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Prevention of renal damage caused by Shiga toxin type 2: Action of Miglustat on human endothelial and epithelial cells

  • Magalí C. Girard
    ,
  • Flavia Sacerdoti
    ,
  • ,
  • Horacio A. Repetto
    ,
  • Cristina Ibarra
    ,
  • María M. Amaral
  • Universidad de Buenos Aires
    ,
  • ,
  • Hospital Nacional Profesor Alejandro Posadas
Research Output: Contribution to journal Article Peer-review

Publication Information

Output type

Research Output: Contribution to journal Article Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 27-33 (7 pages)

Journal (Volume, Issue Number)

Toxicon (Volume 105)

Publication milestones

  • Published - 09/10/2015

Publication status

Published - 09/10/2015

ISSN

0041-0101

Publication IDs

  • Scopus: 84940996699
  • PubMed: 26335361

Abstract

Typical hemolytic uremic syndrome (HUS) is responsible for acute and chronic renal failure in children younger than 5 years old in Argentina. Renal damages have been associated with Shiga toxin type 1 and/or 2 (Stx1, Stx2) produced by Escherichia coli O157:H7, although strains expressing Stx2 are highly prevalent in Argentina. Human glomerular endothelial cells (HGEC) and proximal tubule epithelial cells are very Stx-sensitive since they express high levels of Stx receptor (Gb3). Nowadays, there is no available therapy to protect patients from acute toxin-mediated cellular injury. New strategies have been developed based on the Gb3 biosynthesis inhibition through blocking the enzyme glucosylceramide (GL1) synthase. We assayed the action of a GL1 inhibitor (Miglustat: MG), on the prevention of the renal damage induced by Stx2. HGEC primary cultures and HK-2 cell line were pre-treated with MG and then incubated with Stx2. HK- 2 and HGEC express Gb3 and MG was able to decrease the levels of this receptor. As a consequence, both types of cells were protected from Stx2 cytotoxicity and morphology damage. MG was able to avoid Stx2 effects in human renal cells and could be a feasible strategy to protect kidney tissues from the cytotoxic effects of Stx2 in vivo.

Funding Details

This work was supported by grants to Cristina Ibarra from the Universidad de Buenos Aires ( UBACYT-770 ) and National Agency for Promotion of Science and Technology ( ANPCYT-PICT 12-0777 ), and by a grant to María Marta Amaral from National Scientific and Technical Research Council ( CONICET D3646 ).
FundersFunding numbers
CONICET
D3646
ANPCyT
ANPCYT-PICT 12-0777
UBA
UBACYT-770