Literature DB >> 9495393

Gastric mucosal oxygen delivery decreases during cardiopulmonary bypass despite constant systemic oxygen delivery.

J C Sicsic1, J Duranteau, H Corbineau, S Antoun, P Menestret, P Sitbon, A Leguerrier, Y Logeais, C Ecoffey.   

Abstract

UNLABELLED: Previous studies report a decrease in gastric mucosal oxygen delivery during cardiopulmonary bypass (CPB). However, in these studies, CPB was associated with a reduction in systemic oxygen delivery (DO2). Conceivably, this decrease in DO2 could have contributed to the observed decrease in gastric mucosal oxygen delivery. Thus, in the present study, we assessed the effects of the maintenance of DO2 (at pre-CPB values) during hypothermic (30-32 degrees C) CPB on the gastric mucosal red blood cell flux (GMRBC flux) using laser Doppler flowmetry. In 11 patients requiring cardiac surgery, the pump flow rate during CPB was initially set at 2.4 L x min(-1) x m(-2) and was adjusted to maintain DO2 at pre-CPB values (flow 2.5-2.7 L x min[-1] x m[-2]). Despite a constant DO2, the GMRBC flux was decreased during CPB. These decreases averaged 50% +/- 16% after 10 min, 50% +/- 18% after 20 min, 49% +/- 21% after 30 min, and 49% +/- 19% after 40 min of CPB. The rewarming period was associated with an increase in GMRBC flux. Thus, maintaining systemic DO2 during CPB seems to be an ineffective strategy to improve gastric mucosal oxygen delivery. IMPLICATIONS: In the present study, we tested the hypothesis that gastric mucosal red blood cell flux assessed by laser Doppler flowmetry could be improved by maintaining baseline systemic flow and oxygen delivery during hypothermic cardiopulmonary bypass. Despite this strategy, gastric mucosal red blood cell flux decreased by 50% during hypothermic cardiopulmonary bypass.

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Year:  1998        PMID: 9495393     DOI: 10.1097/00000539-199803000-00001

Source DB:  PubMed          Journal:  Anesth Analg        ISSN: 0003-2999            Impact factor:   5.108


  1 in total

1.  Hypothermia improves oral and gastric mucosal microvascular oxygenation during hemorrhagic shock in dogs.

Authors:  Christian Vollmer; Ingo Schwartges; Meike Swertz; Christopher Beck; Inge Bauer; Olaf Picker
Journal:  Oxid Med Cell Longev       Date:  2013-11-12       Impact factor: 6.543

  1 in total

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