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Hyperglycaemia and Pseudomonas aeruginosa acidify cystic fibrosis airway surface liquid by elevating epithelial monocarboxylate transporter 2 dependent lactate-H+ secretion

机译:高血糖和铜绿假单胞菌通过增加上皮单羧酸盐转运蛋白2依赖的乳酸H +分泌来酸化囊性纤维化气道表面液

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摘要

The cystic fibrosis (CF) airway surface liquid (ASL) provides a nutrient rich environment for bacterial growth including elevated glucose, which together with defective bacterial killing due to aberrant HCO3 transport and acidic ASL, make the CF airways susceptible to colonisation by respiratory pathogens such as Pseudomonas aeruginosa. Approximately half of adults with CF have CF related diabetes (CFRD) and this is associated with increased respiratory decline. CF ASL contains elevated lactate concentrations and hyperglycaemia can also increase ASL lactate. We show that primary human bronchial epithelial (HBE) cells secrete lactate into ASL, which is elevated in hyperglycaemia. This leads to ASL acidification in CFHBE, which could only be mimicked in non-CF HBE following HCO3 removal. Hyperglycaemia-induced changes in ASL lactate and pH were exacerbated by the presence of P. aeruginosa and were attenuated by inhibition of monocarboxylate lactate-H+ co-transporters (MCTs) with AR-C155858. We conclude that hyperglycaemia and P. aeruginosa induce a metabolic shift which increases lactate generation and efflux into ASL via epithelial MCT2 transporters. Normal airways compensate for MCT-driven H+ secretion by secreting HCO3, a process which is dysfunctional in CF airway epithelium leading to ASL acidification and that these processes may contribute to worsening respiratory disease in CFRD.
机译:囊性纤维化(CF)气道表面液(ASL)为细菌生长提供了丰富的营养环境,包括葡萄糖升高,再加上由于HCO3 -转运和酸性ASL异常导致的有害细菌杀灭,使得CF易被呼吸道病原菌如铜绿假单胞菌定植的气道。约有CF的成年人中有CF相关的糖尿病(CFRD),这与呼吸下降增加有关。 CF ASL含有较高的乳酸盐浓度,高血糖症也会增加ASL乳酸盐。我们显示原发性人支气管上皮细胞(HBE)分泌乳酸到ASL,这在高血糖症中升高。这会导致CFHBE中的ASL酸化,只有在去除HCO3 -后在非CF HBE中才能模仿。铜绿假单胞菌的存在加剧了高血糖诱导的ASL乳酸和pH值的变化,而AR-C155858抑制了乳酸单羧酸酯-H + 的共转运蛋白(MCTs)的出现,高血糖引起的变化。我们得出的结论是,高血糖症和铜绿假单胞菌会引起代谢转变,从而通过上皮MCT2转运蛋白增加乳酸的生成和向ASL的外排。正常气道通过分泌HCO3 -来补偿MCT驱动的H + 分泌,该过程在CF气道上皮中功能失调,导致ASL酸化,这些过程可能导致恶化CFRD中的呼吸系统疾病。

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