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1.
Schork, A. et al.: Amiloride versus furosemide for the treatment of edema in patients with nephrotic syndrome: A pilot study (AMILOR). Acta Physiol. 240:e14183 (2024)
2.
Vitale, C.* et al.: The homeostatic effects of the RE-1 silencing transcription factor on cortical networks are altered under ictogenic conditions in the mouse. Acta Physiol. 240:e14146 (2024)
3.
Chamorro, R.* ; Jouffe, C. ; Oster, H.* ; Uhlenhaut, N.H. & Meyhöfer, S.M.*: When should I eat: A circadian view on food intake and metabolic regulation. Acta Physiol. 237:e13936 (2023)
4.
Weigert, C.: The post-exercise paradox of reduced glucose tolerance and insulin sensitivity. Acta Physiol. 238:e14007 (2023)
5.
Xiao, M.* ; Bohnert, B.N. ; Grahammer, F.* & Artunc, F.: Rodent models to study sodium retention in experimental nephrotic syndrome. Acta Physiol. 235:e13844 (2022)
6.
Essigke, D.* et al.: Zymogen-locked mutant prostasin (Prss8) leads to incomplete proteolytic activation of the epithelial sodium channel (ENaC) and severely compromises triamterene tolerance in mice. Acta Physiol. 232:e13640 (2021)
7.
Solagna, F.* et al.: Exercise-dependent increases in protein synthesis are accompanied by chromatin modifications and increased MRTF-SRF signalling. Acta Physiol. 230:e13496 (2020)
8.
Xiao, M.* et al.: Plasminogen deficiency does not prevent sodium retention in a genetic mouse model of experimental nephrotic syndrome. Acta Physiol. 231:e13512 (2020)
9.
Artunc, F. ; Wörn, M.* ; Schork, A. & Bohnert, B.N.: Proteasuria-the impact of active urinary proteases on sodium retention in nephrotic syndrome. Acta Physiol. 225:e13249 (2019)
10.
Bohnert, B.N. et al.: Urokinase-type plasminogen activator (uPA) is not essential for epithelial sodium channel (ENaC)-mediated sodium retention in experimental nephrotic syndrome. Acta Physiol. 227:e13286 (2019)
11.
Bohnert, B.N. ; Kanse, S.* ; Haerteis, S.* ; Korbmacher, C.* & Artunc, F.: Rebuttal to editorial: Sodium retention by uPA in nephrotic syndrome? Acta Physiol., DOI: 10.1111/apha.13427 (2019)
12.
Ertürk, A.: Cellular and molecular probing of intact human organs. Acta Physiol. 227 (2019)
13.
Rubio-Aliaga, I.* et al.: Constitutive activation of Jak1 leads to increased fibroblast growth factor 23 levels in mice. Acta Physiol. 227 (2019)
14.
Ziesak, V.* ; Rohde, M.* ; Birkenfeld, A.L. & Koehling, R.*: Effect of sodium-dicarboxylate cotransporter on CA1 pyramidal cells, synaptic transmission and hippocampal network activity. Acta Physiol. 227 (2019)
15.
Haerteis, S.* et al.: Plasma kallikrein activates the epithelial sodium channel invitro but is not essential for volume retention in nephrotic mice. Acta Physiol. 224:e13060 (2018)
16.
Götz, S. ; Rauser, B. ; Brodski, C.* & Prakash, N.*: Early and localized expression of ion channels and ion channel subunits in the developing mesodiencephalic dopaminergic domain of the mouse embryo. Acta Physiol. 216:P02-03 (2016)
17.
Houssaini, A. et al.: Targeting the mtor signaling pathway to inhibit lung cell senescence in Chronic Obstructive Pulmonary Disease (COPD). Acta Physiol. 217, 142-143 (2016)
18.
Solimena, M.: Insulin granule biogenesis and turnover. Acta Physiol. 216:S09-5 (2016)
19.
Dimou, L.: Heterogeneity of NG2-glia: Its role and impact in the adult brain. Acta Physiol. 210, 20 (2014)