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1.
N Engl J Med ; 390(12): 1069-1079, 2024 Mar 21.
Article in English | MEDLINE | ID: mdl-38507750

ABSTRACT

BACKGROUND: Maternal use of valproate during pregnancy has been associated with an increased risk of neurodevelopmental disorders in children. Although most studies of other antiseizure medications have not shown increased risks of these disorders, there are limited and conflicting data regarding the risk of autism spectrum disorder associated with maternal topiramate use. METHODS: We identified a population-based cohort of pregnant women and their children within two health care utilization databases in the United States, with data from 2000 through 2020. Exposure to specific antiseizure medications was defined on the basis of prescription fills from gestational week 19 until delivery. Children who had been exposed to topiramate during the second half of pregnancy were compared with those unexposed to any antiseizure medication during pregnancy with respect to the risk of autism spectrum disorder. Valproate was used as a positive control, and lamotrigine was used as a negative control. RESULTS: The estimated cumulative incidence of autism spectrum disorder at 8 years of age was 1.9% for the full population of children who had not been exposed to antiseizure medication (4,199,796 children). With restriction to children born to mothers with epilepsy, the incidence was 4.2% with no exposure to antiseizure medication (8815 children), 6.2% with exposure to topiramate (1030 children), 10.5% with exposure to valproate (800 children), and 4.1% with exposure to lamotrigine (4205 children). Propensity score-adjusted hazard ratios in a comparison with no exposure to antiseizure medication were 0.96 (95% confidence interval [CI], 0.56 to 1.65) for exposure to topiramate, 2.67 (95% CI, 1.69 to 4.20) for exposure to valproate, and 1.00 (95% CI, 0.69 to 1.46) for exposure to lamotrigine. CONCLUSIONS: The incidence of autism spectrum disorder was higher among children prenatally exposed to the studied antiseizure medications than in the general population. However, after adjustment for indication and other confounders, the association was substantially attenuated for topiramate and lamotrigine, whereas an increased risk remained for valproate. (Funded by the National Institute of Mental Health.).


Subject(s)
Anticonvulsants , Autism Spectrum Disorder , Lamotrigine , Prenatal Exposure Delayed Effects , Topiramate , Valproic Acid , Child , Female , Humans , Pregnancy , Anticonvulsants/adverse effects , Anticonvulsants/therapeutic use , Autism Spectrum Disorder/chemically induced , Autism Spectrum Disorder/epidemiology , Autism Spectrum Disorder/etiology , Autistic Disorder/chemically induced , Autistic Disorder/epidemiology , Autistic Disorder/etiology , Lamotrigine/adverse effects , Lamotrigine/therapeutic use , Prenatal Exposure Delayed Effects/epidemiology , Prenatal Exposure Delayed Effects/chemically induced , Prenatal Exposure Delayed Effects/drug therapy , Topiramate/adverse effects , Topiramate/therapeutic use , Valproic Acid/adverse effects , Valproic Acid/therapeutic use , Epilepsy/drug therapy
2.
Proc Natl Acad Sci U S A ; 121(21): e2313207121, 2024 May 21.
Article in English | MEDLINE | ID: mdl-38753512

ABSTRACT

Arginine vasopressin (AVP) neurons of the hypothalamic paraventricular region (AVPPVN) mediate sex-biased social behaviors across most species, including mammals. In mice, neural sex differences are thought to be established during a critical window around birth ( embryonic (E) day 18 to postnatal (P) day 2) whereby circulating testosterone from the fetal testis is converted to estrogen in sex-dimorphic brain regions. Here, we found that AVPPVN neurons are sexually dimorphic by E15.5, prior to this critical window, and that gestational bisphenol A (BPA) exposure permanently masculinized female AVPPVN neuronal numbers, projections, and electrophysiological properties, causing them to display male-like phenotypes into adulthood. Moreover, we showed that nearly twice as many neurons that became AVP+ by P0 were born at E11 in males and BPA-exposed females compared to control females, suggesting that AVPPVN neuronal masculinization occurs between E11 and P0. We further narrowed this sensitive period to around the timing of neurogenesis by demonstrating that exogenous estrogen exposure from E14.5 to E15.5 masculinized female AVPPVN neuronal numbers, whereas a pan-estrogen receptor antagonist exposed from E13.5 to E15.5 blocked masculinization of males. Finally, we showed that restricting BPA exposure to E7.5-E15.5 caused adult females to display increased social dominance over control females, consistent with an acquisition of male-like behaviors. Our study reveals an E11.5 to E15.5 window of estrogen sensitivity impacting AVPPVN sex differentiation, which is impacted by prenatal BPA exposure.


Subject(s)
Benzhydryl Compounds , Neurons , Phenols , Sex Differentiation , Animals , Benzhydryl Compounds/toxicity , Phenols/toxicity , Female , Male , Mice , Sex Differentiation/drug effects , Neurons/drug effects , Neurons/metabolism , Pregnancy , Hypothalamus/metabolism , Hypothalamus/drug effects , Neurogenesis/drug effects , Arginine Vasopressin/metabolism , Vasopressins/metabolism , Prenatal Exposure Delayed Effects/chemically induced , Prenatal Exposure Delayed Effects/metabolism , Paraventricular Hypothalamic Nucleus/drug effects , Paraventricular Hypothalamic Nucleus/metabolism , Mice, Inbred C57BL , Estrogens/metabolism , Estrogens/pharmacology
3.
Proc Natl Acad Sci U S A ; 120(50): e2304074120, 2023 Dec 12.
Article in English | MEDLINE | ID: mdl-38051767

ABSTRACT

Severity of neurobehavioral deficits in children born from adverse pregnancies, such as maternal alcohol consumption and diabetes, does not always correlate with the adversity's duration and intensity. Therefore, biological signatures for accurate prediction of the severity of neurobehavioral deficits, and robust tools for reliable identification of such biomarkers, have an urgent clinical need. Here, we demonstrate that significant changes in the alternative splicing (AS) pattern of offspring lymphocyte RNA can function as accurate peripheral biomarkers for motor learning deficits in mouse models of prenatal alcohol exposure (PAE) and offspring of mother with diabetes (OMD). An aptly trained deep-learning model identified 29 AS events common to PAE and OMD as superior predictors of motor learning deficits than AS events specific to PAE or OMD. Shapley-value analysis, a game-theory algorithm, deciphered the trained deep-learning model's learnt associations between its input, AS events, and output, motor learning performance. Shapley values of the deep-learning model's input identified the relative contribution of the 29 common AS events to the motor learning deficit. Gene ontology and predictive structure-function analyses, using Alphafold2 algorithm, supported existing evidence on the critical roles of these molecules in early brain development and function. The direction of most AS events was opposite in PAE and OMD, potentially from differential expression of RNA binding proteins in PAE and OMD. Altogether, this study posits that AS of lymphocyte RNA is a rich resource, and deep-learning is an effective tool, for discovery of peripheral biomarkers of neurobehavioral deficits in children of diverse adverse pregnancies.


Subject(s)
Diabetes Mellitus , Fetal Alcohol Spectrum Disorders , Prenatal Exposure Delayed Effects , Mice , Animals , Child , Humans , Pregnancy , Female , Alternative Splicing , Prenatal Exposure Delayed Effects/chemically induced , Ethanol , Diabetes Mellitus/chemically induced , Biomarkers/metabolism , RNA/metabolism , Fetal Alcohol Spectrum Disorders/genetics
4.
Am J Pathol ; 194(9): 1636-1663, 2024 Sep.
Article in English | MEDLINE | ID: mdl-39182948

ABSTRACT

Air pollution exposure during pregnancy may affect fetal growth. Fetal growth restriction (FGR) is associated with reduced lung function in children that can persist into adulthood. Using an established model of asymmetrical FGR in Long-Evans rats, this study investigated sex differences in effects of early life ozone exposure on lung development and maturation. Adverse health effects for i) gestational exposure (with impacts on primary alveolarization), ii) peri-adolescent exposure (with impacts on secondary alveolarization), and iii) cumulative exposure across both periods were evaluated. Notably, female offspring were most affected by gestational ozone exposure, likely because of impaired angiogenesis and corresponding decreases in primary alveolarization. Females had diminished lung capacity, fewer mature alveoli, and medial hypertrophy of small and large pulmonary arteries. Males, especially FGR-prone offspring, were more affected by peri-adolescent ozone exposure. Males had increased ductal areas, likely due to disrupted secondary alveolarization. Altered lung development may increase risk of developing diseases, such as pulmonary arterial hypertension or chronic obstructive pulmonary disease. Pulmonary arterial hypertension disproportionately affects women. In the United States, chronic obstructive pulmonary disease prevalence is increasing, especially in women; and prevalence for both men and women is highest in urbanized areas. This investigation underlines the importance of evaluating results separately by sex, and provides biologic plausibility for later consequences of early-life exposure to ozone, a ubiquitous urban air pollutant.


Subject(s)
Lung , Ozone , Prenatal Exposure Delayed Effects , Rats, Long-Evans , Animals , Ozone/toxicity , Ozone/adverse effects , Female , Male , Pregnancy , Lung/drug effects , Lung/pathology , Lung/growth & development , Rats , Prenatal Exposure Delayed Effects/chemically induced , Prenatal Exposure Delayed Effects/pathology , Sex Characteristics , Humans , Fetal Growth Retardation/chemically induced , Fetal Growth Retardation/pathology , Air Pollutants/toxicity , Air Pollutants/adverse effects
5.
Trends Immunol ; 43(3): 230-244, 2022 03.
Article in English | MEDLINE | ID: mdl-35131181

ABSTRACT

Exposure to heightened inflammation in pregnancy caused by infections or other inflammatory insults has been associated with the onset of neurodevelopmental and psychiatric disorders in children. Rodent models have provided unique insights into how this maternal immune activation (MIA) disrupts brain development. Here, we discuss the key immune factors involved, highlight recent advances in determining the molecular and cellular pathways of MIA, and review how the maternal immune system affects fetal development. We also examine the roles of microbiomes in shaping maternal immune function and the development of autism-like phenotypes. A comprehensive understanding of the gut bacteria-immune-neuro interaction in MIA is essential for developing diagnostic and therapeutic measures for high-risk pregnant women and identifying targets for treating inflammation-induced neurodevelopmental disorders.


Subject(s)
Microbiota , Prenatal Exposure Delayed Effects , Animals , Disease Models, Animal , Female , Humans , Immune System , Inflammation/immunology , Pregnancy , Prenatal Exposure Delayed Effects/chemically induced , Prenatal Exposure Delayed Effects/immunology
7.
Am J Physiol Lung Cell Mol Physiol ; 327(3): L341-L358, 2024 Sep 01.
Article in English | MEDLINE | ID: mdl-39012058

ABSTRACT

Development of the respiratory system can be affected by the use of drugs during pregnancy, as the prenatal phase is highly sensitive to pharmacological interventions, resulting in long-term consequences. The deleterious effects of external cannabinoids during gestation may be related to negative interference in central nervous system formation, cardiorespiratory system function, and behavioral disorders. Nevertheless, the impact of external cannabinoids on cardiorespiratory network development, chemosensitivity, and its future consequences in adulthood is still unclear. We evaluated the effects of prenatal exposure to a synthetic cannabinoid (WIN 55,212-2, 0.5 mg·kg-1·day-1) on the cardiorespiratory control and panic-like behavior of male and female rats in adulthood. Exogenous cannabinoid exposure during pregnancy resulted in a sex-dependent difference in breathing control. Specifically, males showed increased chemosensitivity to CO2 and O2, whereas females exhibited decreased sensitivity. Altered cardiovascular control was evident, with prenatally treated males and females being more susceptible to hypertension and tachycardia under adverse environmental conditions. Moreover, WIN-treated males exhibited higher fragmentation of sleep episodes, whereas females displayed anxiolytic and panicolytic behavioral responses to CO2. However, no changes were observed in the mechanical component of the respiratory system, and there were no neuroanatomical alterations, such as changes in the expression of CB1 receptors in the brainstem or in the quantification of catecholaminergic and serotonergic neurons. These findings highlight that external interference in cannabinoid signaling during fetal development causes sex-specific, long-lasting effects for the cardiorespiratory system and behavioral responses in adulthood.NEW & NOTEWORTHY The surge in recreational cannabis use and cannabinoid-based medication prescription among pregnant women has been notable in recent years, fueled by the misconception that natural products are inherently safe. Significant gaps persist regarding the potential risks of maternal consumption of cannabinoids and the long-term effects on the cardiorespiratory system of their offspring, which may be determined by sex. Accordingly, this research aims to diminish this lack of information and raise a note of caution.


Subject(s)
Cannabinoids , Prenatal Exposure Delayed Effects , Animals , Female , Pregnancy , Male , Prenatal Exposure Delayed Effects/chemically induced , Prenatal Exposure Delayed Effects/pathology , Cannabinoids/pharmacology , Cannabinoids/adverse effects , Rats , Behavior, Animal/drug effects , Benzoxazines/pharmacology , Benzoxazines/adverse effects , Rats, Wistar , Naphthalenes/pharmacology , Naphthalenes/toxicity , Naphthalenes/adverse effects , Respiration/drug effects , Morpholines/pharmacology
8.
Int J Cancer ; 154(4): 626-635, 2024 Feb 15.
Article in English | MEDLINE | ID: mdl-37792464

ABSTRACT

While associations between maternal infections during pregnancy and childhood leukemia in offspring have been extensively studied, the evidence for other types of childhood cancers is limited. Additionally, antibiotic exposure during pregnancy could potentially increase the risk of childhood cancers. Our study investigates associations between maternal infections and antibiotic prescriptions during pregnancy and the risk of childhood cancer in Taiwan. We conducted a population-based cohort study using the Taiwan Maternal and Child Health Database (TMCHD), linked with national health and cancer registries. The study included 2 267 186 mother-child pairs, and the median follow-up time was 7.96 years. Cox proportional hazard models were utilized to estimate effects. Maternal infections during pregnancy were associated with a moderate increase in the risk of childhood hepatoblastoma (adjusted hazard ratio [HR] = 1.34; 95% confidence interval [CI]: 0.90-1.98) and a weaker increase in the risk of childhood acute lymphoblastic leukemia (ALL) (adjusted HR = 1.15; 95% CI: 0.99-1.35). Antibiotic prescriptions during pregnancy were also associated with an elevated risk of childhood ALL (adjusted HR = 1.30; 95% CI: 1.04-1.63), particularly with tetracyclines (adjusted HR = 2.15; 95% CI: 1.34-3.45). Several specific antibiotics were also associated with an increased risk of hepatoblastoma and medulloblastoma. Children exposed in utero to antibiotic prescription or both infections and antibiotics during pregnancy were at higher risk of developing ALL. Our findings suggest that there are associations between maternal infections, antibiotic use during pregnancy and the risk of several childhood cancers in addition to ALL and highlight the importance of further research in this area.


Subject(s)
Hepatoblastoma , Leukemia, Myeloid, Acute , Liver Neoplasms , Prenatal Exposure Delayed Effects , Child , Pregnancy , Female , Humans , Cohort Studies , Prenatal Exposure Delayed Effects/epidemiology , Prenatal Exposure Delayed Effects/chemically induced , Anti-Bacterial Agents/adverse effects , Taiwan/epidemiology , Leukemia, Myeloid, Acute/chemically induced , Liver Neoplasms/chemically induced , Prescriptions , Risk Factors
9.
Am J Epidemiol ; 193(2): 308-322, 2024 Feb 05.
Article in English | MEDLINE | ID: mdl-37671942

ABSTRACT

This study explores natural direct and joint natural indirect effects (JNIE) of prenatal opioid exposure on neurodevelopmental disorders (NDDs) in children mediated through pregnancy complications, major and minor congenital malformations, and adverse neonatal outcomes, using Medicaid claims linked to vital statistics in Rhode Island, United States, 2008-2018. A Bayesian mediation analysis with elastic net shrinkage prior was developed to estimate mean time to NDD diagnosis ratio using posterior mean and 95% credible intervals (CrIs) from Markov chain Monte Carlo algorithms. Simulation studies showed desirable model performance. Of 11,176 eligible pregnancies, 332 had ≥2 dispensations of prescription opioids anytime during pregnancy, including 200 (1.8%) having ≥1 dispensation in the first trimester (T1), 169 (1.5%) in the second (T2), and 153 (1.4%) in the third (T3). A significant JNIE of opioid exposure was observed in each trimester (T1, JNIE = 0.97, 95% CrI: 0.95, 0.99; T2, JNIE = 0.97, 95% CrI: 0.95, 0.99; T3, JNIE = 0.96, 95% CrI: 0.94, 0.99). The proportion of JNIE in each trimester was 17.9% (T1), 22.4% (T2), and 56.3% (T3). In conclusion, adverse pregnancy and birth outcomes jointly mediated the association between prenatal opioid exposure and accelerated time to NDD diagnosis. The proportion of JNIE increased as the timing of opioid exposure approached delivery.


Subject(s)
Neurodevelopmental Disorders , Prenatal Exposure Delayed Effects , Pregnancy , Female , Infant, Newborn , Child , Humans , United States/epidemiology , Analgesics, Opioid/adverse effects , Mediation Analysis , Prenatal Exposure Delayed Effects/chemically induced , Prenatal Exposure Delayed Effects/epidemiology , Bayes Theorem , Neurodevelopmental Disorders/chemically induced , Neurodevelopmental Disorders/epidemiology , Neurodevelopmental Disorders/drug therapy
10.
EMBO J ; 39(1): e100882, 2020 01 02.
Article in English | MEDLINE | ID: mdl-31750562

ABSTRACT

Maternal drug abuse during pregnancy is a rapidly escalating societal problem. Psychostimulants, including amphetamine, cocaine, and methamphetamine, are amongst the illicit drugs most commonly consumed by pregnant women. Neuropharmacology concepts posit that psychostimulants affect monoamine signaling in the nervous system by their affinities to neurotransmitter reuptake and vesicular transporters to heighten neurotransmitter availability extracellularly. Exacerbated dopamine signaling is particularly considered as a key determinant of psychostimulant action. Much less is known about possible adverse effects of these drugs on peripheral organs, and if in utero exposure induces lifelong pathologies. Here, we addressed this question by combining human RNA-seq data with cellular and mouse models of neuroendocrine development. We show that episodic maternal exposure to psychostimulants during pregnancy coincident with the intrauterine specification of pancreatic ß cells permanently impairs their ability of insulin production, leading to glucose intolerance in adult female but not male offspring. We link psychostimulant action specifically to serotonin signaling and implicate the sex-specific epigenetic reprogramming of serotonin-related gene regulatory networks upstream from the transcription factor Pet1/Fev as determinants of reduced insulin production.


Subject(s)
Diabetes Mellitus, Type 2/etiology , Glucose Intolerance/etiology , Glucose/metabolism , Homeostasis/drug effects , Islets of Langerhans/pathology , Methamphetamine/toxicity , Prenatal Exposure Delayed Effects/chemically induced , Animals , Central Nervous System Stimulants/toxicity , DNA Methylation , Diabetes Mellitus, Type 2/genetics , Diabetes Mellitus, Type 2/metabolism , Diabetes Mellitus, Type 2/pathology , Female , Gene Expression Profiling , Gene Expression Regulation , Glucose Intolerance/genetics , Glucose Intolerance/metabolism , Glucose Intolerance/pathology , Humans , Islets of Langerhans/drug effects , Islets of Langerhans/metabolism , Male , Maternal Exposure/adverse effects , Mice , Pregnancy , Prenatal Exposure Delayed Effects/genetics , Prenatal Exposure Delayed Effects/metabolism , Prenatal Exposure Delayed Effects/pathology
11.
J Neuroinflammation ; 21(1): 118, 2024 May 07.
Article in English | MEDLINE | ID: mdl-38715090

ABSTRACT

Maternal inflammation during gestation is associated with a later diagnosis of neurodevelopmental disorders including autism spectrum disorder (ASD). However, the specific impact of maternal immune activation (MIA) on placental and fetal brain development remains insufficiently understood. This study aimed to investigate the effects of MIA by analyzing placental and brain tissues obtained from the offspring of pregnant C57BL/6 dams exposed to polyinosinic: polycytidylic acid (poly I: C) on embryonic day 12.5. Cytokine and mRNA content in the placenta and brain tissues were assessed using multiplex cytokine assays and bulk-RNA sequencing on embryonic day 17.5. In the placenta, male MIA offspring exhibited higher levels of GM-CSF, IL-6, TNFα, and LT-α, but there were no differences in female MIA offspring. Furthermore, differentially expressed genes (DEG) in the placental tissues of MIA offspring were found to be enriched in processes related to synaptic vesicles and neuronal development. Placental mRNA from male and female MIA offspring were both enriched in synaptic and neuronal development terms, whereas females were also enriched for terms related to excitatory and inhibitory signaling. In the fetal brain of MIA offspring, increased levels of IL-28B and IL-25 were observed with male MIA offspring and increased levels of LT-α were observed in the female offspring. Notably, we identified few stable MIA fetal brain DEG, with no male specific difference whereas females had DEG related to immune cytokine signaling. Overall, these findings support the hypothesis that MIA contributes to the sex- specific abnormalities observed in ASD, possibly through altered neuron developed from exposure to inflammatory cytokines. Future research should aim to investigate how interactions between the placenta and fetal brain contribute to altered neuronal development in the context of MIA.


Subject(s)
Brain , Cytokines , Mice, Inbred C57BL , Neurodevelopmental Disorders , Placenta , Prenatal Exposure Delayed Effects , Sex Characteristics , Female , Animals , Pregnancy , Male , Cytokines/metabolism , Cytokines/genetics , Mice , Brain/metabolism , Brain/immunology , Brain/embryology , Placenta/metabolism , Placenta/immunology , Prenatal Exposure Delayed Effects/immunology , Prenatal Exposure Delayed Effects/metabolism , Prenatal Exposure Delayed Effects/chemically induced , Neurodevelopmental Disorders/genetics , Neurodevelopmental Disorders/immunology , Neurodevelopmental Disorders/metabolism , Poly I-C/toxicity , Transcriptome , Disease Models, Animal , Fetus/metabolism
12.
J Neurosci Res ; 102(7): e25369, 2024 Jul.
Article in English | MEDLINE | ID: mdl-39037062

ABSTRACT

Cannabis consumption has increased from 1.5% to 2.5% in Canada between 2012 and 2019. Clinical studies have indicated effects of prenatal cannabis exposure on birth weight, substance use, and neurodevelopmental disorders, but are confounded by several difficult to control variables. Animal models allow for examination of the mechanism of cannabis-induced changes in neurodevelopment and behavior, while controlling dose and timing. Several animal models of prenatal cannabis exposure exist which provide varying levels of construct validity, control of dose, and exposure to maternal stress. Using a voluntary oral consumption model, mouse dams received 5 mg/kg Δ9-tetrahydrocannabinol (THC) whole cannabis oil in peanut butter daily from gestational day 1 (GD1) to postnatal day 10 (PD10). At GD1, GD18, PD1, PD10, and PD15, maternal plasma was collected; pup brains were collected from GD18 onward. Pup brains had higher levels of THC and cannabidiol at each time point, each of which persisted in maternal plasma and pup brains past the end of treatment (PD15). Male and female adolescent offspring were examined for changes to ventral tegmental area (VTA) dopamine neuron activity and cocaine-seeking behavior. Prenatal and early postnatal (GD1-PD10) cannabis-exposed male, but not female mice had decreased gamma-aminobutyric acid (GABAergic) input, depolarized resting membrane potential, and increased spontaneous firing of VTA dopamine neurons. Cannabis-exposed offspring showed faster decay of N-methyl-D-aspartate (NMDA) currents in both sexes. However, no differences in cocaine-seeking behavior were noted. These data characterize a voluntary prenatal cannabis exposure model and demonstrates VTA dopamine neuronal activity is disinhibited in offspring.


Subject(s)
Cocaine , Dopaminergic Neurons , Prenatal Exposure Delayed Effects , Ventral Tegmental Area , Animals , Female , Ventral Tegmental Area/drug effects , Ventral Tegmental Area/metabolism , Pregnancy , Mice , Prenatal Exposure Delayed Effects/chemically induced , Dopaminergic Neurons/drug effects , Dopaminergic Neurons/metabolism , Male , Cocaine/pharmacology , Cocaine/toxicity , Dronabinol/toxicity , Dronabinol/pharmacology , Mice, Inbred C57BL , Cannabis
13.
Biol Reprod ; 110(5): 1025-1037, 2024 May 09.
Article in English | MEDLINE | ID: mdl-38381622

ABSTRACT

Prenatal exposure to Di (2-ethylhexyl) phthalate (DEHP) impairs the reproductive system and causes fertility defects in male offspring. Additionally, high-fat (HF) diet is a risk factor for reproductive disorders in males. In this study, we tested the hypothesis that prenatal exposure to a physiologically relevant dose of DEHP in conjunction with HF diet synergistically impacts reproductive function and fertility in male offspring. Female mice were fed a control or HF diet 7 days prior to mating and until their litters were weaned on postnatal day 21. Pregnant dams were exposed to DEHP or vehicle from gestational day 10.5 until birth. The male offspring's gross phenotype, sperm quality, serum hormonal levels, testicular histopathology, and testicular gene expression pattern were analyzed. Male mice born to dams exposed to DEHP + HF had smaller testes, epididymides, and shorter anogenital distance compared with those exposed to HF or DEHP alone. DEHP + HF mice had lower sperm concentration and motility compared with DEHP mice. Moreover, DEHP + HF mice had more apoptotic germ cells, fewer Leydig cells, and lower serum testosterone levels than DEHP mice. Furthermore, testicular mRNA expression of Dnmt1 and Dnmt3a was two to eight-fold higher than in DEHP mice by qPCR, suggesting that maternal HF diet and prenatal DEHP exposure additively impact gonadal function by altering the degree of DNA methylation in the testis. These results suggest that the combined exposure to DEHP and high-fat synergistically impairs reproductive function in male offspring, greater than exposure to DEHP or HF diet alone.


Subject(s)
Diet, High-Fat , Diethylhexyl Phthalate , Prenatal Exposure Delayed Effects , Testis , Animals , Female , Male , Diethylhexyl Phthalate/toxicity , Mice , Pregnancy , Prenatal Exposure Delayed Effects/chemically induced , Diet, High-Fat/adverse effects , Testis/drug effects , Testis/pathology , Spermatozoa/drug effects
14.
Biol Reprod ; 111(2): 496-511, 2024 Aug 15.
Article in English | MEDLINE | ID: mdl-38813940

ABSTRACT

Obesity and ovotoxicant exposures impair female reproductive health with greater ovotoxicity reported in obese relative to lean females. The mother and developing fetus are vulnerable to both during gestation. 7,12-dimethylbenz[a]anthracene (DMBA) is released during carbon combustion including from cigarettes, coal, fossil fuels, and forest fires. This study investigated the hypothesis that diet-induced obesity would increase sensitivity of the ovaries to DMBA-induced ovotoxicity and determined impacts of both obesity and DMBA exposure during gestation on the maternal ovary. Female C57BL/6 J mice were fed a control or a High Sugar High Fat (45% kcal from fat; 20% kcal from sucrose) diet until ~30% weight gain was attained before mating with unexposed males. From gestation Day 7, mice were exposed intraperitoneally to either vehicle control (corn oil) or DMBA (1 mg/kg diluted in corn oil) for 7 d. Thus, there were four groups: lean control (LC); lean DMBA exposed; obese control; obese DMBA exposed. Gestational obesity and DMBA exposure decreased (P < 0.05) ovarian and increased liver weights relative to LC dams, but there was no treatment impact (P > 0.05) on spleen weight or progesterone. Also, obesity exacerbated the DMBA reduction (P < 0.05) in the number of primordial, secondary follicles, and corpora lutea. In lean mice, DMBA exposure altered abundance of 21 proteins; in obese dams, DMBA exposure affected 134 proteins while obesity alone altered 81 proteins in the maternal ovary. Thus, the maternal ovary is impacted by DMBA exposure and metabolic status influences the outcome.


Subject(s)
9,10-Dimethyl-1,2-benzanthracene , Diet, High-Fat , Mice, Inbred C57BL , Obesity , Ovary , Proteome , Animals , Female , Diet, High-Fat/adverse effects , Pregnancy , Mice , Ovary/drug effects , Ovary/metabolism , Obesity/chemically induced , Obesity/metabolism , Obesity/etiology , Proteome/metabolism , Proteome/drug effects , 9,10-Dimethyl-1,2-benzanthracene/toxicity , Prenatal Exposure Delayed Effects/chemically induced , Ovarian Follicle/drug effects , Carcinogens/toxicity
15.
Int J Obes (Lond) ; 48(2): 276-283, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38042932

ABSTRACT

BACKGROUND/OBJECTIVES: Observational and experimental studies have suggested that prenatal exposure to per- and polyfluoroalkyl substances (PFAS) can increase childhood adiposity and cardiometabolic disruption. However, most previous studies have used weight-based measures that cannot distinguish between fat mass and lean mass. We evaluated associations of prenatal PFAS exposure with precisely measured body composition and cardiometabolic biomarkers in early childhood. SUBJECTS: 373 eligible mother-infant pairs in the Healthy Start longitudinal cohort. METHODS: We used multiple linear regression and Bayesian kernel machine regression models to estimate associations between five PFAS in maternal mid-pregnancy serum, and early childhood adiposity via air displacement plethysmography. Secondary outcomes included body mass index, waist circumference, and fasting serum lipids, glucose, insulin and adipokines. Models were adjusted for potential confounders and effect modification by child sex was evaluated. RESULTS: The median age of children at assessment was 4.6 years. Prenatal concentration of perfluorooctanoate (PFOA) was positively associated with percent fat mass (0.89% per log2-unit increase, 95% CI: 0.15, 1.64), while perfluorononanoate (PFNA) was positively associated with fat mass index and body mass index. Cardiometabolic markers in blood were generally not associated with prenatal PFAS in this population. Mixture models confirmed the importance of PFNA and PFOA in predicting percent fat mass, while PFNA was most important for fat mass index, body mass index, and waist circumference. There were no significant effects of the five PFAS as a mixture, potentially due to opposing effects of different PFAS. CONCLUSIONS: Our results agree with previous studies showing that prenatal serum concentrations of certain PFAS are positively associated with early childhood adiposity. Notably, associations were stronger for measures incorporating precisely measured fat mass compared to measures of body size or weight. Early life increases in adiposity may precede the development of adverse cardiometabolic health outcomes in children exposed to PFAS during gestation.


Subject(s)
Caprylates , Cardiovascular Diseases , Environmental Pollutants , Fluorocarbons , Pediatric Obesity , Prenatal Exposure Delayed Effects , Child , Pregnancy , Female , Humans , Child, Preschool , Adiposity , Prenatal Exposure Delayed Effects/chemically induced , Bayes Theorem , Pediatric Obesity/epidemiology , Pediatric Obesity/chemically induced , Cardiovascular Diseases/chemically induced
16.
Cancer Causes Control ; 35(7): 1053-1061, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38557933

ABSTRACT

BACKGROUND: Childhood cancers are associated with high mortality and morbidity, and some maternal prescription drug use during pregnancy has been implicated in cancer risk. There are few studies on the effects of hypertension, preeclampsia, and the use of antihypertensives in pregnancy on children's cancer risks. OBJECTIVE: This population-based cohort study analyzed the relationship between hypertension, preeclampsia, and antihypertensives taken during pregnancy and the risks of childhood cancers in the offspring. METHODS: Data on all children born in Taiwan between 2004 and 2015 (N = 2,294,292) were obtained from the Maternal and Child Health Database. This registry was linked with the National Health Insurance Database and Cancer Registry to get the records of maternal use of diuretics or other antihypertensives in pregnancy and records of children with cancer diagnosed before 13 years. We used Cox proportional hazard modeling to estimate the influence of maternal health conditions and antihypertensive drug exposure on the risks of developing childhood cancers. RESULTS: Offspring of mothers with hypertension (chronic or gestational) had a higher risk of acute lymphocytic lymphoma [hazard ratio (HR) = 1.87, 95% Confidence Interval (CI) 1.32 - 2.65] and non-Hodgkin's lymphoma (HR = 1.96, 95% CI 1.34 - 2.86). We estimated only a weak increased cancer risk in children whose mothers used diuretics (HR = 1.16, 95% CI 0.77 - 1.74) or used antihypertensives other than diuretics (HR = 1.15, 95% CI 0.86 - 1.54) before birth. CONCLUSIONS: In this cohort study, children whose mothers had chronic and gestational hypertension had an increased risk of developing childhood cancer.


Subject(s)
Antihypertensive Agents , Hypertension , Neoplasms , Prenatal Exposure Delayed Effects , Humans , Female , Pregnancy , Taiwan/epidemiology , Neoplasms/epidemiology , Antihypertensive Agents/adverse effects , Antihypertensive Agents/therapeutic use , Child , Prenatal Exposure Delayed Effects/epidemiology , Prenatal Exposure Delayed Effects/chemically induced , Male , Hypertension/epidemiology , Child, Preschool , Adult , Cohort Studies , Risk Factors , Infant , Infant, Newborn , Adolescent , Registries , Young Adult
17.
Genet Med ; 26(10): 101226, 2024 Oct.
Article in English | MEDLINE | ID: mdl-39097820

ABSTRACT

PURPOSE: Valproic acid or valproate is an effective antiepileptic drug; however, embryonic exposure to valproate can result in a teratogenic disorder referred to as fetal valproate syndrome (OMIM #609442). Currently there are no diagnostic biomarkers for the condition. This study aims to define an episignature biomarker for teratogenic antenatal exposure to valproate. METHODS: DNA extracted from peripheral blood of individuals with teratogenic antenatal exposure to valproate was processed using DNA methylation microarrays. Subsequently, methylation profiling and construction of support vector machine classifiers were performed in R. RESULTS: Genomic DNA methylation analysis was applied, and a distinct DNA methylation profile was identified in the majority of affected individuals. This profile was used to develop a diagnostic episignature classifier. The valproate exposure episignature exhibited high sensitivity and specificity relative to a large reference data set of unaffected controls and individuals with a wide spectrum of syndromic disorders with episignatures. Gene set enrichment analysis demonstrated an enrichment for terms associated with cell adhesion, including significant overrepresentation of the cadherin superfamily. CONCLUSION: This study provides evidence of a robust peripheral blood-based diagnostic epigenetic biomarker for a prenatal teratogenic disorder.


Subject(s)
DNA Methylation , Valproic Acid , Humans , DNA Methylation/genetics , Valproic Acid/adverse effects , Female , Pregnancy , Prenatal Exposure Delayed Effects/genetics , Prenatal Exposure Delayed Effects/chemically induced , Prenatal Exposure Delayed Effects/blood , Anticonvulsants/adverse effects , Epigenesis, Genetic , Biomarkers/blood , Male , Abnormalities, Drug-Induced
18.
Toxicol Appl Pharmacol ; 483: 116830, 2024 02.
Article in English | MEDLINE | ID: mdl-38246289

ABSTRACT

BACKGROUND: There is strong evidence that prenatal infection during a specific period of brain development increases the risk of neurodevelopmental disorders, partly through immune-inflammatory pathways. This suggests that anti-inflammatory agents could prevent these disorders by targeting the maternal inflammatory response. In the present study, we used a rat model of maternal immune activation (MIA) to examine whether maternal quercetin (QE) supplementation can alleviate behavioral deficits and inflammatory mediators in the prefrontal cortex (PFC) and hippocampus of adult male offspring. METHODS: Pregnant rats were supplemented with QE (50 mg/kg) or vehicle throughout pregnancy and injected with either lipopolysaccharide (0.5 mg/kg) or saline on gestational days 15/16. At postnatal day 60, we evaluated the offspring's behavior, hippocampal and prefrontal cortex glial density, pro-inflammatory gene expression, and neuronal survival. RESULTS: Our data showed that maternal QE supplementation can prevent working and recognition memory impairments in adult MIA offspring. This behavioral improvement correlates with the decrease in MIA-induced expression of pro-inflammatory genes, microglia, and astrocyte densities, without affecting neuronal survival, in both PFC and CA1 hippocampus areas. CONCLUSION: Therefore, our study supports the potential preventive effect of QE on MIA-induced behavioral dysfunctions, at least in part, by suppressing the glial-mediated inflammatory response.


Subject(s)
Lipopolysaccharides , Prenatal Exposure Delayed Effects , Pregnancy , Female , Humans , Rats , Animals , Male , Lipopolysaccharides/toxicity , Quercetin/pharmacology , Quercetin/therapeutic use , Prenatal Exposure Delayed Effects/chemically induced , Cognition , Dietary Supplements , Behavior, Animal , Disease Models, Animal
19.
Toxicol Appl Pharmacol ; 490: 117044, 2024 Sep.
Article in English | MEDLINE | ID: mdl-39074624

ABSTRACT

BACKGROUND: Many studies have reported that prenatal exposure to Per- and Polyfluoroalkyl Substances (PFASs) can disrupt immune function. However, little is known about the effects of PFASs on immune molecules. The study analyzed the association between prenatal exposure to mixed and single PFASs and plasma immune molecules in three-year-old children. METHODS: Ten PFASs were measured in umbilical cord serum, while peripheral blood samples were collected at age three to measure immune molecules. Associations between exposure to individual and combined PFASs and immune molecules were analyzed using Generalized Linear Models and Weighted Quantile Sum (WQS) regression. RESULTS: (1) Interleukin-4 (IL-4) increased by 23.85% (95% CI:2.99,48.94) with each doubling of Perfluorooctanoic Acid (PFOA), and Interleukin-6 (IL-6) increased by 39.07% (95%CI:4.06,85.86) with Perfluorotridecanoic Acid (PFTrDA). Elevated PFOA and Perfluorononanoic Acid (PFNA) were correlated with increases of 34.06% (95% CI: 6.41, 70.28) and 24.41% (95% CI: 0.99, 53.27) in Eotaxin-3, respectively. Additionally, the doubling of Perfluorohexane Sulfonic Acid (PFHxS) was associated with a 9.51% decrease in Periostin (95% CI: -17.84, -0.33). (2) The WQS analysis revealed that mixed PFASs were associated with increased IL-6 (ß = 0.37, 95%CI:0.04,0.69), mainly driven by PFTrDA, PFNA, and 8:2 Chlorinated Perfluoroethyl Sulfonamide (8:2 Cl-PFESA). Moreover, mixed PFASs were linked to an increase in Eotaxin-3 (ß = 0.32, 95% CI: 0.09,0.55), primarily influenced by PFOA, PFTrDA, and Perfluorododecanoic Acid (PFDoDA). CONCLUSIONS: Prenatal PFASs exposure significantly alters the levels of immune molecules in three-year-old children, highlighting the importance of understanding environmental impacts on early immune development.


Subject(s)
Fluorocarbons , Prenatal Exposure Delayed Effects , Humans , Female , Fluorocarbons/blood , Fluorocarbons/toxicity , Child, Preschool , Pregnancy , Prenatal Exposure Delayed Effects/blood , Prenatal Exposure Delayed Effects/immunology , Prenatal Exposure Delayed Effects/chemically induced , China/epidemiology , Male , Environmental Pollutants/blood , Fetal Blood/immunology , Fetal Blood/chemistry , Caprylates/blood , Caprylates/toxicity , Interleukin-6/blood , Interleukin-4/blood , Decanoic Acids/blood , Decanoic Acids/toxicity , Alkanesulfonic Acids/blood , Alkanesulfonic Acids/toxicity , Adult , Maternal Exposure/adverse effects
20.
FASEB J ; 37(7): e23011, 2023 07.
Article in English | MEDLINE | ID: mdl-37249374

ABSTRACT

Autophagy inhibition is known to be involved in the development of adult osteoarthritis. Dexamethasone, as a synthetic glucocorticoid, is widely used for premature delivery and related pregnancy diseases in clinics. We have previously shown that prenatal dexamethasone exposure (PDE) was associated with increased susceptibility to postnatal osteoarthritis in offspring. However, whether the occurrence of fetal-originated adult osteoarthritis induced by PDE is related to autophagy remains unclear. In this study, we first found that PDE could increase the mRNA and protein expression of cartilage matrix-degrading enzymes (MMP3, MMP13, and ADAMTS5) and decrease the cartilage matrix contents in adult offspring, and the in vitro results suggested that this might be related to the autophagy inhibition of chondrocytes. Further, we demonstrated a persistent autophagy inhibition with autolysosome accumulation, low expression of cathepsin D (CTSD), increased H3K9ac level, and expression of miR-1912-3p in the cartilage of PDE offspring from fetus to adulthood. In vitro experiments showed that dexamethasone inhibited autophagy flux and CTSD expression in fetal chondrocytes, while overexpression of CTSD could alleviate the inhibition of autophagic flux induced by dexamethasone. Finally, we confirmed that dexamethasone increased the H3K9ac level and expression of miR-1912-3p through activation of the glucocorticoid receptor (GR), resulting in the decreased expression of CTSD and inhibition of autophagy flux in fetal chondrocytes. In conclusion, intrauterine miR-1912-3p/CTSD programming-mediated autophagy inhibition promoted the susceptibility to osteoarthritis in PDE adult offspring rats. This study provides new ideas for exploring early prevention and therapeutic targets in fetal-originated osteoarthritis.


Subject(s)
MicroRNAs , Osteoarthritis , Prenatal Exposure Delayed Effects , Pregnancy , Humans , Female , Rats , Male , Animals , Rats, Wistar , Cathepsin D , Prenatal Exposure Delayed Effects/chemically induced , Osteoarthritis/chemically induced , Osteoarthritis/genetics , Osteoarthritis/metabolism , Dexamethasone/toxicity , MicroRNAs/genetics , Autophagy
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