Literature DB >> 31632551

Pre-B-cell colony enhancing factor regulates the alveolar epithelial sodium-water transport system through the ERK and AKT pathways.

Weichang Xu1, Jianliang Zhou1, Miaomiao You1, Chao Lu1, Wei Yang1, Yi Gong1, Xiao Dong1.   

Abstract

The sodium-water transport system is crucial for alveolar fluid clearance. The pulmonary edema caused by extracorporeal circulation is mainly due to increased alveolar capillary permeability and reduced fluid clearance. We previously demonstrated that pre-B-cell colony enhancing factor (PBEF) increases alveolar capillary permeability and inhibits the sodium-water transport system. However, the specific mechanism by which PBEF inhibits the sodium-water transport system is unclear. In this study, we used HPAEpiC (alveolar type II epithelial cells) to construct an anoxia-reoxygenation model and simulate the extracorporeal circulation microenvironment. The impact of PBEF on the expression of genes and proteins implicated in sodium transport and its effect on the activation status of the ERK, P38, and AKT signaling pathways were explored in HPAEpiC by real-time fluorescent PCR and western blotting. Specific inhibitors were employed to verify the role of the three signaling pathways in the regulation of the sodium-water transport system. PBEF was substantially non-toxic to alveolar epithelial cells, inhibited the expression of ENaC, NKA, and AQP1, and affected the ERK, P38, and AKT signaling pathways. ERK pathway inhibitors attenuated PBEF-induced downregulation of EnaC, NKA, and AQP1, and increased NKA activity. P38 pathway inhibitors only attenuated PBEF-induced suppression of NKA expression. AKT pathway inhibitors potentiated the inhibitory effects of PBEF, reducing EnaC, AQP1, and NKA expression, as well as NKA activity. In conclusion, PBEF inhibited the sodium-water transport system by activation of ERK and suppression of AKT signaling. AJTR
Copyright © 2019.

Entities:  

Keywords:  AKT; ERK; HPAEpiC; PBEF; sodium-water transport system

Year:  2019        PMID: 31632551      PMCID: PMC6789215     

Source DB:  PubMed          Journal:  Am J Transl Res            Impact factor:   4.060


  44 in total

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Review 2.  Role of epithelial sodium channels in the regulation of lung fluid homeostasis.

Authors:  Sadis Matalon; Rafal Bartoszewski; James F Collawn
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Review 4.  Pulmonary edema: pathophysiology and diagnosis.

Authors:  J F Murray
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5.  Pre-B-cell colony-enhancing factor as a potential novel biomarker in acute lung injury.

Authors:  Shui Q Ye; Brett A Simon; James P Maloney; April Zambelli-Weiner; Li Gao; Audrey Grant; R Blaine Easley; Bryan J McVerry; Rubin M Tuder; Theodore Standiford; Roy G Brower; Kathleen C Barnes; Joe G N Garcia
Journal:  Am J Respir Crit Care Med       Date:  2004-12-03       Impact factor: 21.405

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7.  Effects of hydrogen-rich saline on aquaporin 1, 5 in septic rat lungs.

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Authors:  Yiduo Wang; Wenzheng Zhang; Guangzhe Yu; Qian Liu; Yingyu Jin
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9.  Hydrogen‑rich solution against myocardial injury and aquaporin expression via the PI3K/Akt signaling pathway during cardiopulmonary bypass in rats.

Authors:  Dandan Song; Xuelei Liu; Yugang Diao; Yingjie Sun; Guangjie Gao; Tiezheng Zhang; Keyan Chen; Ling Pei
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Review 10.  Strategies for Pharmacological Organoprotection during Extracorporeal Circulation Targeting Ischemia-Reperfusion Injury.

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  1 in total

1.  Inhibition of Pre-B Cell Colony Enhancing Factor Reduces Lung Injury in Rats Receiving Cardiopulmonary Bypass.

Authors:  Chao Lu; Wei Yang; Jianliang Zhou; Zulei Zhang; Yi Gong; Fajia Hu; Wenpeng Yu; Xiao Dong
Journal:  Drug Des Devel Ther       Date:  2021-01-07       Impact factor: 4.162

  1 in total

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