Glutamine preconditioning protects against tour-niquet-induced local and distant organ injury in a rodent ischemia-reperfusion model

Authors

  • Colin G Murphy
  • Gang Chen
  • Desmond C Winter
  • David J Bouchier-Hayes

DOI:

https://doi.org/10.1080/17453670710014220

Abstract

Introduction Ischemia-reperfusion (IR) injury is a common surgical event, with tourniquet use being a recognized cause in orthopedic surgery. Preconditioning is a highly evolutionarily conserved endogenous protective mechanism, but finding a clinically safe, acceptable method of induction has proven difficult. Glutamine, a known inducer of the heat shock protein response, offers pharmacological modulation of injury through clinically acceptable preconditioning. Our aim was to test the hypothesis that glutamine preconditioning protects against tourniquet-induced regional and remote IR injury in a rodent model. Animals and methods 40 adult male Sprague-Dawley rats were randomized into 4 groups: control, IR injury, normal saline-pretreated and IR injury, and glutamine-pretreated and IR injury. Pretreated groups received either normal saline or glutamine by intravenous bolus 24 h before injury. A bilateral hindlimb tourniquet model was used. Blood samples were analyzed, bronchioalveolar lavage (BAL) performed, and skeletal muscle and lung harvested for evaluation. Results The glutamine-pretreated group showed significantly lower muscle myeloperoxidase (MPO) content and creatine kinase levels than the untreated or salinepretreated injury groups. Lung tissue showed reduced MPO content and a significantly reduced neutrophil count by BAL fluid microscopy. Interpretation These data suggest that preconditioning with glutamine offers local and distant organ protection in the setting of tourniquet-induced IR injury.

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Published

2007-01-01

How to Cite

Murphy, C. G., Chen, G., Winter, D. C., & Bouchier-Hayes, D. J. (2007). Glutamine preconditioning protects against tour-niquet-induced local and distant organ injury in a rodent ischemia-reperfusion model. Acta Orthopaedica, 78(4), 559–566. https://doi.org/10.1080/17453670710014220

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