参考文献/References:
[1] Hackett PH,Roach RC. High-altitude illness[J]. N Engl J Med,2001,345(2):107-114.
[2] Factor P,Mutlu GM,Chen L,et al. Adenosine regulation of alveolar fluid clearance[J]. Proc Natl Acad Sci U S A,2007,104(10):4083-4088.
[3] Urner M,Herrmann IK,Booy C,et al. Effect of hypoxia and dexamethasone on inflammation and ion transporter function in pulmonary cells[J]. Clin Exp Immunol,2012,169(2):119-128.
[4] Vecchio EA,White PJ,May LT. The adenosine A2BG protein-coupled receptor:Recent advances and therapeutic implications[J]. Pharmacol Ther,2019,198:20-33.
[5] Wang M,Guo X,Zhao H,et al. Adenosine A2B receptor activation stimulates alveolar fluid clearance through alveolar epithelial sodium channel via cAMP pathway in endotoxin-induced lung injury[J]. Am J Physiol Lung Cell Mol Physiol ,2020,318(4):L787-L800.
[6] Ahmad Y,Sharma NK,Ahmad MF,et al. The proteome of hypobaric induced hypoxic lung:insights from temporal proteomic profiling for biomarker discovery[J]. Sci Rep,2015,5:10681.
[7] Eckle T,Faigle M,Grenz A,et al. A2B adenosine receptor dampens hypoxia-induced vascular leak[J]. Blood,2008,111(4):2024-2035.
[8] Schingnitz U,Hartmann K,Macmanus CF,et al. Signaling through the A2B adenosine receptor dampens endotoxin-induced acute lung injury[J]. J Immunol,2010,184(9):5271-5279.
[9] Yang D,Koupenova M,Mccrann DJ,et al. The A2b adenosine receptor protects against vascular injury[J]. Proc Natl Acad Sci U S A,2008,105(2):792-796.
[10] Yang C,Ling H,Zhang M,et al. Oxidative stress mediates chemical hypoxia-induced injury and inflammation by activating NF-κb-COX-2 pathway in HaCaT cells[J]. Mol Cells,2011,31(6):531-538.
[11] Vadász I,Raviv S,Sznajder JI. Alveolar epithelium and Na,K-ATPase in acute lung injury[J]. Intensive Care Med,2007,33(7):1243-1251.
[12] Hamacher J,Hadizamani Y,Borgmann M,et al. Cytokine–ion channel interactions in pulmonary inflammation[J],2018,8:1644.
[13] Bhalla V,Hallows KR. Mechanisms of ENaC regulation and clinical implications[J]. J Am Soc Nephrol,2008,19(10):1845-1854.
[14] Althaus M,Fronius M,Buch?ckert Y,et al. Carbon monoxide rapidly impairs alveolar fluid clearance by inhibiting epithelial sodium channels[J]. Am J Respir Cell Mol Biol,2009,41(6):639-650.
[15] Althaus M,Clauss WG,Fronius M. Amiloride-sensitive sodium channels and pulmonary edema[J]. Pulm Med,2011,2011:830320.
[16] Folkesson HG,Matthay MA. Alveolar epithelial ion and fluid transport:recent progress[J]. Am J Respir Cell Mol Biol,2006,35(1):10-19.
[17] Planès C,Blot-Chabaud M,Matthay MA,et al. Hypoxia and beta 2-agonists regulate cell surface expression of the epithelial sodium channel in native alveolar epithelial cells[J]. J Biol Chem,2002,277(49):47318-47324.
[18] Darashchonak N,Koepsell B,Bogdanova N,et al. Adenosine A2B receptors induce proliferation,invasion and activation of cAMP response element binding protein (CREB) in trophoblast cells[J]. BMC Pregnancy Childbirth,2014,14:2.
[19] Liu H,Zhang Y,Wu H,et al. Beneficial role of erythrocyte adenosine A2B receptor-mediated AMP-activated protein kinase activation in high-altitude hypoxia[J]. Circulation,2016,134(5):405-421.
[20] Song A,Zhang Y,Han L,et al. Erythrocytes retain hypoxic adenosine response for faster acclimatization upon re-ascent[J]. Nat Commun,2017,8:14108.