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Diversity of gut microflora is required for the generation of B cell with regulatory properties in a skin graft model

  • R. Alhabbab
  • , P. Blair
  • , R. Elgueta
  • , E. Stolarczyk
  • , E. Marks
  • , P. D. Becker
  • , K. Ratnasothy
  • , L. Smyth
  • , N. Safinia
  • , E. Sharif-Paghaleh
  • , S. O'Connell
  • , R. J. Noelle
  • , G. M. Lord
  • , J. K. Howard
  • , J. Spencer
  • , R. I. Lechler
  • , G. Lombardi

Research output: Contribution to journalArticlepeer-review

Abstract

B cells have been reported to promote graft rejection through alloantibody production. However, there is growing evidence that B cells can contribute to the maintenance of tolerance. Here, we used a mouse model of MHC-class I mismatched skin transplantation to investigate the contribution of B cells to graft survival. We demonstrate that adoptive transfer of B cells prolongs skin graft survival but only when the B cells were isolated from mice housed in low sterility â €œ conventionalâ € (CV) facilities and not from mice housed in pathogen free facilities (SPF). However, prolongation of skin graft survival was lost when B cells were isolated from IL-10 deficient mice housed in CV facilities. The suppressive function of B cells isolated from mice housed in CV facilities correlated with an anti-inflammatory environment and with the presence of a different gut microflora compared to mice maintained in SPF facilities. Treatment of mice in the CV facility with antibiotics abrogated the regulatory capacity of B cells. Finally, we identified transitional B cells isolated from CV facilities as possessing the regulatory function. These findings demonstrate that B cells, and in particular transitional B cells, can promote prolongation of graft survival, a function dependent on licensing by gut microflora.

Original languageEnglish (US)
Article number11554
JournalScientific reports
Volume5
DOIs
StatePublished - Jun 25 2015
Externally publishedYes

ASJC Scopus subject areas

  • General

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