Possible Effects of Vitamin D3 and Levofloxacin on Selected Hematology Parameter of Rats

Authors

  • Abbas Muslim Mhaibes Ministry of Health and Environment, Missan Health Directorate, Missan, Iraq.
  • Farah Kais Abdul- Wahab2 Department of Pharmacology and Toxicology, College of Pharmacy, University of Baghdad, Iraq.

DOI:

https://doi.org/10.31351/vol32issSuppl.pp74-84

Keywords:

Levofloxacin , vitaminD3 , Haematology ,anaemia , rats.

Abstract

Vitamin D is a fat-soluble vitamin with antioxidant and DNA protecting properties , Levofloxacin is a member of the fluoroquinolone drug class, Its broad-spectrum bactericidal effect affects both Gram-positive and Gram-negative bacteria.

The goal of the study is to analyze the haematology analysis in rats received levofloxacin and show the preventive impact of vitamin D3 by analyzing the haematology parameters: packed cell volume (PCV), mean corpuscular hemoglobin concentration(MCHC),haemoglobin (HB), red blood cell (RBC), mean corpuscular volume (MCV),meancorpuscular haemoglobin(MCH), WBC ,differential WBC, and Platelets.

The study included 42 rats divided into 6 groups each group 7 rats. group I negative control : healthy animals received normal saline 0.9%, group II: received levofloxacin LFX dose of 50mg/kg/day (IP) for fourteen days, group III : received LFX 100mg/kg/day (IP) for fourteen days, group IV : received vitamin D3 500 IU/day orally by oral gavage for twenty one days, group V received vitamin D3 500 IU/day orally for twenty one days and levofloxacin 50 mg/kg/day IP injected at day 8 for fourteen days, group VI received vitaminD3 500IU/day for twenty one days orally and levofloxacin 100 mg/kg/day IP injected at day 8 for fourteen days.

  Blood samples taken from rats treated with levofloxacin, showed a decrease in the values of RBC, HB, PCV, MCH, MCHC, as well as a decrease in total white blood cells, then returned approximately to normal levels in the groups IV ,group V and group VI .

from the result of the study conclude that some haematological  changes caused by levofloxacin ameliorated by vitamin D3 may be due to indirect effect of vitamin D3 on haematology parameters.

 

References

Muhsin SN, Hassan AF. The Protective Effect of Lactobacillus against Ciprofloxacin and Levofloxacin Associated Diarrhea in Sample of Iraqi Patients. Iraqi J Pharm Sci. 2019;28(2):174.

Naeem A, Badshah SL, Muska M, Ahmad N, Khan K. The current case of quinolones: synthetic approaches and antibacterial activity. Molecules. 2016;21(4):268.

Breijyeh Z, Jubeh B, Karaman R. Resistance of gram-negative bacteria to current antibacterial agents and approaches to resolve it. Molecules. 2020;25(6):1340.

Castrignanò E, Kannan AM, Feil EJ, Kasprzyk-Hordern B. Enantioselective fractionation of fluoroquinolones in the aqueous environment using chiral liquid chromatography coupled with tandem mass spectrometry. Chemosphere. 2018;206:376–86.

Aminov R. History of antimicrobial drug discovery: Major classes and health impact. Biochem Pharmacol. 2017;133:4–19.

Mathews B, Thalody AA, Miraj SS, Kunhikatta V, Rao M, Saravu K. Adverse effects of fluoroquinolones: a retrospective cohort study in a South Indian tertiary healthcare facility. Antibiotics. 2019;8(3):104.

Snodgrass A, Motaparthi K. Systemic antibacterial agents. Compr Dermatol Drug Ther. 2021;69–98.

Haworth CS, Banks J, Capstick T, Fisher AJ, Gorsuch T, Laurenson IF, et al. British Thoracic Society guidelines for the management of non-tuberculous mycobacterial pulmonary disease (NTM-PD). Thorax. 2017;72(Suppl 2):ii1–64.

Ünüvar S. Microbial foodborne diseases. In: Foodborne Diseases. Elsevier; 2018. p. 1–31.

Badawy S, Yang Y, Liu Y, Marawan MA, Ares I, Martinez M-A, et al. Toxicity induced by ciprofloxacin and enrofloxacin: oxidative stress and metabolism. Crit Rev Toxicol. 2021;51(9):754–87.

Adnan D, Atshan, Alshawi N, Fadhil A, Sahib H. The Effects of Vitamin D on L-arginine-induced Acute Pancreatitis in Rats. Int J Pharm Sci Rev Res. 2017 Sep 16;46:208.

Saad H Ben, Amara I Ben, Krayem N, Boudawara T, Kallel C, Zeghal KM, et al. Ameliorative effects of vanillin on potassium bromate induces bone and blood disorders in vivo. Cell Mol Biol. 2015;61(7):12–22.

Alawad ZM. Level of follicular fluid vitamin D and embryo quality in a sample of Iraqi women undergoing IVF. Journal of the Faculty of Medicine Baghdad. 2018;60(4):215-21.

Ahmad M, Saeed F, Mehjabeen NJ. Renal failure: its treatment in current systems of medicines. Kidney Transpl 2013; 15 107-115 .

Turkan TA, Al-Rawi JR. Vitamin D level and telogen hair loss: A Case control study. Journal of the Faculty of Medicine Baghdad. 2021 Sep 26;63(3).

Patel NM, Gutiérrez OM, Andress DL, Coyne DW, Levin A, Wolf M. Vitamin D deficiency and anemia in early chronic kidney disease. Kidney Int. 2010;77(8):715–20.

Hamdi RA, Abdul-Qahar ZH, Kadhum EJ, Alsaeed FA. Assessment of Serum Vitamin D Levels in Women with Polycystic Ovary Syndrome. Journal of the Faculty of Medicine Baghdad. 2018 Sep 2;60(2):93-7.

I Trochoutsou A, Kloukina V, Samitas K, Xanthou G. Vitamin-D in the immune system: genomic and non-genomic actions. Mini Rev Med Chem. 2015;15(11):953–63.

Brown G, Kutner A, Marcinkowska E. Vitamin D and haematopoiesis. Curr Tissue Microenviron Reports. 2020;1(1):1–11.

Santoro D, Caccamo D, Lucisano S, Buemi M, Sebekova K, Teta D, et al. Interplay of Vitamin D, erythropoiesis, and the renin-angiotensin system. Biomed Res Int. 2015;2015.

Bikle DD, Patzek S, Wang Y. Physiologic and pathophysiologic roles of extra renal CYP27b1: Case report and review. Bone reports. 2018;8:255–67.

Erden B, Ulak G, Yildiz F, Utkan T, Ozdemirci S, Gacar N. Antidepressant, anxiogenic, and antinociceptive properties of levofloxacin in rats and mice. Pharmacol Biochem Behav. 2001 Apr 1;68:435–41.

Absi M, Ghareeb H, Khalil A, Ruegg UT. The effect of levofloxacin and moxifloxacin on cardiovascular functions of rats with streptozotocin-induced diabetes. Diabetes Vasc Dis Res. 2013;10(1):65–71.

Refaat B, Ashour TH, El-Shemi AG. Ribavirin induced anaemia: The effect of vitamin D supplementation on erythropoietin and erythrocyte indices in normal Wistar rat. Int J Clin Exp Med. 2014;7(9):2667–76.

Lachaud L, Chabbert E, Dubessay P, Reynes J, Lamothe J, Bastien P. Comparison of various sample preparation methods for PCR diagnosis of visceral leishmaniasis using peripheral blood. J Clin Microbiol. 2001;39(2):613–7.

Oridupa AO, Omobowale TO, Abiola JO, Ajibade TO. Effect of Ciprofloxacin and Levofloxacin on haematological parameters of dogs. African J Biomed Res. 2013;16(1):25–9.

Ibrahim HAE, Mahmoud NM, Abd El-Mottleb DM, Khatab HI. Ameliorative effect of vitamin e and panax ginseng against some adverse effects of levofloxacin in male rats. J Anim Heal Prod. 2021;9(4):512–23.

Saad SY, Al-Rikabi AC. The effects of ciprofloxacin and levofloxacin on the hematological parameters of rats. Saudi Pharm J. 2008;16(2):129-134.

Kassem LA, Salem HA, Abass MA, Azab SS. Levofloxacin-induced oxidative stress and DNA damage in human peripheral blood lymphocytes. Drug Chem Toxicol. 2014;37(1):48-54.

Sahoo S, Kumar S, Mishra S, Padhy RN. Hematological and biochemical alterations induced by ciprofloxacin and levofloxacin in rats. Toxicol Int. 2015;22(1):61-67.

Kumar R, Kushwaha P, Singh V, Pandey AK. Levofloxacin induces hematotoxicity and oxidative stress in Wistar rats. Environ Toxicol Pharmacol. 2016;41:66-73.

Blumenthal KG, Peter JG, Trubiano JA, Phillips EJ. Antibiotic allergy. Lancet. 2019;393(10167):183–98.

Macy E, Romano A, Khan D. Practical management of antibiotic hypersensitivity in 2017. J Allergy Clin Immunol Pract. 2017;5(3):577–86.

Aminov R. History of antimicrobial drug discovery: Major classes and health impact. Biochem Pharmacol. 2017;133:4–19.

Hashem MA, Neamat-Allah ANF, Hammza HEE, Abou-Elnaga HM. Impact of dietary supplementation with Echinacea purpurea on growth performance, immunological, biochemical, and pathological findings in broiler chickens infected by pathogenic E. coli. Trop Anim Health Prod. 2020;52(4):1599–1607.

Oridupa AO, Omobowale TO, Abiola JO, Ajibade TO. Effect of Ciprofloxacin and Levofloxacin on haematological parameters of dogs. African J Biomed Res. 2013;16(1):25–9.

Ibrahim HAE, Mahmoud NM, Abd El-Mottleb DM, Khatab HI. Ameliorative effect of vitamin e and panax ginseng against some adverse effects of levofloxacin in male rats. J Anim Heal Prod. 2021;9(4):512–23.

Ibrahim HAE, Mahmoud NM, Abd El-Mottleb DM, Khatab HI. Ameliorative effect of vitamin e and panax ginseng against some adverse effects of levofloxacin in male rats. J Anim Heal Prod. 2021;9(4):512–23.

Thiele T, Selleng K, Selleng S, Greinacher A, Bakchoul T. Thrombocytopenia in the intensive care unit—diagnostic approach and management. In: Seminars in hematology. Elsevier; 2013. p. 239–50.

Delshad M, Safaroghli-Azar A, Pourbagheri-Sigaroodi A, Poopak B, Shokouhi S, Bashash D. Platelets in the perspective of COVID-19; pathophysiology of thrombocytopenia and its implication as prognostic and therapeutic opportunity. Int Immunopharmacol. 2021;99:107995.

Turkan TA, Al-Rawi JR. Vitamin D level and telogen hair loss: A Case control study. Journal of the Faculty of Medicine Baghdad. 2021 Sep 26;63(3).

Ahmad M, Saeed F, Mehjabeen NJ. Renal failure: its treatment in current systems of medicines. Kidney Transpl 2013; 15 107-115 .

Oridupa AO, Omobowale TO, Abiola JO, Ajibade TO. Effect of Ciprofloxacin and Levofloxacin on haematological parameters of dogs. African J Biomed Res. 2013;16(1):25–9.

Jilani T, Iqbal MP. Does vitamin E have a role in treatment and prevention of anemia? Pak J Pharm Sci. 2011;24(2):237.

Ahmad M, Saeed F, Mehjabeen NJ. Renal failure: its treatment in current systems of medicines. Kidney Transpl 2013; 15 107-115.

Turkan TA, Al-Rawi JR. Vitamin D level and telogen hair loss: A Case control study. Journal of the Faculty of Medicine Baghdad. 2021 Sep 26;63(3).

Castillo-Castellanos F, Ramírez L, Lomelí H. zmiz1a zebrafish mutants have defective erythropoiesis, altered expression of autophagy genes, and a deficient response to vitamin D. Life Sci. 2021;284:119900.

Saad SY, Al-Rikabi AC. The effects of ciprofloxacin and levofloxacin on the hematological parameters of rats. Saudi Pharm J. 2008;16(2):129-134.

Sahoo S, Kumar S, Mishra S, Padhy RN. Hematological and biochemical alterations induced by ciprofloxacin and levofloxacin in rats. Toxicol Int. 2015;22(1):61-67.

Singh A, Chandran B. Levofloxacin-induced neutropenia and thrombocytopenia. J Pharmacol Pharmacother. 2016;7(1):44-46.

Upreti RK, Jain S, Dutt KR, et al. Levofloxacin-induced immune thrombocytopenia. Indian J Pharmacol. 2013;45(6):623-624.

Wu-Wong JR, Nakane M, Ma J, Ruan X, Kroeger PE. Effects of vitamin D analogs on gene expression profiling in human coronary artery smooth muscle cells. Atherosclerosis. 2006;186(1):20-28.

Wong ET, Ruan XY, Ma J, Wu-Wong JR. 1alpha,25-dihydroxyvitamin D3 inhibits the secretion of interleukin-12 and tumor necrosis factor-alpha from human peripheral blood mononuclear cells. Immunol Invest. 2006;35(6):687-701.

Reddy GB, Karundevi B. Modulatory effects of 1,25 dihydroxyvitamin D3 on oxidative stress and antioxidant defense in diabetic rat kidneys. J Ren Nutr. 2012;22(6):498-508.

Baeke F, Takiishi T, Korf H, Gysemans C, Mathieu C. Vitamin D: modulator of the immune system. Curr Opin Pharmacol. 2010;10(4):482-496.

Downloads

Published

2023-11-01