HPLC-MS/MS method for determination of betamethasone in human plasma with application to a dichorionic twin pregnancy pharmacokinetic and placental transfers studies

Authors

Keywords:

Betamethasone, LC-MS, Twin pregnancy, Placental transfer, Pharmacokinetics

Abstract

Betamethasone (BET) is a synthetic glucocorticoid recommended for pregnant women at imminent risk of preterm birth before 34 weeks to reduce neonatal complications. There are different techniques to describe BET plasma quantification. However, none quantified the plasmatic concentration of BET in dichorionic (DC) twin pregnancies using LC-MS. Our objectives were to develop and validate a method for quantifying BET by LC-MS for pharmacokinetic (PK) and placental transfer studies in DC twin pregnancies. Blood samples were collected after intramuscular administration of a single BET dose containing 6 mg disodium phosphate + 6 mg acetate. BET was determined in plasma by liquid-liquid extraction. The method showed linearity in the range of 2-250 ng/mL, as well as precision and accuracy with a coefficient of variation and relative standard errors ≤ 15%. Additionally, the method presented selectivity and did not present matrix or carry-over effect. Stability tests also presented coefficient of variation and relative standard errors ≤ 15%. This is the first study which describe maternal and fetal plasma concentrations of BET in a DC twin pregnancy. The BET PK parameters were AUC0-∞, CL/F, Vd/F, Cmax, Tmax of 292.20 h*ng/mL, 39.08 L/h, 278.72 L, 25.55 ng/mL and 0.58 h, respectively. The placental transfer ratios of umbilical vein/maternal vein and intervillous space/maternal vein were 0.14 and 0.19 and 0.40 and 0.27 for both twins, respectively. However, a clinical study with more subjects is imperative to confirm this higher concentration of BET in the intervillous space.

Downloads

Download data is not yet available.

References

ACOG. American Collegeof Obstetriciansand Gynecologists’ Committee on Practice Bulletins-Obstetrics. Practice Bulletin No. 171: Management of Preterm Labor. Obstet Gynecol. 2016;128(4):e155-64

Ballabh P, Lo ES, Kumari J, Cooper TB, Zervoudakis I, Auld PA, et al. Pharmacokinetics of betamethasone in twin and singleton pregnancy. Clin Pharmacol Ther. 2002;71(1):39-45.

Bunte K, Smith DJ, Chappell MJ, Hassan-Smith ZK, Tomlinson JW, Arlt W, et al. Learning pharmacokinetic models for in vivo glucocorticoid activation. J Theor Biol. 2018;455:222-231.

EMEA. European Medicines Agency; Chmp. Commitee For Medicinal Products For Human Use. Guideline on bioanalytical method validation. p. 23, 2011.

Knych HK, Stanley SD, Harrison LM, Mckemie DS. Pharmacokinetics of betamethasone in plasma, urine, and synovial fluid following intra-articular administration to exercised thoroughbred horses. Drug Test Anal. 2017;9(9):1385-1391.

Liggins GC. Premature delivery of foetal lambs infused with glucocorticoids. J Endocrinol. 1969;45(4):515-23.

Moises EC, Duarte Lde B, Cavalli Rde C, Carvalho DM, Filgueira GC, Marques MP. et al. Transplacental distribution of lidocaine and its metabolite in peridural anesthesia administered to patients with gestational diabetes mellitus. Reprod Sci. 2015;22(7):791-7.

PUBCHEM database. National Center for Biotechnology Information. Betamethasone, CID=9782. Disponível em: https://pubchem.ncbi.nlm.nih.gov/compound/Betamethasone >. Acesso em: 4 jul. 2019.

» https://pubchem.ncbi.nlm.nih.gov/compound/Betamethasone

National Institute for Health and Care Excellence. Preterm labour and birth. NICE guideline NG25. [s.l: s.n.].

Petersen MC, Nation RL, Ashley JJ, McBride WG. The placental transfer of betamethasone. Eur J Clin Pharmacol. 1980;18(3):245-7.

Petersen MC, Ashley JJ, McBride WG, Nation RL. Disposition of betamethasone in parturient women after intramuscular administration. Br J Clin Pharmacol. 1984;18(3):383-392.

Petersen MC, Nation RL, Ashley JJ. Simultaneous determination of betamethasone, betamethasone acetate and hydrocortisone in biological fluids using high-performance liquid chromatography. J Chromatogr. 1980;183(2):131-9.

Roberts D, Brown J, Medley N, Dalziel SR. Antenatal corticosteroids for accelerating fetal lung maturation for women at risk of preterm birth. Cochrane Database Syst Rev. 2017;3(3):CD004454

Roberts D, Dalziel S. Antenatal corticosteroids for accelerating fetal lung maturation for women at risk of preterm birth. Cochrane Database Syst Rev . 2006;(3):CD004454

Rodrigues GFP, Benzi JRL, Matos LHC, de Freitas SF, Marques MP, Cavalli RC, et al. Enhanced elimination of betamethasone in dichorionic twin pregnancies. Br J Clin Pharmacol . 2022;88(4):1897-1903. doi: 10.1111/bcp.15111. Epub 2021 Nov 10. PMID: 34665470.

» https://doi.org/10.1111/bcp.15111

Salem II, Alkhatib M, Najib N. LC-MS/MS determination of betamethasone and its phosphate and acetate esters in human plasma after sample stabilization. Pharm Biomed Anal. 2011;56(5):983-91.

Samtani MN, Lohle M, Grant A, Nathanielsz PW, Jusko WJ. Betamethasone pharmacokinetics after two prodrug formulations in sheep: implications for antenatal corticosteroid use. Drug Metab Dispos. 2005;33(8):1124-30.

Skoll A, Boutin A, Bujold E, Burrows J, Crane J, Geary M. et al. No. 364-Antenatal Corticosteroid Therapy for Improving Neonatal Outcomes. J Obstet Gynaecol Can. 2018;40(9):1219-1239

WHO. World Health Organization. Recommendations on Interventions to Improve Preterm Birth Outcomes. Geneva: 2015.

Downloads

Published

2023-07-10

Issue

Section

Original Article

How to Cite

HPLC-MS/MS method for determination of betamethasone in human plasma with application to a dichorionic twin pregnancy pharmacokinetic and placental transfers studies. (2023). Brazilian Journal of Pharmaceutical Sciences, 59, e20314. https://revistas.usp.br/bjps/article/view/215319