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Negative mesenteric effects of lung recruitment maneuvers in oleic acid lung injury are transient and short lasting.

Claesson, Jonas (författare)
Umeå universitet,Anestesiologi och intensivvård
Lehtipalo, Stefan (författare)
Umeå universitet,Anestesiologi och intensivvård
Bergstrand, Ulf (författare)
Umeå universitet,Anestesiologi och intensivvård
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Arnerlöv, Conny (författare)
Umeå universitet,Kirurgi
Winsö, Ola (författare)
Umeå universitet,Anestesiologi och intensivvård
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 (creator_code:org_t)
2007
2007
Engelska.
Ingår i: Critical Care Medicine. - 0090-3493 .- 1530-0293. ; 35:1, s. 230-238
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
Stäng  
  • OBJECTIVE: To test the hypothesis that repeated recruitment maneuvers (RMs) have sustained negative effects on mesenteric circulation, metabolism, and oxygenation 60 mins after RMs in pigs with oleic acid lung injury. Further, we aimed to test the hypothesis that an infusion of prostacyclin (PC) at 33 ng.kg.min would attenuate such possible negative mesenteric effects. DESIGN: Randomized, experimental, controlled study. SETTING: University hospital animal laboratory. SUBJECTS: A total of 31 anesthetized, fluid-resuscitated pigs with oleic acid lung injury. INTERVENTIONS: Animals were randomized to one of the following four groups: a control group (n = 7) that received no intervention, recruitment group (n = 8) that underwent the RM sequence, a prostacyclin group (n = 8) that received an infusion of PC, and a recruitment-prostacyclin group (n = 8) that received an infusion of PC and concomitant RM sequence. MEASUREMENTS AND MAIN RESULTS: We measured systemic and mesenteric hemodynamic variables, jejunal mucosal perfusion, mesenteric lactate flux, jejunal tissue oxygen tension, and mesenteric oxygen delivery, uptake, and extraction ratio. Five minutes after RMs, mesenteric oxygen extraction ratio and mesenteric lactate flux were more prominently increased in the recruitment group, giving evidence of worsened mesenteric conditions after RMs. These signs of worsened conditions were further supported by more decreased jejunal tissue oxygen tension and portal vein oxygen saturation in the recruitment group. PC preserved mesenteric oxygenation, as indicated by less of a decrease in portal vein oxygen saturation at the time corresponding to 5 mins after RM and less of a decrease in mesenteric oxygen delivery at the time corresponding to 15 mins after RM. PC preserved mesenteric oxygenation as indicated by less of a decrease in portal vein oxygen saturation at 5 mins after RM and an attenuated increase in mesenteric oxygen extraction ratio at 5 mins after RM. There was a trend toward worsened jejunal mucosal perfusion, although not significant. CONCLUSIONS: In an oleic acid lung injury model, three repeated RMs did not improve systemic oxygenation or lung mechanics. Negative effects on mesenteric oxygenation and metabolism were transient and short lasting. The intestinal effects of PC during RMs were minor and opposing, showing preserved oxygenation but a trend toward worsened mucosal perfusion.

Nyckelord

Animals
Antihypertensive Agents/pharmacology/*therapeutic use
Blood Flow Velocity/drug effects
Blood Gas Analysis
Blood Pressure/drug effects
Cardiac Output/drug effects
Disease Models; Animal
Drug Evaluation; Preclinical
Epoprostenol/pharmacology/*therapeutic use
Female
Infusions; Intravenous
Intestinal Mucosa/blood supply/drug effects/metabolism
Jejunum/blood supply/drug effects/metabolism
Lactic Acid/metabolism
Lung Volume Measurements
Oleic Acid
Oxygen Consumption/drug effects
Random Allocation
Respiration; Artificial/adverse effects/methods
Respiratory Distress Syndrome; Adult/chemically induced/metabolism/physiopathology/*therapy
Respiratory Mechanics/drug effects
Splanchnic Circulation/drug effects
Swine
Time Factors

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