi: https://doi.org/gfhcd4 DOI: https://doi.org/10.1016/j.etap.2018.08.018

El-Bialy BE, Abd Eldaim MA, Hassan A, Abdel-Daim MM. Ginseng aqueous extract ameliorates lambda- cyhalothrin-acetamiprid insecticide mixture for hepatorenal toxicity in rats: role of oxidative stress- mediated proinflammatory and proapoptotic protein expressions. Environ. Toxicol. [Internet]. 2020; 35:124–135. doi: https://doi.org/n646

Bokreta S, Hassina KO, Amine FM, Makhlouf C, Nacira DZ. Protective effects of Thymus vulgaris essential oil against Voliam Targo® induced kidney and brain toxicity in male rabbits. Egypt Acad. J. Biol. Sci. [Internet].2021; 13(1):79–95. doi: https://doi.org/n647 DOI: https://doi.org/10.21608/eajbsd.2021.164583

Razafiarimanga ZN, Judicael L, Randrianarivo HR, Sadam SM, Rakoto DA, Jeannoda VL. Chemical composition and antimicrobial properties of the essential oil from the leaves of Helichrysum ibityense R. Vig. & Humbert (Asteraceae). GSC Biol. Pharm. Sci.[Internet]. 2021; 16(1):143–153. doi: https://doi.org/n648 DOI: https://doi.org/10.30574/gscbps.2021.15.3.0158

Kumar A. Physico-chemical and natural products investigations of essential oil from the rhizomes of Kaempferia galanga L. Der Chemica Sinica. 2014; 5(2):91-94.

Dung NT, Kim JM, Kang SC. Chemical composition, antimicrobial, and antioxidant activities of the essential oil and the ethanol extract of Cleistocalyx operculatus (Roxb.) Merr and Perry buds. Food Chem Toxicol. [Internet]. 2008; 46(12):3632-3639. doi: https://doi.org/b3ptfr DOI: https://doi.org/10.1016/j.fct.2008.09.013

Boutheyna T, Rached K M , Alia Z, Karima K. Floristic Diversity and Demographic Structure of Ouled Bechih Forest (Algeria). EEET. [Internet]. 2024; 25(1), 73–81. doi: https://doi.org/n649 DOI: https://doi.org/10.12912/27197050/174142

Badr E S El-Bialy, Mabrouk A Abd Eldaim, Azza Hassan, Mohamed M Abdel-Daim. Ginseng aqueous extract ameliorates lambda-cyhalothrin-acetamiprid insecticide mixture for hepatorenal toxicity in rats: Role of oxidative stress-mediated proinflammatory and proapoptotic protein expressions. Environmental Toxicology. [Internet]. 2019; 35(2):124–135. doi: https://doi.org/n646 DOI: https://doi.org/10.1002/tox.22848

Remok F, Saidi S, Gourich AA, Zibouh K, Maouloua M, Makhoukhi FE, Menyiy NE, Touijer H, Bouhrim M, Sahpaz S, Salamatullah AM, Bourhia M, Zair T. Phenolic Content, Antioxidant, Antibacterial, Antihyperglycemic, and α-Amylase Inhibitory Activities of Aqueous Extract of Salvia lavandulifolia Vahl. Pharmaceuticals. [Internet]. 2023;16:395. doi: https://doi.org/n48k DOI: https://doi.org/10.3390/ph16030395

Boumezrag A, Hemida H, Boumezrag FA, Smail F, Cisse S. Pathological and biological effects of treatments with

lambdacyhalothrin in rabbits. Iraqi J. Vet. Sci. [Internet]. 2021; 35(3):443-450. doi: https://doi.org/n65b DOI: https://doi.org/10.33899/ijvs.2020.126977.1425

Abdus Sallam M, Zubair M, Tehseen Gul S, Ullah Q, Idrees M. Evaluating the protective effects of vitamin Eand selenium on hematology and liver, lung, and uterus histopathology of rabbits with cypermethrin toxicity. Toxin. Rev. [Internet]. 2020; 39(3):236-241. doi: https://doi.org/n65c DOI: https://doi.org/10.1080/15569543.2018.1518335

Samar S, Walaa AR. Lambdacyhalothrininduced pancreatic toxicity in adult albino rats. Scientifc Rep.. [Internet] .2023; 13:11562. doi: https://doi.org/g6jwmx DOI: https://doi.org/10.1038/s41598-023-38661-1

Basir A, Khan A, Riaz M, Zargham-Khan MZ, Rizvi F, Fazal M, Arfan Y. Toxicopathological effects of lambda- cyhalothrin in female rabbits (Oryctolagus cuniculus). Human and Experimental Toxicology. [Internet]. 2011; 30(7)591–602. doi: https://doi.org/cpmkzg DOI: https://doi.org/10.1177/0960327110376550

Shabbir H, Hussain D, Hussain Z, Rafiq M, Akram K, Subtain A, Nazar S, Raja M. Serological effects of cypermethrin on the kidneys of rabbit (Oryctolagus cuniculus). J. Zool. Syst. [Internet]. 2024; 2(1):1-9. doi: https://doi.org/n65d DOI: https://doi.org/10.56946/jzs.v2i1.355

Mohammed SG, Hamead A, Mousa M, Hashim AM. Role of Hypochromia and Microcytosis in the prediction of iron deficiency anemia. MJMR. [Internet]. 2020[Cited 22 August 2024]; 31(3):262-268. Available in: https://n9.cl/iaiskw DOI: https://doi.org/10.21608/mjmr.2022.220289

Shakoori AR, Aslam F, Sabir M, Ali SS. Effect of prolonged administer, ration of insecticide (cyhalothrin/karate) on the blood and liver of rabbits. Folia Biol. [Internet]. 1992;40:91-9. PMID: 1451840

Batiha GE, Teibo JO, Wasef L, Hazem M, Shaheen M, Akomolafe AP, Teibo TK, Al Kuraishy HM, Al Garbeeb AI, Alexiou A, Papadakis M. A review of the bioactive components and pharmacological properties of Lavandula species. Naunyn Schmiedebergs Arch. Pharmacol. [Internet]. 2023;396:877–900. doi: https://doi.org/gsngcg DOI: https://doi.org/10.1007/s00210-023-02392-x

Iretiola B, Modupe B, Oyepata SJ, Joseph OT. Toxicological study of ethanol extract of Lavandula Stoechas on Kidney of wistar rat. Int. J. Sci. Res. Publ. [Internet]. 2022; 3(9): 1290-1298. doi: https://doi.org/n65f DOI: https://doi.org/10.55248/gengpi.2022.3.9.43

Nadia AH, Reda KA. Acute toxicity impacts of Diazinon and Lambda Cyhalothrin on mal Albino rat. Alex J. Agric. Sci. [Internet]. 2016[Cited 12 August 2024];61(6):603- 609. Available in: https://n9.cl/sjy4fj

Aramjoo H, Farkhondeh T, Aschner M, Naseri K, Mehrpour O, Sadighara P, Roshanravan B, Samarghandian S. The association between diazinon exposure and dyslipidemia occurrence: a systematic and meta-analysis study. Food Security. [Internet]. 2021;28(4):3994–4006. doi: https://doi.org/n65g DOI: https://doi.org/10.1007/s11356-020-11363-1

Eraslan G, Kanbur M, Silici S. Evaluation of propolis effects on some biochemical parameters in rats treated with sodium fluoride. Pestic. Biochem. Phys. [Internet]. 2007;88(3):273-283. doi: https://doi.org/bjd2dm DOI: https://doi.org/10.1016/j.pestbp.2007.01.002

Al-Jammas S, Al-Saraj A. The histological changes induced by cytarabine on rabbit’s kidneys (with and without vitamin E administration). Iraqi J. Vet. Sci. [Internet]. 2020[Cited 23 July 2024];33(2):9-13. Available in: https:// n9.cl/rs1dbh DOI: https://doi.org/10.33899/ijvs.2020.163564

Debabsa R, Khaldi F, Grara N, Bouzahouane H, Guezgouz N, Gheid A.Triazole fungicide Prosaro EC 250-induced hematological and biochemical alterations in male rabbits (Oryctolagus cuniculus). J. Biores. Manag. [Internet]. 2022[Cited 12 July 2024]; 9(3):93-99. Available in: https://n9.cl/lxtgo

Published
2025-02-28
How to Cite
1.
Boubsil S, Djemil H, Abdennour C. Toxicity of cyhalothrin lambda on erythrogram and renal parameters attenuated by Lavendula stoechas essential oil in rabbit. Rev. Cient. FCV-LUZ [Internet]. 2025Feb.28 [cited 2025Apr.4];35(1):6. Available from: https://produccioncientificaluz.org./index.php/cientifica/article/view/43604
Section
Veterinary Medicine