Literature DB >> 8779986

Glucose transport and equilibrium across alveolar-airway barrier of rat.

G Saumon1, G Martet, P Loiseau.   

Abstract

The glucose concentration in the epithelial lining fluid (ELF) results from a balance between cellular uptake and paracellular leakage. The present study examines whether the ELF glucose concentration can be predicted from the kinetics of glucose transport obtained in fluid-filled lungs. Isolated rat lungs were filled via the trachea with instillate containing 0-10 mM glucose; the perfusate glucose concentration was 10 mM. The rate of glucose removal from airspaces depended on luminal glucose concentration and was saturable [maximum uptake rate = 101 +/- 8.6 mumol.h-1.g dry lung wt-1; apparent Michaelis constant K(m) = 1.5 +/- 0.43 mM; R2 = 0.79]. Glucose removal was inhibited by phloridzin but not by phloretin or by inhibiting glycolysis. The steady-state concentration in fluid-filled lungs was estimated to be 0.15 +/- 0.034 mM. It agreed with that (< 1/20 plasma) calculated using glucose transport kinetics and paracellular permeability. The ELF glucose concentration obtained by bronchoalveolar lavage was 0.39 +/- 0.012 plasma in vivo and 0.39 +/- 0.021 perfusate in air-filled isolated lungs. The equilibrium ELF/perfusate distribution ratio of alpha-methyl-glucose was similar to that of glucose. Thus there is a major difference between the alveolar steady-state glucose concentration in air- and fluid-filled lungs despite similar mechanisms of airspace glucose removal. This suggests that glucose kinetics or access to uptake sites differ in air- and fluid-filled lungs.

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Year:  1996        PMID: 8779986     DOI: 10.1152/ajplung.1996.270.2.L183

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  16 in total

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8.  Glucose-sensing pulmonary delivery of human insulin to the systemic circulation of rats.

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Journal:  Int J Nanomedicine       Date:  2007

9.  Metformin reduces airway glucose permeability and hyperglycaemia-induced Staphylococcus aureus load independently of effects on blood glucose.

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10.  A modified fluorescent sensor for reporting glucose concentration in the airway lumen.

Authors:  Jade Bearham; Nina Krutrök; Botilda Lindberg; Maximillian Woodall; Annika Astrand; John D Taylor; Matthew Biggart; Stanislavs Vasiljevs; Robert Tarran; Deborah L Baines
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