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Lactobacillus supports Clostridiales to restrict gut colonization by multidrug-resistant Enterobacteriaceae

  • Ana Djukovic
  • , María José Garzón
  • , Cécile Canlet
  • , Vitor Cabral
  • , Rym Lalaoui
  • , Marc García-Garcerá
  • , Julia Rechenberger
  • , Marie Tremblay-Franco
  • , Iván Peñaranda
  • , Leonor Puchades-Carrasco
  • , Antonio Pineda-Lucena
  • , Eva María González-Barberá
  • , Miguel Salavert
  • , José Luis López-Hontangas
  • , Miguel Sanz
  • , Jaime Sanz
  • , Bernhard Kuster
  • , Jean Marc Rolain
  • , Laurent Debrauwer
  • , Karina B. Xavier
  • Joao B. Xavier, Carles Ubeda
  • Fundación para el Fomento de la Investigación Sanitaria y Biomédica de la Comunitat Valenciana - FISABIO
  • Weill Cornell Medical College
  • Toulouse University
  • Instituto Gulbenkian de Ciência
  • MEPHI - Microbes, Evolution, Phylogénie et Infections
  • University of Lausanne
  • Technical University of Munich
  • Instituto de Investigación Sanitaria La Fe
  • Center for Applied Medical Research
  • Hospital la Fe
  • Instituto de Salud Carlos III
  • Instituto Salud Carlos III

Research output: Contribution to journalArticlepeer-review

73 Scopus citations

Abstract

Infections by multidrug-resistant Enterobacteriaceae (MRE) are life-threatening to patients. The intestinal microbiome protects against MRE colonization, but antibiotics cause collateral damage to commensals and open the way to colonization and subsequent infection. Despite the significance of this problem, the specific commensals and mechanisms that restrict MRE colonization remain largely unknown. Here, by performing a multi-omic prospective study of hospitalized patients combined with mice experiments, we find that Lactobacillus is key, though not sufficient, to restrict MRE gut colonization. Lactobacillus rhamnosus and murinus increase the levels of Clostridiales bacteria, which induces a hostile environment for MRE growth through increased butyrate levels and reduced nutrient sources. This mechanism of colonization resistance, an interaction between Lactobacillus spp. and Clostridiales involving cooperation between microbiota members, is conserved in mice and patients. These results stress the importance of exploiting microbiome interactions for developing effective probiotics that prevent infections in hospitalized patients.

Original languageEnglish
Article number5617
JournalNature Communications
Volume13
Issue number1
DOIs
StatePublished - Dec 2022

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