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Restoring glucose uptake rescues neutrophil dysfunction and protects against systemic fungal infection in mouse models of kidney disease

  • Chetan V. Jawale
  • , Kritika Ramani
  • , De Dong Li
  • , Bianca M. Coleman
  • , Rohan S. Oberoi
  • , Saran Kupul
  • , Li Lin
  • , Jigar V. Desai
  • , Greg M. Delgoffe
  • , Michail S. Lionakis
  • , Filitsa H. Bender
  • , Alexander J. Prokopienko
  • , Thomas D. Nolin
  • , Sarah L. Gaffen
  • , Partha S. Biswas
  • University of Pittsburgh
  • National Institutes of Health

Research output: Contribution to journalArticlepeer-review

36 Scopus citations

Abstract

Disseminated candidiasis caused by the fungus Candida albicans is a major clinical problem in individuals with kidney disease and accompanying uremia; disseminated candidiasis fatality is twice as common in patients with uremia as those with normal kidney function. Many antifungal drugs are nephrotoxic, making treatment of these patients particularly challenging. The underlying basis for this impaired capacity to control infections in uremic individuals is poorly understood. Here, we show in multiple models that uremic mice exhibit an increased susceptibility to systemic fungal infection. Uremia inhibits Glut1-mediated uptake of glucose in neutrophils by causing aberrant activation of GSK3β, resulting in reduced ROS generation and hence impaired killing of C. albicans in mice. Consequently, pharmacological inhibition of GSK3β restored glucose uptake and rescued ROS production and candidacidal function of neutrophils in uremic mice. Similarly, neutrophils isolated from patients with kidney disease and undergoing hemodialysis showed similar defect in the fungal killing activity, a phenotype rescued in the presence of a GSK3β inhibitor. These findings reveal a mechanism of neutrophil dysfunction during uremia and suggest a potentially translatable therapeutic avenue for treatment of disseminated candidiasis.

Original languageEnglish
Article numbereaay5691
JournalScience Translational Medicine
Volume12
Issue number548
DOIs
StatePublished - Jun 17 2020

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