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FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|July 22, 2022
Skeletal muscle fiber type-specific expressions of mechanosensors integrin-linked kinase, talin, and vinculin and their modulation by loading and environmental conditions in humansBernhard Andresen, Markus de Marees, Thorsten Schiffer, et al.International Journal of Molecular Sciences|May 14, 2025
Luteolin Induces Nrf2 Activity in C2C12 Cells: Implications for Muscle HealthNicole Böttcher, Frank Suhr, Thomas Pufe, et al.Plos One|November 22, 2013
Whole-body vibrations do not elevate the angiogenic stimulus when applied during resistance exerciseÅsa Beijer, André Rosenberger, Birgit Bölck, et al.Clinical Hemorheology and Microcirculation|June 15, 2014
Decrease in red blood cell deformability is associated with a reduction in RBC-NOS activation during storageMarijke Grau, Petra Friederichs, Sebastian Krehan, et al.Plos One|October 11, 2012
Moderate exercise promotes human RBC-NOS activity, NO production and deformability through Akt kinase pathwayFrank Suhr, Julian Brenig, Rebecca Müller, et al.Stem Cell Research|July 25, 2013
Cell biological effects of mechanical stimulations generated by focused extracorporeal shock wave applications on cultured human bone marrow stromal cellsFrank Suhr, Yvonne Delhasse, Gerd Bungartz, et al.International Journal of Molecular Sciences|May 3, 2016
Intense Resistance Exercise Promotes the Acute and Transient Nuclear Translocation of Small Ubiquitin-Related Modifier (SUMO)-1 in Human MyofibresSebastian Gehlert, Franz Josef Klinz, Lena Willkomm, et al.Nitric Oxide : Biology and Chemistry|November 4, 2008
Intensive exercise induces changes of endothelial nitric oxide synthase pattern in human erythrocytesFrank Suhr, Stefan Porten, Tim Hertrich, et al.Plos One|February 21, 2013
RBC-NOS-dependent S-nitrosylation of cytoskeletal proteins improves RBC deformabilityMarijke Grau, Sebastian Pauly, Jamal Ali, et al.Frontiers in Physiology|December 6, 2014
Acute exercise modifies titin phosphorylation and increases cardiac myofilament stiffnessAnna E Müller, Matthias Kreiner, Sebastian Kötter, et al.Pageof 5