Bone morphogenetic protein-7 delays podocyte injury due to high glucose

Laura De Petris1, Keith A Hruska, Santina Chiechio

  • 1Department of Pediatrics, Washington University, Saint Louis, MO 63110-1093, USA. liapis@path.wustl.edu

Abstract

Insights

High glucose damages kidney podocytes, reducing BMP-7, synaptopodin, and podocin. Bone morphogenetic protein 7 (BMP-7) treatment protected these cells, suggesting new therapies for diabetic glomerulosclerosis.

Area of Science:

  • Nephrology
  • Molecular Biology
  • Diabetic Complications

Background:

  • Diabetic glomerulosclerosis pathogenesis is unclear, but podocyte injury is implicated.
  • Bone morphogenetic protein 7 (BMP-7) is present in podocytes and may protect against kidney damage.
  • High glucose may harm podocytes by affecting structural proteins like synaptopodin and podocin.

Purpose of the Study:

  • To investigate the impact of high glucose on mouse podocytes.
  • To examine the expression of synaptopodin and podocin under normal and high glucose conditions.
  • To assess the therapeutic effect of BMP-7 on high glucose-induced podocyte injury.

Main Methods:

  • Mouse podocytes were cultured in normal (NG) or high glucose (HG) media.
  • Gene and protein expression of synaptopodin, podocin, and BMP-7 were analyzed.
  • Podocytes were treated with recombinant human BMP-7 (rhBMP-7) under HG conditions.
  • Human diabetic glomeruli were analyzed for BMP-7, synaptopodin, and podocin expression.

Main Results:

  • High glucose (HG) reduced synaptopodin, podocin, and BMP-7 levels in podocytes.
  • rhBMP-7 treatment restored synaptopodin and podocin mRNA and protein levels in HG podocytes.
  • Human diabetic glomeruli showed decreased BMP-7 and synaptopodin expression.

Conclusions:

  • BMP-7 may protect against hyperglycemic podocyte injury by maintaining synaptopodin and podocin.
  • BMP-7 shows potential as a novel therapeutic agent for diabetic glomerulosclerosis.

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