Lung-targeted RNA interference against angiopoietin-2 ameliorates multiple organ dysfunction and death in sepsis

Crit Care Med. 2014 Oct;42(10):e654-62. doi: 10.1097/CCM.0000000000000524.

Abstract

Objective: Angiopoietin-2, a protein secreted by stimulated endothelium and an antagonist of the endothelium-stabilizing receptor Tie2, contributes to the pathophysiology of septic multiple organ dysfunction. We tested the therapeutic potential of a pulmonary-endothelium-specific RNA interference-based angiopoietin-2 targeting strategy in sepsis.

Design: Laboratory and animal research.

Settings: Research laboratories of the Medical School Hannover, Department of Nephrology and Hypertension, Hannover and Silence Therapeutics GmbH, Berlin.

Subjects: C57Bl/6 mice.

Interventions: Lung-endothelium-specific angiopoietin-2 small interfering RNA was administered both before and after sepsis induction (cecal ligation and puncture or lipopolysaccharides) intravenously.

Measurements and main results: Angiopoietin-2 small interfering RNA was highly specific and reduced angiopoietin-2 expression in the septic murine lungs up to 73.8% (p = 0.01) and enhanced the phosphorylation of Tie2 both in control and septic animals. Angiopoietin-2 small interfering RNA reduced pulmonary interleukin-6 transcription, intercellular adhesion molecule expression, neutrophil infiltration, and vascular leakage. Manifestations of sepsis were also attenuated in distant organs, including the kidney, where renal function was improved without affecting local angiopoietin-2 production. Finally, angiopoietin-2 small interfering RNA ameliorated the severity of illness and improved survival in cecal ligation and puncture, both as a pretreatment and as a rescue intervention.

Conclusion: The Tie2 antagonist angiopoietin-2 represents a promising target against sepsis-associated multiple organ dysfunction. A novel RNA interference therapeutic approach targeting gene expression in the pulmonary endothelium could be a clinically relevant pharmacological strategy to reduce injurious angiopoietin-2 synthesis.

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Angiopoietin-2 / metabolism
  • Angiopoietin-2 / physiology*
  • Animals
  • Disease Models, Animal
  • Inflammation / etiology
  • Inflammation / metabolism
  • Inflammation / physiopathology
  • Lung / metabolism*
  • Mice
  • Mice, Inbred C57BL
  • Multiple Organ Failure / etiology*
  • Multiple Organ Failure / metabolism
  • Multiple Organ Failure / physiopathology
  • RNA Interference / physiology*
  • RNA, Small Interfering / metabolism
  • Receptor, TIE-2 / metabolism
  • Sepsis / complications*
  • Sepsis / metabolism
  • Sepsis / mortality
  • Sepsis / physiopathology

Substances

  • Angiopoietin-2
  • RNA, Small Interfering
  • Receptor, TIE-2
  • Tek protein, mouse