Effects of a human recombinant alkaline phosphatase during impaired mitochondrial function in human renal proximal tubule epithelial cells

Publication date

2017-02-05

Authors

Peters, Esther
Schirris, Tom
van Asbeck, Alexander H
Gerretsen, Jelle
Eymael, Jennifer
Ashikov, Angel
Adjobo-Hermans, Merel J W
Russel, Frans
Pickkers, Peter
Masereeuw, RosalindeORCID 0000-0002-1560-1074ISNI 0000000369326917

Editors

Advisors

Supervisors

Document Type

Article
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License

taverne

Abstract

Sepsis-associated acute kidney injury is a multifactorial syndrome in which inflammation and renal microcirculatory dysfunction play a profound role. Subsequently, renal tubule mitochondria reprioritize cellular functions to prevent further damage. Here, we investigated the putative protective effects of human recombinant alkaline phosphatase (recAP) during inhibition of mitochondrial respiration in conditionally immortalized human proximal tubule epithelial cells (ciPTEC). Full inhibition of mitochondrial oxygen consumption was obtained after 24h antimycin A treatment, which did not affect cell viability. While recAP did not affect the antimycin A-induced decreased oxygen consumption and increased hypoxia-inducible factor-1α or adrenomedullin gene expression levels, the antimycin A-induced increase of pro-inflammatory cytokines IL-6 and IL-8 was attenuated. Antimycin A tended to induce the release of detrimental purines ATP and ADP, which reached statistical significance when antimycin A was co-incubated with lipopolysaccharide, and were completely converted into cytoprotective adenosine by recAP. As the adenosine A2A receptor was up-regulated after antimycin A exposure, an adenosine A2A receptor knockout ciPTEC cell line was generated in which recAP still provided protection. Together, recAP did not affect oxygen consumption but attenuated the inflammatory response during impaired mitochondrial function, an effect suggested to be mediated by dephosphorylating ATP and ADP into adenosine.

Keywords

Human recombinant alkaline phosphatase, Inflammation, Adenosine, Proximal tubule epithelial cells, Mitochondria, Respiratory inhibition, Taverne

Citation

Peters, E, Schirris, T, van Asbeck, A H, Gerretsen, J, Eymael, J, Ashikov, A, Adjobo-Hermans, M J W, Russel, F, Pickkers, P & Masereeuw, R 2017, 'Effects of a human recombinant alkaline phosphatase during impaired mitochondrial function in human renal proximal tubule epithelial cells', European Journal of Pharmacology, vol. 796, pp. 149-157. https://doi.org/10.1016/j.ejphar.2016.12.034