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  3. Decreasing gut wall glucose as an early marker of impaired intestinal perfusion

Decreasing gut wall glucose as an early marker of impaired intestinal perfusion

Details
Publisher DOI
10.1097/01.CCM.0000233855.34344.29
PubMed ID
16878039
Abstract
OBJECTIVE: The aim of this study was to assess the microcirculatory and metabolic consequences of reduced mesenteric blood flow. DESIGN: Prospective, controlled animal study. SETTING: The surgical research unit of a university hospital. SUBJECTS: A total of 13 anesthetized and mechanically ventilated pigs. INTERVENTIONS: Pigs were subjected to stepwise mesenteric blood flow reduction (15% in each step, n = 8) or served as controls (n = 5). Superior mesenteric arterial blood flow was measured with ultrasonic transit time flowmetry, and mucosal and muscularis microcirculatory perfusion in the small bowel were each measured with three laser Doppler flow probes. Small-bowel intramucosal Pco2 was measured by tonometry, and glucose, lactate (L), and pyruvate (P) were measured by microdialysis. MEASUREMENTS AND MAIN RESULTS: In control animals, superior mesenteric arterial blood flow, mucosal microcirculatory blood flow, intramucosal Pco2, and the lactate/pyruvate ratio remained unchanged. In both groups, mucosal blood flow was better preserved than muscularis blood flow. During stepwise mesenteric blood flow reduction, heterogeneous microcirculatory blood flow remained a prominent feature (coefficient of variation, approximately 45%). A 30% flow reduction from baseline was associated with a decrease in microdialysis glucose concentration from 2.37 (2.10-2.70) mmol/L to 0.57 (0.22-1.60) mmol/L (p < .05). After 75% flow reduction, the microdialysis lactate/pyruvate ratio increased from 8.6 (8.0-14.1) to 27.6 (15.5-37.4, p < .05), and arterial-intramucosal Pco2 gradients increased from 1.3 (0.4-3.5) kPa to 10.8 (8.0-16.0) kPa (p < .05). CONCLUSIONS: Blood flow redistribution and heterogeneous microcirculatory perfusion can explain apparently maintained regional oxidative metabolism during mesenteric hypoperfusion, despite local signs of anaerobic metabolism. Early decreasing glucose concentrations suggest that substrate supply may become crucial before oxygen consumption decreases.
Date Issued
2006
Publication Type
Article
Language(s)
en
Author(s)
Krejci, Vladimir  
Universitätsklinik für Anästhesiologie und Schmerztherapie  
Hiltebrand, Luzius  
Universitätsklinik für Anästhesiologie und Schmerztherapie  
Büchi, Conradin
Ali, Syed Z.  
Universitätsklinik für Anästhesiologie und Schmerztherapie  
Contaldo, Claudio
Takala, Jukka  
Universitätsklinik für Intensivmedizin  
Sigurdsson, Gisli H
Jakob, Stephan  
Universitätsklinik für Intensivmedizin  
Additional Credits
Universitätsklinik für Intensivmedizin  
Universitätsklinik für Anästhesiologie und Schmerztherapie  
Journal
Critical care medicine
Publisher
Lippincott Williams & Wilkins
ISSN
0090-3493
ISBN
16878039
Access(Rights)
Unknown
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