University medical centre Ljubljana
Ljubljana, 1000, Slovenia
NCT Number: NCT07456579
The aim of the study is to determine the prevalence of alcohol and drug use among Slovenian pregnant women. Alcohol and drug use during pregnancy has significant effects on the foetus and has short- and long-term health consequences. One of the most serious consequences is foetal alcohol syndrome, which is characterised by congenital anomalies, cognitive impairment and growth deficits. The prevalence of alcohol and drug use during pregnancy will be investigated in collaboration with the National Institute of Public Health, the Institute of Forensic Medicine of the Faculty of Medicine, University of Ljubljana, Institute Jozef Stefan and the Clinical Department of Neonatology of the Paediatric Clinic, University Clinical Centre Ljubljana, using two different methods. A cross-sectional study will be conducted on a nationally representative sample of meconium samples. Meconium samples will be collected from maternity hospitals in Slovenia. Biomarkers for alcohol and illicit drugs will be determined in the meconium samples. Meconium samples will be collected anonymously. National survey on the lifestyle will be conducted in Slovenian maternity hospitals, including questions on alcohol and drug use during pregnancy. The survey will be anonymous and not related to meconium sampling; participation in the survey will be voluntary. Data linkage between questionnaire responses and meconium analysis will be performed only within the additional subgroup of participants who provided informed consent. Meconium samples that will test positive for either alcohol of cannabis will be analysed for microbiome. For every positive meconium sample, two negative samples will be analysed.
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Observational
Ljubljana, 1000, Slovenia
The aim of the study is to determine the prevalence of alcohol and cannabis use among Slovenian pregnant women. Alcohol and drug use during pregnancy has significant effects on the foetus and has short- and long-term health consequences. One of the most serious consequences is foetal alcohol syndrome (FAS), which is characterised by congenital anomalies, cognitive impairment and growth deficits. Another health effect of prenatal alcohol exposure is foetal alcohol spectrum disorder (FASD), which is characterised by impairment of the central nervous system and leads to behavioural and cognitive problems, attention deficit disorder, executive dysfunction and memory problems. Consequently, children affected by maternal alcohol abuse have poorer school performance, lower education, psychiatric disorders, higher rates of alcohol and drug use, higher crime rates, unemployment and other problems that place a burden on individuals and society. Drug use during pregnancy affects both the mother and the foetus and is closely associated with perinatal problems, miscarriages, premature births, low birth weight, small head circumference and congenital malformations. Maternal drug use during pregnancy causes neonatal abstinence syndrome; it also affects foetal brain development, which can lead to long-term neuropsychiatric problems. The prevalence of alcohol and drug use among pregnant women in Slovenia has not been studied before. The adult gastrointestinal tract is densely populated by microorganisms. The microbiota, which represents a taxonomic inventory of the present microbial genera and species-primarily bacteria-and, in a broader sense, the microbiome, which encompasses all microorganisms (bacteria, archaea, fungi, protozoa, viruses, mobile genetic elements) together with their functional genes and metabolites present in the intestine, varies considerably in its composition among individuals, depending on the resolution of observation. At birth, a child's gastrointestinal tract has a lower density of microbial cells, as a network of selective pressures begins to develop only upon contact with maternal secretions, food, and the environment. These pressures include microbial fermentative products derived from breast milk or infant formula, gene expression, and microbial competition, leading to the dynamic development of the microbiome. Several factors influence the development of the infant gut microbiome after birth, including mode of delivery, type of feeding, prematurity, antibiotic use, and other environmental factors. Increasing evidence also points to the influence of prenatal factors, such as gestational diabetes and obesity, infections, stress, and maternal diet. A growing number of studies further demonstrate that an altered microbiota during pregnancy and early childhood can affect brain development and behaviour later in life via the gut-brain axis. The impact of alcohol consumption on the gut microbiota has been studied mainly in adults, in whom a reduction in microbiota α-diversity has been observed. Prenatal exposure to alcohol may influence the newborn's microbiota primarily through alcohol-induced alterations of the maternal microbiota and, consequently, nutrient absorption. Meconium analysis represents a unique opportunity to study exclusively prenatal factors affecting the microbiome, as postnatal factors do not influence the meconium microbiome. Wang and colleagues studied mother-newborn pairs by analysing maternal stool samples in the third trimester and neonatal samples within the first 48 hours after birth. They demonstrated significant differences in the microbiota composition of mothers who consumed alcohol and in the microbiota of their newborns compared with mother-newborn pairs in which the mothers did not consume alcohol. There are only a few studies in animal models that have confirmed differences in the gut microbiota of adult offspring whose mothers were fed an alcohol-containing diet during pregnancy. To date, no published studies have characterized the meconium microbiome of newborns whose mothers consumed cannabis. Methods: The prevalence of alcohol and cannabis use during pregnancy will be investigated in collaboration with the National Institute of Public Health, Institute of Forensic Medicine (IFM) of the Faculty of Medicine, University of Ljubljana, Institute Jozef Stefan and the Clinical Department of Neonatology of the Paediatric Clinic, University Clinical Centre Ljubljana, using three different methods:1. A cross-sectional study will be conducted on a nationally representative sample of meconium samples. The meconium samples will be collected from maternity hospitals in Slovenia. Biomarkers for alcohol and illicit drugs will be determined in the meconium samples. The sample size of the study will be calculated considering the population of Slovenia, the number of births per year and the estimated prevalence of alcohol and drug use during pregnancy. Meconium samples will be collected anonymously. Diapers with meconium will be collected in special waste bags by professionals caring for newborns and mothers on the first day after birth. Diapers for the meconium sampling will be randomly taken from the bags; the sample will be labelled with a serial number. Data about neonate's sex, gestational age (mature/premature), type of birth (vaginal/caesarean), antibiotic use during labour and maternal chronic diseases will be collected anonymously without any other personal or time data. One hundred meconium samples from a single maternity hospital will be paired with the mothers' questionnaires. For this sub-group of meconium samples, permission for sampling and pairing with questionnaire answers will be obtained from the mothers. Here also there will be no personal data collection, the meconium sample and mother's questionnaire will be paired through code. The samples will be analysed in the IFM toxicology laboratory. For the study, a new analytical method for the examination of meconium will be introduced in Slovenia.2. National survey on the lifestyle will be conducted in Slovenian maternity hospitals, including questions on alcohol and drug use during pregnancy. The survey will be anonymous and not related to meconium sampling; participation in the survey will be voluntary. Women will be given access to the online survey, after receiving information about the aim of the study, the method used to ensure anonymity and the collection methods.3. Microbiome analysis: all meconium samples that will test positive for alcohol and cannabis metabolites, as well as two negative meconium samples per every positive meconium sample, will be included in the analysis of meconium microbiome composition. In the final part of the study-the comparison of the microbiome-all meconium samples positive for alcohol or cannabis metabolites will be included. Microbiome analysis will be carried out in the final phase of the study within the framework of the Million Microbiomes from Humans Project consortium and the Slovenian Metabolomics Database (in preparation). The molecular data obtained from metagenomic sequencing will be analysed on the Slovenian supercomputing infrastructure (Vega, Maister) using tools developed and employed on the supercomputing network by the interdisciplinary group. The investigators will generate taxonomic matrices of bacteria, archaea, fungi, protozoa, and DNA viruses; diversity matrices (35 diversity indices); functional gene matrices (20 million groups); enzymatic reaction matrices (500,000 categories); metabolic pathway matrices (100,000 variables); and metabolite matrices (1,000 variables). The collected data and their transformation from molecular into numerical formats will serve as the basis for machine learning (standardization, normalization, evaluation of sample separation and classification performance using different algorithms and hyperparameters), identification of biomarker networks (n > 100), and nonparametric statistical analysis of the gut microbiome. Statistical analysis: Statistical data analysis will be performed using the IBM SPSS Statistics 25 software package. Descriptive statistical methods will be used to characterize the population of postpartum women participating in the survey and to summarize the collected data. The prevalence of alcohol or cannabis use among pregnant women will be calculated based on the number of meconium samples positive for alcohol or cannabis metabolites. The prevalence of alcohol and cannabis use based on self-reporting will be calculated separately. Molecular data obtained from microbiome analysis will be converted into numerical data and used for machine learning (standardization, normalization, evaluation of sample separation and classification performance using different algorithms and hyperparameters), identification of biomarker networks (n > 100), and nonparametric statistical analysis of the gut microbiome, as conducted by the interdisciplinary group. The obtained data will then be statistically compared between the group of meconium samples positive for alcohol and cannabis metabolites and the group of meconium samples in which these metabolites were not present. Expected results: To determine the prevalence of alcohol and drug use among pregnant women in Slovenia. Data on alcohol and drug metabolites obtained from meconium samples will be compared with survey results, where the prevalence of alcohol and drug use is determined by self-report. This will enable us to assess the reliability of self-reporting. The results of the study will provide an estimate of the prevalence of fetal alcohol syndrome (FAS) and fetal alcohol spectrum disorders (FASD) in Slovenia and support the development of strategies to increase awareness among healthcare professionals and the general public regarding the prevalence and consequences of alcohol and drug use during pregnancy. The findings will also inform the planning of preventive measures and targeted interventions for pregnant women, as well as the establishment of multidisciplinary diagnostic teams for FAS and FASD. Regarding the microbiome, differences in the composition of the meconium microbiome are expected between samples testing positive for alcohol or cannabis exposure and those testing negative, while accounting for potential confounding factors, including sex, gestational age, intrapartum antibiotic exposure, and the presence of chronic maternal diseases.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
for participation the questionnaire survey:
Exclusion criteria
for participation the questionnaire survey:
Inclusion criteria
for meconium samples:
Exclusion criteria
for meconium samples:
Probability sampling will be applied to the selection of meconium samples, which will be collected randomly. In contrast, postpartum women will be recruited upon invitation, representing a non-probability (convenience) sample.
Time frame: From all the collected samples in one year period.
Prevalence of prenatal alcohol and cannabis exposure in Slovenia, determined by the detection of alcohol and cannabis metabolites (concentration of ethyl glucuronide (EtG) and/or ethyl sulfate (EtS) exceeded 30 ng/g; delta-9-tetrahydrocannabinol (THC), 11-nor-9-carboxy-THC (THC-COOH) and/or 11-hydroxy-THC (THC-OH) exceeded 10 ng/g) in newborns' meconium samples.
Time frame: 1 year
Prevalence of alcohol and cannabis use during pregnancy (proportion of pregnant women reporting alcohol and cannabis use during pregnancy) in Slovenia, determined from self-reported data collected using a structured questionnaire.
Time frame: Meconium samples collected approximately 12 months. Biomarker analyses 12 months after sample collection. Metagenomic sequencing and microbiome analyses over the subsequent 6 months.
Meconium microbiome composition will be assessed by metagenomic sequencing. Taxonomic profiles (bacteria, archaea, fungi, protozoa, and DNA viruses), microbial diversity indices, functional gene profiles, enzyme reaction categories, metabolic pathways, and metabolite profiles will be generated and compared between newborns with and without prenatal alcohol and/or cannabis exposure, while accounting for potential confounding factors.
Time frame: One year period.
Proportion of postpartum women reporting tobacco use during the three months before pregnancy and during pregnancy, assessed using the Health Behaviour during Pregnancy questionnaire (a modified CINDI questionnaire).
Time frame: One year period.
Self-reported dietary habits during the three months before pregnancy and during pregnancy, assessed using selected items from the Health Behaviour during Pregnancy questionnaire (a modified CINDI questionnaire).
Time frame: One year period.
Self-reported physical activity during the three months before pregnancy and during pregnancy, assessed using selected items from the Health Behaviour during Pregnancy questionnaire (a modified CINDI questionnaire).
Time frame: One year period.
Self-reported mental well-being during the three months before pregnancy and during pregnancy, assessed using selected items from the Health Behaviour during Pregnancy questionnaire (a modified CINDI questionnaire).
University Medical Centre Ljubljana
Other
Assessment of Alcohol and Cannabis Use Among Pregnant Women in Slovenia and Meconium Microbiome Analysis of Positive Samples
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