Kalsi Kameljit K, Baker Emma H, Fraser Owen, Chung Yuen-Li, Mace Oliver J, Tarelli Edward, Philips Barbara J, Baines Deborah L
Centre for Ion Channel and Cell Signalling, St George's, University of London, Cranmer Terrace, UK.
Pflugers Arch. 2009 Mar;457(5):1061-70. doi: 10.1007/s00424-008-0576-4. Epub 2008 Sep 10.
Glucose in airway surface liquid (ASL) is maintained at low concentrations compared to blood glucose. Using radiolabelled [(3)H]-D: -glucose and [(14)C]-L: -glucose, detection of D: - and L: -glucose by high-performance liquid chromatography and metabolites by nuclear magnetic resonance, we found that glucose applied to the basolateral side of H441 human airway epithelial cell monolayers at a physiological concentration (5 mM) crossed to the apical side by paracellular diffusion. Transepithelial resistance of the monolayer was inversely correlated with paracellular diffusion. Appearance of glucose in the apical compartment was reduced by uptake of glucose into the cell by basolateral and apical phloretin-sensitive GLUT transporters. Glucose taken up into the cell was metabolised to lactate which was then released, at least in part, across the apical membrane. We suggest that glucose transport through GLUT transporters and its subsequent metabolism in lung epithelial cells help to maintain low glucose concentrations in human ASL which is important for protecting the lung against infection.
与血糖相比,气道表面液体(ASL)中的葡萄糖维持在低浓度水平。我们使用放射性标记的[(3)H]-D-葡萄糖和[(14)C]-L-葡萄糖,通过高效液相色谱法检测D-和L-葡萄糖,并通过核磁共振检测代谢产物,发现以生理浓度(5 mM)施加到H441人气道上皮细胞单层基底外侧的葡萄糖通过细胞旁扩散转运至顶端侧。单层的跨上皮电阻与细胞旁扩散呈负相关。基底外侧和顶端根皮素敏感的葡萄糖转运蛋白(GLUT)将葡萄糖摄入细胞,从而减少了顶端隔室中葡萄糖的出现。摄入细胞的葡萄糖被代谢为乳酸,然后至少部分地通过顶端膜释放。我们认为,葡萄糖通过GLUT转运蛋白的转运及其在肺上皮细胞中的后续代谢有助于维持人ASL中的低葡萄糖浓度,这对于保护肺部免受感染很重要。