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Effects of Maternal Tetramethyl Bisphenol F Exposure on Neurodevelopment and Behavior in Mouse Offspring
by
Jeung, Eui-Bae
, Hwang, Inho
, Kim, Sun
in
Animals
/ Apoptosis
/ Behavior, Animal - drug effects
/ Benzhydryl Compounds - toxicity
/ Bisphenol A
/ Bisphenol F Compounds
/ Breastfeeding & lactation
/ Coatings
/ Cytotoxicity
/ Embryonic stem cells
/ Embryos
/ Epoxy resins
/ Female
/ Females
/ Fluorescence
/ Food
/ Genes
/ Integrated approach
/ Male
/ Males
/ Maternal Exposure - adverse effects
/ Memory
/ Mice
/ Mouse Embryonic Stem Cells - drug effects
/ Mouse Embryonic Stem Cells - metabolism
/ Neurodevelopment - drug effects
/ Neurodevelopmental disorders
/ Neurons
/ Neuropeptides
/ Neurotoxicity
/ Phenols - toxicity
/ Pregnancy
/ Prenatal Exposure Delayed Effects
/ Social aspects
/ Social behavior
/ Social interaction
/ SOXB1 Transcription Factors - genetics
/ SOXB1 Transcription Factors - metabolism
/ Stem cells
2026
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Effects of Maternal Tetramethyl Bisphenol F Exposure on Neurodevelopment and Behavior in Mouse Offspring
by
Jeung, Eui-Bae
, Hwang, Inho
, Kim, Sun
in
Animals
/ Apoptosis
/ Behavior, Animal - drug effects
/ Benzhydryl Compounds - toxicity
/ Bisphenol A
/ Bisphenol F Compounds
/ Breastfeeding & lactation
/ Coatings
/ Cytotoxicity
/ Embryonic stem cells
/ Embryos
/ Epoxy resins
/ Female
/ Females
/ Fluorescence
/ Food
/ Genes
/ Integrated approach
/ Male
/ Males
/ Maternal Exposure - adverse effects
/ Memory
/ Mice
/ Mouse Embryonic Stem Cells - drug effects
/ Mouse Embryonic Stem Cells - metabolism
/ Neurodevelopment - drug effects
/ Neurodevelopmental disorders
/ Neurons
/ Neuropeptides
/ Neurotoxicity
/ Phenols - toxicity
/ Pregnancy
/ Prenatal Exposure Delayed Effects
/ Social aspects
/ Social behavior
/ Social interaction
/ SOXB1 Transcription Factors - genetics
/ SOXB1 Transcription Factors - metabolism
/ Stem cells
2026
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Effects of Maternal Tetramethyl Bisphenol F Exposure on Neurodevelopment and Behavior in Mouse Offspring
by
Jeung, Eui-Bae
, Hwang, Inho
, Kim, Sun
in
Animals
/ Apoptosis
/ Behavior, Animal - drug effects
/ Benzhydryl Compounds - toxicity
/ Bisphenol A
/ Bisphenol F Compounds
/ Breastfeeding & lactation
/ Coatings
/ Cytotoxicity
/ Embryonic stem cells
/ Embryos
/ Epoxy resins
/ Female
/ Females
/ Fluorescence
/ Food
/ Genes
/ Integrated approach
/ Male
/ Males
/ Maternal Exposure - adverse effects
/ Memory
/ Mice
/ Mouse Embryonic Stem Cells - drug effects
/ Mouse Embryonic Stem Cells - metabolism
/ Neurodevelopment - drug effects
/ Neurodevelopmental disorders
/ Neurons
/ Neuropeptides
/ Neurotoxicity
/ Phenols - toxicity
/ Pregnancy
/ Prenatal Exposure Delayed Effects
/ Social aspects
/ Social behavior
/ Social interaction
/ SOXB1 Transcription Factors - genetics
/ SOXB1 Transcription Factors - metabolism
/ Stem cells
2026
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Effects of Maternal Tetramethyl Bisphenol F Exposure on Neurodevelopment and Behavior in Mouse Offspring
Journal Article
Effects of Maternal Tetramethyl Bisphenol F Exposure on Neurodevelopment and Behavior in Mouse Offspring
2026
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Overview
Bisphenol A (BPA) has long been used in plastics, resins, and food packaging materials; however, extensive research has demonstrated its reproductive, developmental, and endocrine-disrupting effects. Consequently, BPA has been increasingly restricted and replaced with structural analogues. Among these, tetramethyl bisphenol F (TMBPF) has emerged as one of the most widely used substitutes, particularly in epoxy resins and food-can coatings. Although initially regarded as a safer alternative, accumulating evidence suggests that TMBPF may exert multiple toxicological effects, raising concerns about its potential developmental neurotoxicity. The present study aimed to investigate the neurodevelopmental effects of TMBPF using both in vitro and in vivo approaches. First, a developmental neurotoxicity assay employing Sox1−GFP mouse embryonic stem cells was used to evaluate cytotoxicity using the cell counting kit-8 assay and neural differentiation based on green fluorescent protein (GFP) fluorescence intensity. The results indicated developmental neurotoxic potential according to the established discrimination index. Subsequently, pregnant and lactating mice were exposed to TMBPF daily from gestational day 10.5 to postnatal day 20, and their offspring were assessed for behavioral performance as well as changes in the expression of neurodevelopment-related genes in the brain. Behavioral analyses encompassed multiple domains, including memory and learning, social behavior, anxiety-related responses, and spontaneous locomotor activity, suggesting alterations in these functional outcomes. Molecular analyses further demonstrated changes associated with dopaminergic and cholinergic signaling, synaptic plasticity, neuronal activity markers, neuropeptides, and inflammatory pathways. Collectively, these findings provide the first evidence in a mammalian model that maternal exposure to TMBPF may influence offspring neurodevelopment. These findings suggest potential implications for human exposure to TMBPF, particularly through food-contact materials, and warrant further mechanistic and dose–response studies.
Publisher
MDPI AG,Multidisciplinary Digital Publishing Institute (MDPI)
Subject
/ Behavior, Animal - drug effects
/ Benzhydryl Compounds - toxicity
/ Coatings
/ Embryos
/ Female
/ Females
/ Food
/ Genes
/ Male
/ Males
/ Maternal Exposure - adverse effects
/ Memory
/ Mice
/ Mouse Embryonic Stem Cells - drug effects
/ Mouse Embryonic Stem Cells - metabolism
/ Neurodevelopment - drug effects
/ Neurodevelopmental disorders
/ Neurons
/ Prenatal Exposure Delayed Effects
/ SOXB1 Transcription Factors - genetics
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