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Macrophages Maintain Epithelium Integrity by Limiting Fungal Product Absorption

  • Aleksandra S. Chikina
  • , Francesca Nadalin
  • , Mathieu Maurin
  • , Mabel San-Roman
  • , Thibault Thomas-Bonafos
  • , Xin V. Li
  • , Sonia Lameiras
  • , Sylvain Baulande
  • , Sandrine Henri
  • , Bernard Malissen
  • , Livia Lacerda Mariano
  • , Jorge Barbazan
  • , J. Magarian Blander
  • , Iliyan D. Iliev
  • , Danijela Matic Vignjevic
  • , Ana Maria Lennon-Duménil

Research output: Contribution to journalArticlepeer-review

117 Scopus citations

Abstract

The colon is primarily responsible for absorbing fluids. It contains a large number of microorganisms including fungi, which are enriched in its distal segment. The colonic mucosa must therefore tightly regulate fluid influx to control absorption of fungal metabolites, which can be toxic to epithelial cells and lead to barrier dysfunction. How this is achieved remains unknown. Here, we describe a mechanism by which the innate immune system allows rapid quality check of absorbed fluids to avoid intoxication of colonocytes. This mechanism relies on a population of distal colon macrophages that are equipped with “balloon-like” protrusions (BLPs) inserted in the epithelium, which sample absorbed fluids. In the absence of macrophages or BLPs, epithelial cells keep absorbing fluids containing fungal products, leading to their death and subsequent loss of epithelial barrier integrity. These results reveal an unexpected and essential role of macrophages in the maintenance of colon-microbiota interactions in homeostasis. Video Abstract: [Figure presented] Protrusions on distal colonic macrophages orchestrate fluid sampling, which is critical to protect epithelial cells from absorbing fluids enriched in fungi toxins/metabolites.

Original languageEnglish
Pages (from-to)411-428.e16
JournalCell
Volume183
Issue number2
DOIs
StatePublished - 15 Oct 2020
Externally publishedYes

Keywords

  • colon
  • epithelium integrity
  • fluid absorption
  • fungi
  • gut
  • macrophages
  • metabolites
  • microbiota
  • protrusions
  • toxins

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