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Updated: May 3, 2026

A Novel Human Epithelial Enteroid Model of Necrotizing Enterocolitis
Published on: April 10, 2019
Toll-like receptor 4-mediated endoplasmic reticulum stress in intestinal crypts induces necrotizing enterocolitis
Amin Afrazi1, Maria F Branca, Chhinder P Sodhi
1From the Divisions of Pediatric Surgery.
Abstract:
The cellular cues that regulate the apoptosis of intestinal stem cells (ISCs) remain incompletely understood, yet may play a role in diseases characterized by ISC loss including necrotizing enterocolitis (NEC). Toll-like receptor-4 (TLR4) was recently found to be expressed on ISCs, where its activation leads to ISC apoptosis through mechanisms that remain incompletely explained. We now hypothesize that TLR4 induces endoplasmic reticulum (ER) stress within ISCs, leading to their apoptosis in NEC pathogenesis, and that high ER stress within the premature intestine predisposes to NEC development. Using transgenic mice and cultured enteroids, we now demonstrate that TLR4 induces ER stress within Lgr5 (leucine-rich repeat-containing G-protein-coupled receptor 5)-positive ISCs, resulting in crypt apoptosis. TLR4 signaling within crypts was required, because crypt ER stress and apoptosis occurred in TLR4(ΔIEC-OVER) mice expressing TLR4 only within intestinal crypts and epithelium, but not TLR4(ΔIEC) mice lacking intestinal TLR4. TLR4-mediated ER stress and apoptosis of ISCs required PERK (protein kinase-related PKR-like ER kinase), CHOP (C/EBP homologous protein), and MyD88 (myeloid differentiation primary response gene 88), but not ATF6 (activating transcription factor 6) or XBP1 (X-box-binding protein 1). Human and mouse NEC showed high crypt ER stress and apoptosis, whereas genetic inhibition of PERK or CHOP attenuated ER stress, crypt apoptosis, and NEC severity. Strikingly, using intragastric delivery into fetal mouse intestine, prevention of ER stress reduced TLR4-mediated ISC apoptosis and mucosal disruption. These findings identify a novel link between TLR4-induced ER stress and ISC apoptosis in NEC pathogenesis and suggest that increased ER stress within the premature bowel predisposes to NEC development.
Insights
Toll-like receptor-4 (TLR4) activation causes intestinal stem cell (ISC) apoptosis via endoplasmic reticulum (ER) stress, contributing to necrotizing enterocolitis (NEC). Inhibiting ER stress reduces NEC severity, suggesting it predisposes premature intestines to this disease.
Area of Science:
- Gastroenterology and Hepatology
- Developmental Biology
- Immunology
Background:
- Intestinal stem cell (ISC) apoptosis is implicated in diseases like necrotizing enterocolitis (NEC).
- Toll-like receptor-4 (TLR4) expressed on ISCs induces apoptosis, but the underlying mechanisms are unclear.
- Endoplasmic reticulum (ER) stress is a potential mediator of TLR4-induced ISC apoptosis.
Purpose of the Study:
- To investigate if TLR4 activation induces ER stress in ISCs, leading to apoptosis in NEC.
- To determine if high ER stress in premature intestines predisposes to NEC development.
- To identify the molecular pathways involved in TLR4-mediated ER stress and ISC apoptosis.
Main Methods:
- Utilized transgenic mouse models (TLR4(ΔIEC-OVER), TLR4(ΔIEC)) and cultured enteroids.
- Assessed ER stress and apoptosis in leucine-rich repeat-containing G-protein-coupled receptor 5 (Lgr5)-positive ISCs.
- Examined the roles of PERK, CHOP, MyD88, ATF6, and XBP1 in TLR4 signaling.
- Analyzed human and mouse NEC tissues and employed intragastric delivery in fetal mice.
Main Results:
- TLR4 activation induced ER stress and apoptosis in Lgr5+ ISCs, dependent on TLR4 expression in intestinal crypts.
- The pathway required PERK, CHOP, and MyD88, but not ATF6 or XBP1.
- Human and mouse NEC exhibited high crypt ER stress and apoptosis; genetic inhibition of PERK or CHOP reduced NEC severity.
- Prevention of ER stress in fetal mouse intestines reduced TLR4-mediated ISC apoptosis and mucosal damage.
Conclusions:
- TLR4-induced ER stress is a novel mechanism driving ISC apoptosis in NEC pathogenesis.
- Elevated ER stress in the premature intestine increases susceptibility to NEC development.
- Targeting ER stress pathways (PERK, CHOP) may offer therapeutic strategies for NEC.
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