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  • Rathkolb, Birgit (2)
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  • Bergmann, Martin (1)
  • Brandes, Ralf (1)
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  • NADPH oxidase 4 (1)
  • proximal tubule cells (1)
  • reactive oxygen species (1)

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  • Medizin (2)

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Toxicity modelling of Plk1-targeted therapies in genetically engineered mice and cultured primary mammalian cells (2011)
Raab, Monika ; Kappel, Sven ; Krämer, Andrea ; Sanhaji, Mourad ; Matthess, Yves ; Kurunci-Csacsko, Elisabeth ; Calzada-Wack, Julia ; Rathkolb, Birgit ; Rozman, Jan ; Adler, Thure ; Busch, Dirk H. ; Esposito, Irene ; Fuchs, Helmut ; Gailus-Durner, Valérie ; Klingenspor, Martin ; Wolf, Eckhard ; Sänger, Nicole ; Prinz, Florian ; Hrabé de Angelis, Martin ; Seibler, Jost ; Yuan, Juping ; Bergmann, Martin ; Knecht, Rainald ; Kreft, Bertolt ; Strebhardt, Klaus
High attrition rates of novel anti-cancer drugs highlight the need for improved models to predict toxicity. Although polo-like kinase 1 (Plk1) inhibitors are attractive candidates for drug development, the role of Plk1 in primary cells remains widely unexplored. Therefore, we evaluated the utility of an RNA interference-based model to assess responses to an inducible knockdown (iKD) of Plk1 in adult mice. Here we show that Plk1 silencing can be achieved in several organs, although adverse events are rare. We compared responses in Plk1-iKD mice with those in primary cells kept under controlled culture conditions. In contrast to the addiction of many cancer cell lines to the non-oncogene Plk1, the primary cells' proliferation, spindle assembly and apoptosis exhibit only a low dependency on Plk1. Responses to Plk1-depletion, both in cultured primary cells and in our iKD-mouse model, correspond well and thus provide the basis for using validated iKD mice in predicting responses to therapeutic interventions.
Nox4 maintains blood pressure during low sodium diet (2021)
Rezende Felipe, Flávia Figueiredo de ; Malacarne, Pedro Felipe ; Müller, Niklas ; Rathkolb, Birgit ; Hrabě de Angelis, Martin ; Schröder, Katrin ; Brandes, Ralf
The NADPH oxidase Nox4 is a hydrogen peroxide (H2O2)-producing enzyme, with the highest expression in the kidney. As the kidney is involved in volume and blood pressure control through sodium handling, we set out to determine the impact of a low sodium diet on these parameters in WT and Nox4-/- mice. Nox4 expression in the murine kidney was restricted to the proximal tubule. Nevertheless, low-sodium-induced weight loss and sodium sparing function was similar in WT and Nox4-/- mice, disputing an important function of renal Nox4 in sodium handling. In contrast, a low sodium diet resulted in a reduction in systolic blood pressure in Nox4-/- as compared to WT mice. This was associated with a selectively lower pressure to heart-rate ratio, as well as heart to body weight ratio. In general, a low sodium diet leads to activation of sympathetic tone and the renin angiotensin system, which subsequently increases peripheral resistance. Our observations suggest that the control by this system is attenuated in Nox4-/- mice, resulting in lower blood pressure in response to low sodium.
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