Molecular Medicine (Jun 2016)

Emetine Di-HCl Attenuates Type 1 Diabetes Mellitus in Mice

  • LaQueta K Hudson,
  • Meghan E Dancho,
  • Jianhua Li,
  • Johanna B Bruchfeld,
  • Ahmed A Ragab,
  • Mingzhu M He,
  • Meaghan Bragg,
  • Delaney Lenaghan,
  • Michael D Quinn,
  • Jason R Fritz,
  • Matthew V Tanzi,
  • Harold A Silverman,
  • William M Hanes,
  • Yaakov A Levine,
  • Valentin A Pavlov,
  • Peder S Olofsson,
  • Jesse Roth,
  • Yousef Al-Abed,
  • Ulf Andersson,
  • Kevin J Tracey,
  • Sangeeta S Chavan

DOI
https://doi.org/10.2119/molmed.2016.00082
Journal volume & issue
Vol. 22, no. 1
pp. 585 – 596

Abstract

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Abstract Type 1 diabetes mellitus (T1D) is a chronic autoimmune disease characterized by β cell destruction, insulin deficiency and hyperglycemia. Activated macrophages and autoimmune T cells play a crucial role in the pathogenesis of hyperglycemia in NOD murine diabetes models, but the molecular mechanisms of macrophage activation are unknown. We recently identified pigment epithelium-derived factor (PEDF) as an adipocyte-derived factor that activates macrophages and mediates insulin resistance. Reasoning that PEDF might participate as a proinflammatory mediator in murine diabetes, we measured PEDF levels in NOD mice. PEDF levels are significantly elevated in pancreas, in parallel with pancreatic TNF levels in NOD mice. To identify experimental therapeutics, we screened 2,327 compounds in two chemical libraries (the NIH Clinical Collection and Pharmakon-1600) for leads that inhibit PEDF mediated TNF release in macrophage cultures. The lead molecule selected, “emetine” is a widely used emetic. It inhibited PEDF-mediated macrophage activation with an EC50 or 146 nmol/L. Administration of emetine to NOD mice and to C57Bl6 mice subjected to streptozotocin significantly attenuated hyperglycemia, reduced TNF levels in pancreas and attenuated insulitis. Together, these results suggest that targeting PEDF with emetine may attenuate TNF release and hyperglycemia in murine diabetes models. This suggests that further investigation of PEDF and emetine in the pathogenesis of human diabetes is warranted.