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Nitric oxide synthase inhibition in sepsis? Lessons learned from large-animal studies.

Abstract
Nitric Oxide (NO) plays a controversial role in the pathophysiology of sepsis and septic shock. Its vasodilatory effects are well known, but it also has pro- and antiinflammatory properties, assumes crucial importance in antimicrobial host defense, may act as an oxidant as well as an antioxidant, and is said to be a "vital poison" for the immune and inflammatory network. Large amounts of NO and peroxynitrite are responsible for hypotension, vasoplegia, cellular suffocation, apoptosis, lactic acidosis, and ultimately multiorgan failure. Therefore, NO synthase (NOS) inhibitors were developed to reverse the deleterious effects of NO. Studies using these compounds have not met with uniform success however, and a trial using the nonselective NOS inhibitor N(G)-methyl-l-arginine hydrochloride was terminated prematurely because of increased mortality in the treatment arm despite improved shock resolution. Thus, the issue of NOS inhibition in sepsis remains a matter of debate. Several publications have emphasized the differences concerning clinical applicability of data obtained from unresuscitated, hypodynamic rodent models using a pretreatment approach versus resuscitated, hyperdynamic models in high-order species using posttreatment approaches. Therefore, the present review focuses on clinically relevant large-animal studies of endotoxin or living bacteria-induced, hyperdynamic models of sepsis that integrate standard day-to-day care resuscitative measures.
AuthorsBalázs Hauser, Hendrik Bracht, Martin Matejovic, Peter Radermacher, Balasubramanian Venkatesh
JournalAnesthesia and analgesia (Anesth Analg) Vol. 101 Issue 2 Pg. 488-498 (Aug 2005) ISSN: 0003-2999 [Print] United States
PMID16037166 (Publication Type: Journal Article, Research Support, Non-U.S. Gov't, Review)
Chemical References
  • Enzyme Inhibitors
  • Nitric Oxide
  • Nitric Oxide Synthase
Topics
  • Animals
  • Disease Models, Animal
  • Energy Metabolism (drug effects, physiology)
  • Enzyme Inhibitors (therapeutic use)
  • Immunity (drug effects, physiology)
  • Nitric Oxide (biosynthesis, physiology)
  • Nitric Oxide Synthase (antagonists & inhibitors)
  • Sepsis (drug therapy, physiopathology)
  • Shock, Septic (metabolism, physiopathology)
  • Tissue Distribution

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