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January 23, 2026Toxics0 citationsOpen Access

Perinatal BPAF Exposure Reprograms Offspring’s Immune–Metabolic Axis: A Multi-Omics Investigation of Intergenerational Hepatotoxicity

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SBShengjun BaiXWXiaorong WuWMWei Mao

Key Points

  • This study aims to explore the intergenerational effects of perinatal BPAF exposure on offspring's immune and metabolic systems.
  • Conducted a multi-omics analysis of offspring exposed to perinatal BPAF.
  • Assessed metabolic syndrome indicators including glucose intolerance and hepatic steatosis.
  • Analyzed epigenomic changes, focusing on H3K27ac-marked regulatory elements.
  • Demonstrated persistent metabolic syndrome in offspring due to BPAF exposure.
  • Observed suppressed interferon-γ responses and increased sterol biosynthesis.
  • Noted altered hepatic metabolome with reduced pantothenate and increased pro-inflammatory eicosanoids.

Abstract

Bisphenol AF (BPAF), a prevalent bisphenol A (BPA) substitute, raises concerns due to its environmental persistence and endocrine-disrupting potency. While metabolic effects of direct exposure are documented, its intergenerational consequences remain unclear. Here, we demonstrated that perinatal BPAF exposure induced persistent metabolic syndrome in offspring, including glucose intolerance, hepatic steatosis, and adipose hypotrophy. Integrating multi-omics data, we observed that BPAF exposure shaped offspring’s hepatic epigenome, as demonstrated by genome-wide alterations in H3K27ac-marked regulatory elements. This epigenetic rewiring indicated a dual regulatory effect on transcriptomes that suppressed interferon-γ responses while activating sterol biosynthesis, ultimately perturbating hepatic metabolome, including depleted pantothenate levels and accumulation of pro-inflammatory eicosanoids. Our findings suggest that BPAF may act as a developmental toxicant capable of persistently disrupting the immune–metabolic axis through epigenomic mechanisms, highlighting the need for careful re-evaluation of its use as a BPA substitute in consumer products.

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Cite This Study

Bai et al. (2026) studied this question.

synapsesocial.com/papers/69730f78c8125b09b0d1f4cahttps://doi.org/10.3390/toxics14010097
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