Lipopolysaccharide activates innate immune responses in murine intestinal myofibroblasts through multiple signaling

Kristen L W Walton1, Lisa Holt, R Balfour Sartor

  • 1Department of Medicine, Center for Gastrointestinal Biology, University of North Carolina, Chapel Hill, NC, USA. kwalton1@missouriwestern.edu

Insights

Intestinal myofibroblasts (MF) activate innate immune responses to bacterial products like LPS. These cells utilize NF-kappaB, PI3-kinase, and MAPK pathways to release inflammatory molecules, suggesting MF are part of the gut

Area of Science:

  • Immunology
  • Gastroenterology
  • Cell Biology

Background:

  • Intestinal myofibroblasts (MF) are crucial for wound healing.
  • Compromised gut barriers expose MF to bacterial products, but their innate immune roles are unclear.

Purpose of the Study:

  • To investigate innate immune responses and intracellular signaling in intestinal MF stimulated by lipopolysaccharide (LPS).
  • To elucidate the role of Toll-like receptor (TLR) signaling in MF activation.

Main Methods:

  • Primary murine intestinal MF cultures were used.
  • TLR4 expression was confirmed via RT-PCR and Western blotting.
  • LPS-induced cytokine and prostaglandin E2 (PGE2) secretion were measured by ELISA.
  • Intracellular signaling pathways (NF-kappaB, Akt, p38 MAPK) and COX-2 expression were assessed by Western blotting.
  • Pathway inhibitors were used to block signaling.

Main Results:

  • Intestinal MF express TLR4 and respond to LPS.
  • LPS induced rapid activation of NF-kappaB, Akt, and p38 MAPK signaling pathways.
  • LPS stimulated the secretion of PGE2, IL-6, and keratinocyte-derived chemokines (KC).
  • Inhibition of PI3-kinase, p38 MAPK, or NF-kappaB pathways attenuated LPS-induced mediator release.

Conclusions:

  • Murine intestinal MF mount innate immune responses to LPS via TLR4.
  • Activation of NF-kappaB, PI3-kinase, and MAPK pathways mediates MF inflammatory responses.
  • MF function as immune cells within the gut, potentially influencing adjacent cells through paracrine signaling.