ArticleScientific reports2022
Alterations of brain microstructures in a mouse model of prenatal opioid exposure detected by diffusion MRI.
Article in Scientific reports, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 15 papers.
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Who cites it
15 citing papers in PubMed, 15 citations in OpenAlex.
- Limbic System Microstructure in Neonates With Antenatal Opioid Exposure.JAMA network open · 2026Article
- Antenatal Opioid Exposure and Cerebral Cortical Maturation in Newborns.JAMA network open · 2026Article
- Prenatal oxycodone exposure produces sex-specific alterations in nucleus accumbens core gene expression without affecting quinpirole-induced locomotor sensitization in adult rats.Psychopharmacology · 2026Article
- Left and Right Hemispheric Lateralization as an Overlooked Variable in Psychiatric Disease: Evidence Across Species.Biological psychiatry · 2026Review
- Association between prenatal opioid exposure and long-term neurodevelopmental disorders among children: a nationwide cohort study : Prenatal opioid exposure and neurodevelopment.BMC pediatrics · 2026Article
- Anxiety, Depression, and Emotional Dysregulation Following Prenatal Substance Exposure.Advances in experimental medicine and biology · 2026Review
- Severity of punctate white matter lesions in preterm infants: antecedents and cerebral palsy prediction.Pediatric research · 2025Article
- Opioid receptor signaling throughout ontogeny: Shaping neural and behavioral trajectories.Neuroscience and biobehavioral reviews · 2025Review
- Children had smaller brain volumes and cortical surface areas after prenatal opioid maintenance therapy exposure.Acta paediatrica (Oslo, Norway : 1992) · 2025Article
- Prenatal methadone exposure produces functional and molecular alterations in the basolateral amygdala and decreased voluntary ethanol intake in female, but not male offspring.Frontiers in behavioral neuroscience · 2025Article
- Neurobehavioral Characterization of Perinatal Oxycodone-Exposed Offspring in Early Adolescence.Journal of neuroimmune pharmacology : the official journal of the Society on NeuroImmune Pharmacology · 2024Article
- Advances in animal models of prenatal opioid exposure.Trends in neurosciences · 2024Review
- Developmental outcomes with perinatal exposure (DOPE) to prescription opioids.NeuroImmune pharmacology and therapeutics · 2023Review
- DTI of Opioid-Exposed Fetuses Using ComBat Harmonization: A Bi-Institutional Study.AJNR. American journal of neuroradiology · 2023Article
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Authors and funding
4 authors at 2 institutions in 1 country.
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Abstract
Growing opioid use among pregnant women is fueling a crisis of infants born with prenatal opioid exposure. A large body of research has been devoted to studying the management of opioid withdrawal during the neonatal period in these infants, but less substantive work has explored the long-term impact of prenatal opioid exposure on neurodevelopment. Using a translationally relevant mouse model of prenatal methadone exposure (PME), the aim of the study is to investigate the cerebral microstructural differences between the mice with PME and prenatal saline exposure (PSE). The brains of eight-week-old male offspring with either PME (n = 15) or PSE (n = 15) were imaged using high resolution in-vivo diffusion magnetic resonance imaging on a 9.4 Tesla small animal scanner. Brain microstructure was characterized using diffusion tensor imaging (DTI) and Bingham neurite orientation dispersion and density imaging (Bingham-NODDI). Voxel-based analysis (VBA) was performed using the calculated microstructural parametric maps. The VBA showed significant (p < 0.05) bilateral alterations in fractional anisotropy (FA), mean diffusivity (MD), axial diffusivity (AD), radial diffusivity (RD), orientation dispersion index (ODI) and dispersion anisotropy index (DAI) across several cortical and subcortical regions, compared to PSE. Particularly, in PME offspring, FA, MD and AD were significantly higher in the hippocampus, dorsal amygdala, thalamus, septal nuclei, dorsal striatum and nucleus accumbens. These DTI-based results suggest widespread bilateral microstructural alterations across cortical and subcortical regions in PME offspring. Consistent with the observations in DTI, Bingham-NODDI derived ODI exhibited significant reduction in PME offspring within the hippocampus, dorsal striatum and cortex. NODDI-based results further suggest reduction in dendritic arborization in PME offspring across multiple cortical and subcortical regions. To our best knowledge, this is the first study of prenatal opioid exposure to examine microstructural organization in vivo. Our findings demonstrate perturbed microstructural complexity in cortical and subcortical regions persisting into early adulthood which could interfere with critical neurodevelopmental processes in individuals with prenatal opioid exposure.
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