Effect of Ethanol Root Extract of Calliandra Portoricensis on the Pharmacokinetic fate of Glibenclamide in Rats

https://doi.org/10.51412/psnnjp.2022.37

Authors

  • Mbang A. Owolabi Natural Product Laboratory, Department of Pharmaceutical Chemistry, Faculty of Pharmacy, College of Medicine https://orcid.org/0000-0003-3809-2257
  • Celina O. Ogah Natural Product Laboratory, Department of Pharmaceutical Chemistry, Faculty of Pharmacy, College of Medicine, Campus, University of Lagos, Lagos, Nigeria.
  • Olusegun S. Ajala Natural Product Laboratory, Department of Pharmaceutical Chemistry, Faculty of Pharmacy, College of Medicine, Campus, University of Lagos, Lagos, Nigeria.
  • Grace E. Ukpo Natural Product Laboratory, Department of Pharmaceutical Chemistry, Faculty of Pharmacy, College of Medicine, Campus, University of Lagos, Lagos, Nigeria.
  • Stephen O. Ogbonnia Department of Pharmacognosy, Faculty of Pharmacy, College of Medicine Campus, University of Lagos, Lagos, Nigeria
  • Teddy S. Ehianeta Natural Product Laboratory, Department of Pharmaceutical Chemistry, Faculty of Pharmacy, College of Medicine, Campus, University of Lagos, Lagos, Nigeria.
  • Wuraola A. Badiru Natural Product Laboratory, Department of Pharmaceutical Chemistry, Faculty of Pharmacy, College of Medicine, Campus, University of Lagos, Lagos, Nigeria.

Keywords:

herb-drug interaction, Calliandra portoricensis, glibenclamide, Pharmacokinetics

Abstract

Background: Concomitant administration of herbs with conventional drugs may cause pharmacokinetic modification of the drugs, leading to drug toxicity or therapeutic failure. The observed use of Calliandra portoricensis (Jacq.) Benth in diabetic patients on glibenclamide has aroused interest and its possible influence on the pharmacokinetics of glibenclamide was investigated.

Methods: The dried root of Calliandra portoricensis was pulverized and extracted in 90% ethanol to obtain the crude extract used in this study. After 10 h overnight fast, 30 rats previously acclimatized were given glibencalmide (10 mg/kg) orally. Following a 3-week washout period, the rats were given ethanol root extract of C. portoricensis (500 mg/kg) for 5 days followed by glibenclamide (10 mg/kg). In both studies, blood samples were collected from 0 - 48 h post-dosing and assayed for the concentration of glibenclamide using a well-validated HPLC method and the Pharmacokinetic parameters computed.

Results: The Cmax, AUC0-∞ were significantly lowered (P<0.05) in the co-administered group, which resulted in a decrease in bioavailability. The Kel, Vd, Tmax and MCR were higher in the combination group (P<0.05). Thus suggests that concomitant use of C. portoricensis may have influenced the absorption of glibenclamide thus resulting in decreasedAUCan ; also, increase in Vd may have caused increase in the clearance.

Conclusion: The interaction between glibenclamide and C. portoricensis may be attributed to the presence of some metal ions in the plant. Thus, caution is advised in the concurrent use of these remedies.

References

Burkill HM (1985) The useful plants of West Tropical Africa Volume 4 Families: M-R Royal Botanic Gardens Kew. Great Britain, 177-266.

Onyeama HP, Ibekwe HA, Ofemile PY, Peter A, Ahmed MS, Nwagbo PO (2012) Screening and acute toxicity studies of Calliandra

portoricensis (Eri Agbo in Igbo) used in the treatment of snake bite in South Eastern Nigeria. Vom Journal of Veterinary Science 9(1): 17-24.

Akah PA, Nwaiwu JI (1988) Anticonvulsant activity of root and stem extracts of Calliandra portoricensis. Journal of Ethnopharmacology

(2): 205-210. https://doi.org/10.1016/0378- 8741(88)90128-6

Agunu A, Abduraham EM, Shok M, Yusuf SA (2005) Analgesic activity of the roots and leaves extracts of Calliandra portoricensis Jacq.

(Mimosaceae). Fitoterapia 76(5): 442-445. https://doi.org/10.1016/j.fitote.2005.03.008

Hassan BO, Ese SO, Kehinde AJ (2013) Assessment of Cytotoxicity, Antioxidant and free radical scavenging activities of the ethyl acetate

extract of Calliandra portoricensis root bark. International Journal Pharmaceutical Science a n d Research 4(5): 1800 - 1807.

http://dx.doi.org/10.13040/IJPSR.0975-8232

Falode JA, Obafemi TO, Akinmoladun AC, Olaleye MT, Boligon AA, Athayde ML (2018) High-Performance Liquid Chromatography

(HPLC) Fingerprinting and comparative antioxidant properties of root bark and leaf extracts of Calliandra portoricensis .

Pharmacology Online 24-44.

Aguwa CN, Lawal AM (1988) Pharmacological studies on the active principle of Calliandra portoricensis leaf extracts. Journal of

E t h n o p h a r m a c o l o g y 2 2 : 6 3 - 7 1 . https://doi.org/10.1016/0378-8741(88)90231-0

Bogdanov S, Jurendic T, Sieber R, Gallmann P (2008) Honey for nutrition and health: a review. Journal of American College of Nutrition. 27(6): 6 7 7 - 8 9 .https://doi.org/10.1080/07315724.2008.10719745

Okpuzor J, Adebesin O, Ogbunugafor H, Amadi I (2008) The potential of medicinal plants in sickle cell disease control: A review. International Journal of Biomedical and Health Science. 4: 47- 55.

Amujoyegbe OO, Agbedahunsi JM, Akanmu MA (2014) Antisickling Properties of Two Calliandra Species: C. portoricensis and C. haematocephala (Fabaceae) European Journal of Medicinal Plants 4(2): 206-219. DOI: 10.9734/EJMP/2014/2996

Hardin MD, Jacobs TF (2021) Glyburide. [Updated 2021 Jul 19]. In: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; (2021 - . A v a i l a b l e f r o m : https://www.ncbi.nlm.nih.gov/books/NBK54531 32022 Jan /

Gupta RC, Chang D, Nammi S, Bensoussan A, Bilinski K, Roufogalis BD (2017) Interactions between antidiabetic drugs and herbs: an

overview of mechanisms of action and clinical implications. Diabetology and Metabolic Syndrome 9 59-70. doi: 10.1186/s13098-017-

-9

Atta AH, Shalaby MAM, Shokry IM, Ahmed AA (1983) Interaction between oral hypoglycemic and antibiotics on blood glucose level of normal fasted and alloxan diabetic rats. Veterinary Medical Journal 31(1): 11-18.

Kubacka RT, Antal EJ, Juhl RP (1987) The paradoxical effect of cimetidine and ranitidine on g l i b e n c l a m i d e p h a r m a c o k i n e t i c s a n d pharmacodynamics. British Journal of Clinical P h a r m a c o l o g y 2 3 ( 6 ) : 7 4 3 - 7 5 1 . h t t p s : / / d o i . o r g / 1 0 . 1 1 1 1 / j . 1 3 6 5 - 2125.1987.tb03110.x

Arauz-Pacheco C, Ramirez LC, Rios JM (1990) Hypoglycemia induced by angiotensinconverting enzyme inhibitors in patients with non-insulin-dependent diabetes receiving sulfonylurea therapy. American Journal of M e d i c i n e 8 9 8 1 1 - 8 1 3 . https://doi.org/10.1016/0002-9343(90)90227-5

Zaman RMK, Arayne MS, Sultana N, Farooq A (2006) Synthesis and characterization of glibenclamide complexes of magnesium,

chromium, cobalt, nickel, zinc and cadmium salts. Pakistan Journal of Pharmaceutical Science 19(2): 114-118.

Self TH, Tsiu SJ, Fowler JW (1989) Interaction of rifampin and glyburide. Chest Journal 96(6): 1 4 4 3 - 1 4 4 4 . https://doi.org/10.1378/chest.96.6.1443a

Zuccaro P, Pacifici R, Pichini S, Avico U, Federzoni G, Pini LA, Sternieri E (1989) Influence of antacids on the bioavailability of

glibenclamide. Drugs under experimental and clinical research 15(4):165-169

Kivisto KT, Neuvonen PJ (1991) Enhancement of absorption and effect of glipizide by magnesium hydroxide. Clinical Pharmacology and

T h e r a p e u t i c s 4 9 : 3 9 - 4 3 . https://doi.org/10.1038/clpt.1991.7

Jang EH, Park YC, Chung WG (2004) Effect of dietary supplement on induction and inhibition of cytochrome P450s protein expression in rats. Food Chemical Toxicology 42: 1749-1756. https://doi.org/10.1016/j.fct.2004.07.001

WHO. Fact sheets on Diabetes Mellitus. h t t p s : / / w w w. w h o . i n t / n e w s - r o o m / f a c t - sheets/detail/diabetes. 2019 [Accessed June, 2020].

Institute of Laboratory Animal Research (ILAR) Commission on life Science, National Research Council, 1996. Guide for the Care and Use of L a b o r a t o r y A n i m a l s . Av a i l a b l e f r o m : https://www.nap.edu/catalog/5140/guide-for-thecare-and-use-of-laboratory-animals. [Last accessed 2022 January]

Harborne JB (1998) Phytochemical Methods: A Guide to Modern Techniques of Plant Analysis. Chapman and Hall, London. 182-190.

Talukdar AD, Choudhary MD, Chakraborty M, Dutta BK (2010) Phytochemical screening andTLC profiling of plant extracts Cyathea igantean (Wall. Ex. Hook.) Haltt. and Cyathea brunoniana. Wall.ex.Hook. (Cl.& Bak.). Assam University Journal of Science & Technology:

Biological and Environmental Sciences. 5(1): 70-74.

Ukpo GE, Owolabi MA, Imaga NOA, Oribayo OO, A.J (2017) Effect of Carica papaya (Linn) aqueous leaf extract on pharmacokinetic profile of ciprofloxacin in rabbits. Tropical Journal of Pharmaceutical Research 16(1) 127-134. https://doi.org/10.4314/tjpr.v16i1.16

Kumar A, Srirangam P, Kumar YP, Madhu B(2011) Development and Validation of HPLC method for the determination of Glibenclamide in rat serum. International Journal of Pharmacy and Biological Sciences 2(1): 478-485.

Owolabi MA, Adeniji EA, Oribayo OO, Akindehin OE (2013) Effects of Vernonia amygdalina Aqueous Leaf Extract on the

Pharmacokinetics of Nifedipine in Rabbits. Journal of Pharmacognosy and Phytochemistry 2(1): 55-65.

Gibaldi M, Perrier D (1982) Pharmacokinetics.Edn 2, NewYork: Marcel-Dekker 409-417.

Neuvonen PJ, Kivisto KT (1991) The effects ofmagnesium hydroxide on the absorption and efficacy of two glibenclamide preparations.

British Journal of Clinical Pharmacology 32: 215-220. https://doi.org/10.1111/j.1365- 2125.1991.tb03884.x

Arayne MS, Sultana N, Zaman RMK (2004) In vitro availability of glibenclamide in presence of antacids. Pakistan Journal of Pharmaceutical Sciences 17(2): 41-56.

Eurachem Guide The Fitness for Purpose of Analytical Methods – A Laboratory Guide to Method Validation and Related Topics.

Magnusson B, Örnemark U. editors. Second ed., 2014. ISBN 978-91-87461-59-0. Available from www.eurachem.org.

Jambhekar SS (2003) Physicochemical and biopharmaceutical properties of drug substances and pharmacokinetics, in: T.L. Lemke, D.A.

William, V.F. Roche, S.W. Zito (Eds.), Foye's principle of medicinal chemistry, seventh ed., Lippincot Williams and Wilkins, Philadelphia, 61-

Dion RB (2010) Pharmacokinetics in Preclinical Drug Development: An Overview, in: C. Han, C.B. Davis, B. Wang (Eds), Evaluation of drug candidate for preclinical development: Pharmacokinetics, Metabolism, Pharmaceutics and toxicology. First ed., John Wiley & Sons, Inc.Hoboken, New Jersey, 33-37.

Smith DA, Beaumont K, Maurer TS, Di L (2015) Volume of Distribution in Drug Design. Journal of Medicinal Chemistry. 58(15): 5691-5698. https://doi.org/10.1021/acs.jmedchem.5b00201

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Published

2022-10-09

How to Cite

Owolabi, M. A. ., Ogah, C. O., Ajala, O. S. ., Ukpo, G. E. ., Ogbonnia, S. O. ., Ehianeta, T. S. ., & Badiru, W. A. . (2022). Effect of Ethanol Root Extract of Calliandra Portoricensis on the Pharmacokinetic fate of Glibenclamide in Rats: https://doi.org/10.51412/psnnjp.2022.37. The Nigerian Journal of Pharmacy, 56(2). Retrieved from https://psnnjp.org/index.php/home/article/view/297