Ippei Uemura, Natsuko Takahashi-Suzuki, Takashi Satoh
2026.2.1TOXICOLOGY IN VITRO
tlooto Summary
Early-stage inflammatory exposure imposes a persistent epigenetic constraint on Paneth-associated innate immune gene programs in this in vitro model, providing insights into how epithelial differentiation stage may influence sustained innate immune dysregulation.
Abstract
The intestinal epithelium supports antimicrobial programs and epithelial barrier function; while epigenetic mechanisms are increasingly implicated in these processes, how the differentiation stage shapes epigenetic regulation of key innate immune genes under inflammatory stress remains unclear. We investigated differentiation-stage-dependent epigenetic modulation of intestinal innate immunity-associated genes, focusing on α-defensin 5 (DEFA5) and SRY-box transcription factor 9 (SOX9), in a controlled Caco-2 differentiation framework. Human colon-derived Caco-2 cells were cultured for 2-14 days and transiently exposed to dextran sulfate sodium (DSS) as an in vitro epithelial inflammatory stressor. Promoter DNA methylation and gene expression of DEFA5, SOX9, odd-skipped-related transcription factor 1 (OSR1), and receptor-interacting protein 140 (RIP140) were assessed. DSS exposure at the undifferentiated stage was associated with sustained suppression of DEFA5 and SOX9 accompanied by increased DNMT1/3B expression, together with altered expression of SOX9-associated transcription factors (OSR1 and RIP140). Transient DNMT1 inhibition with GSK-3484862 during early differentiation partially rescued DSS-imposed suppression of DEFA5 and SOX9 and shifted promoter methylation readouts toward the control direction. Overall, early-stage inflammatory exposure imposes a persistent epigenetic constraint on Paneth-associated innate immune gene programs in this in vitro model, providing insights into how epithelial differentiation stage may influence sustained innate immune dysregulation.
Citation format
UEMURA, Ippei; TAKAHASHI-SUZUKI, Natsuko; SATOH, Takashi. Epigenetic regulation of intestinal innate immunity during differentiation of caco-2 cells under inflammatory stress. TOXICOLOGY IN VITRO, 2026, 113: 106217.