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Updated: Mar 17, 2026

Induced Differentiation of M Cell-like Cells in Human Stem Cell-derived Ileal Enteroid Monolayers
Published on: July 26, 2019
TNF-α augments RANKL-dependent intestinal M cell differentiation in enteroid cultures
Megan B Wood1, Daniel Rios1, Ifor R Williams2
1Department of Pathology and Laboratory Medicine, Emory University School of Medicine, Atlanta, Georgia.
Abstract:
Microfold (M) cells are phagocytic intestinal epithelial cells in the follicle-associated epithelium of Peyer's patches that transport particulate antigens from the gut lumen into the subepithelial dome. Differentiation of M cells from epithelial stem cells in intestinal crypts requires the cytokine receptor activator of NF-κB ligand (RANKL) and the transcription factor Spi-B. We used three-dimensional enteroid cultures established with small intestinal crypts from mice as a model system to investigate signaling pathways involved in M cell differentiation and the influence of other cytokines on RANKL-induced M cell differentiation. Addition of RANKL to enteroids induced expression of multiple M cell-associated genes, including Spib, Ccl9 [chemokine (C-C motif) ligand 9], Tnfaip2 (TNF-α-induced protein 2), Anxa5 (annexin A5), and Marcksl1 (myristoylated alanine-rich protein kinase C substrate) in 1 day. The mature M cell marker glycoprotein 2 (Gp2) was strongly induced by 3 days and expressed by 11% of cells in enteroids. The noncanonical NF-κB pathway was required for RANKL-induced M cell differentiation in enteroids, as addition of RANKL to enteroids from mice with a null mutation in the mitogen-activated protein kinase kinase kinase 14 (Map3k14) gene encoding NF-κB-inducing kinase failed to induce M cell-associated genes. While the cytokine TNF-α alone had little, if any, effect on expression of M cell-associated genes, addition of TNF-α to RANKL consistently resulted in three- to sixfold higher levels of multiple M cell-associated genes than RANKL alone. One contributing mechanism is the rapid induction by TNF-α of Relb and Nfkb2 (NF-κB subunit 2), genes encoding the two subunits of the noncanonical NF-κB heterodimer. We conclude that endogenous activators of canonical NF-κB signaling present in the gut-associated lymphoid tissue microenvironment, including TNF-α, can play a supportive role in the RANKL-dependent differentiation of M cells in the follicle-associated epithelium.
Insights
Microfold (M) cell differentiation requires RANKL and Spi-B. Tumor Necrosis Factor-alpha (TNF-α) enhances this process by inducing noncanonical NF-κB pathway genes, supporting M cell development in the gut.
Area of Science:
- Immunology
- Gastroenterology
- Cell Biology
Background:
- Microfold (M) cells are specialized intestinal epithelial cells crucial for antigen transport in Peyer's patches.
- M cell differentiation from stem cells depends on RANKL and Spi-B.
- Understanding M cell differentiation pathways is key to gut immunity research.
Purpose of the Study:
- To investigate signaling pathways governing M cell differentiation using a 3D enteroid model.
- To explore the influence of cytokines, particularly TNF-α, on RANKL-induced M cell differentiation.
Main Methods:
- Utilized three-dimensional (3D) enteroid cultures derived from mouse small intestinal crypts.
- Administered RANKL and TNF-α to enteroids to assess M cell-associated gene expression.
- Employed enteroids from Map3k14 knockout mice to investigate the role of the noncanonical NF-κB pathway.
Main Results:
- RANKL alone induced M cell-associated genes (Spib, Ccl9, Tnfaip2, Anxa5, Marcksl1) within 24 hours.
- The mature M cell marker Gp2 was significantly induced by day 3, present in 11% of enteroid cells.
- TNF-α synergistically enhanced RANKL-induced M cell differentiation, increasing gene expression 3-6 fold, partly via induction of Relb and Nfkb2.
Conclusions:
- The noncanonical NF-κB pathway is essential for RANKL-mediated M cell differentiation in enteroids.
- TNF-α acts as a supportive cytokine, significantly boosting RANKL-driven M cell differentiation.
- Gut-associated lymphoid tissue microenvironment factors like TNF-α play a crucial role in M cell development.
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