Meconium Nicotine and Metabolites by Liquid Chromatography-Tandem Mass Spectrometry: Differentiation of Passive and Nonexposure and Correlation with Neonatal Outcome Measures
Open Access
- 1 December 2008
- journal article
- Published by Oxford University Press (OUP) in Clinical Chemistry
- Vol. 54 (12) , 2018-2027
- https://doi.org/10.1373/clinchem.2008.109173
Abstract
Background: Meconium analysis is a diagnostically sensitive and objective alternative to maternal self-report for detecting prenatal tobacco exposure. Nicotine and metabolite disposition in meconium is poorly characterized, and correlation of analytes’ concentrations with neonatal outcomes is unexplored. Our objectives were to quantify nicotine, cotinine, trans-3′-hydroxycotinine (OH-cotinine), nornicotine, norcotinine, and glucuronide concentrations in meconium, identify the best biomarkers of in utero tobacco exposure, compare meconium concentrations of tobacco-exposed and nonexposed neonates, and investigate concentration-outcome relationships.Methods: We quantified concentrations of nicotine and 4 metabolites with and without hydrolysis simultaneously in meconium from tobacco-exposed and nonexposed neonates by liquid chromatography-tandem mass spectrometry. We compared meconium concentrations to birth weight, length, head circumference, gestational age, and 1- and 5-min Apgar scores.Results: Nicotine, cotinine, and OH-cotinine were the most prevalent and abundant meconium tobacco biomarkers and were found in higher concentrations in tobacco-exposed neonates. Whereas cotinine and OH-cotinine are glucuronide bound, performing the lengthy and costly enzymatic hydrolysis identified only 1 additional positive specimen. Unconjugated nicotine, cotinine, or OH-cotinine meconium concentration >10 ng/g most accurately discriminated active from passive and nonexposed neonates. There was no significant correlation between quantitative nicotine and metabolite meconium results and neonatal outcomes, although presence of a nicotine biomarker predicted decreased head circumference.Conclusions: Unconjugated nicotine, cotinine, and OH-cotinine should be analyzed in meconium to detect in utero tobacco exposure, as approximately 25% of positive specimens did not contain cotinine. Immunoassay testing monitoring cotinine only would underestimate the prevalence of prenatal tobacco exposure.Keywords
Funding Information
- Generalitat Valenciana
This publication has 31 references indexed in Scilit:
- Maternal Smoking during Pregnancy Increases the Risk of Postnatal Infections in Preterm NeonatesNeonatology, 2008
- Quantification of nicotine, cotinine, trans-3′-hydroxycotinine, nornicotine and norcotinine in human meconium by liquid chromatography/tandem mass spectrometryJournal of Chromatography B, 2008
- Misclassification of maternal smoking status and its effects on an epidemiologic study of pregnancy outcomesNicotine & Tobacco Research, 2007
- Assessment of prenatal tobacco smoke exposure by determining nicotine and its metabolites in meconiumHuman & Experimental Toxicology, 2007
- Prevalence of maternal smoking and environmental tobacco smoke exposure during pregnancy and impact on birth weight: retrospective study using Millennium CohortBMC Public Health, 2007
- Self‐reported nicotine exposure and plasma levels of cotinine in early and late pregnancyActa Obstetricia et Gynecologica Scandinavica, 2006
- The influence of maternal cigarette smoking, snuff use and passive smoking on pregnancy outcomes: the Birth To Ten StudyPaediatric and Perinatal Epidemiology, 2006
- TRANS-3′-HYDROXYCOTININE O- AND N-GLUCURONIDATIONS IN HUMAN LIVER MICROSOMESDrug Metabolism and Disposition, 2005
- N-Glucuronidation of trans-3‘-Hydroxycotinine by Human Liver MicrosomesChemical Research in Toxicology, 2003
- Meconium analysis to assess fetal exposure to nicotine by active and passive maternal smokingThe Journal of Pediatrics, 1994