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dc.creatorKouritas, V. K.en
dc.creatorHatzoglou, C.en
dc.creatorForoulis, C. N.en
dc.creatorHevas, A.en
dc.creatorGourgoulianis, K. I.en
dc.creatorMolyvdas, P. A.en
dc.date.accessioned2015-11-23T10:36:22Z
dc.date.available2015-11-23T10:36:22Z
dc.date.issued2007
dc.identifier10.1183/09031936.00047106
dc.identifier.issn0903-1936
dc.identifier.urihttp://hdl.handle.net/11615/29856
dc.description.abstractThe aim of the present study was to investigate whether low glucose and pH level, which are usually measured in complicated pleural effusions, alter the electrochemical function of healthy human parietal pleura. Parietal pleural pieces were stripped from 66 patients during thoracic surgery and were mounted in Ussing chambers. Krebs' solutions containing different glucose levels (0, 40 and 100 mg) and balanced at different pH levels (7.4, 7.3 and 7.2) were added to the pleural cavity surface of the pieces. Transmesothelial potential difference was measured at various time-points as an electrophysiological variable and transmesothelial resistance (R-rm) was calculated using Ohm's law. When normal-glucose Krebs at pH 7.45 was used, R (TM) remained unchanged over time, but when low-glucose Krebs was used, R (TM) decreased. Krebs without glucose caused the greatest decrease in R (TM). Use of low-pH Krebs decreased RTM. The lower the pH of the Krebs, the faster the decrease in R (TM) and the greater the effect. The decrease in R-rm was greater with low-pH than with low-glucose Krebs. Low glucose and low pH caused an additive decrease in R (TM). Low glucose concentration and low pH cause alteration of the electrochemical function of human parietal pleura and could act as agents that lead to further exudate progression.en
dc.source.uri<Go to ISI>://WOS:000248613500023
dc.subjectexudatesen
dc.subjectglucoseen
dc.subjecthumanen
dc.subjectparietal pleuraen
dc.subjectpHen
dc.subjecttransmesothelialen
dc.subjectresistanceen
dc.subjectPARAPNEUMONIC EFFUSIONSen
dc.subjectPATHOGENESISen
dc.subjectEMPYEMAen
dc.subjectRespiratory Systemen
dc.titleLow glucose level and low pH alter the electrochemical function of human parietal pleuraen
dc.typejournalArticleen


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