Abstract

FoxL1+-Telocytes (TCFoxL1+) are subepithelial cells that form a network underneath the epithelium. We have shown that without inflammatory stress, mice with loss of function in the BMP signalling pathway in TCFoxL1+ (BmpR1aΔFoxL1+) initiated colonic neoplasia. Although TCFoxL1+ are modulated in IBD patients, their specific role in this pathogenesis remains unclear. Thus, we investigated how the loss of BMP signalling in TCFoxL1+ influences the severity of inflammation and fosters epithelial recovery after inflammatory stress. BmpR1a was genetically ablated in mouse colonic TCFoxL1+. Experimental colitis was performed using a DSS challenge followed by recovery steps to assess wound healing. Physical barrier properties, including mucus composition and glycosylation, were assessed by alcian blue staining, immunofluorescences and RT-qPCR. We found that BmpR1aΔFoxL1+ mice had impaired mucus quality, and upon exposure to inflammatory challenges, they had increased susceptibility to experimental colitis and delayed healing. In addition, defective BMP signalling in TCFoxL1+ altered the functionality of goblet cells, thereby affecting mucosal structure and promoting bacterial invasion. Following inflammatory stress, TCFoxL1+ with impaired BMP signalling lose their homing signal for optimal distribution along the epithelium, which is critical in tissue regeneration after injury. Overall, our findings revealed key roles of BMP signalling in TCFoxL1+ in IBD pathogenesis.

Highlights

  • FoxL1+ -Telocytes (TCFoxL1+ ) are subepithelial cells that form a network underneath the epithelium

  • Consistent with the important regulatory role of TCFoxL1+ in the maintenance of epithelial homeostasis, our findings indicate that defective TCFoxL1+ are key contributors in inflammatory bowel disease (IBD) susceptibility and limit the tissue wound healing ability along with resolution of inflammation

  • We show that bone morphogenetic protein (BMP) signalling plays a critical role in the optimal functionality and homeostasis of TCFoxL1+, thereby affecting epithelial injury and repair

Read more

Summary

Animals

C57BL/6J -BmpR1afx/fx mouse was gifted by Dr Mishina [17]. BmpR1a∆FoxL1+ conditional knockout mice were generated as previously described [8,10].

Induction and Assessment of DSS-Induced Colitis and Recovery
Histological Analysis and Grading of Colitis
Intestinal Permeability Assay
Electron Microscopy
Immunofluorescence and Fluorescence In Situ Hybridisation
Analysis of Post-Translational Modifications in Goblet Cell and Mucins
RNA Extraction and Gene Expression
2.10. Statistical Analysis
Results
BmpR1a
Impaired
Discussion
Schematic representation of IBD pathogenesis events in colonic with impaired
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call