Dreher, S.I.; Höckele, S.; Huypens, P.; Irmler, M.; Hoffmann, C.; Jeske, T.; Hastreiter, M.; Moller, A.; Birkenfeld, A.L.; Häring, H.-U.;
et al. TGF-β Induction of miR-143/145 Is Associated to Exercise Response by Influencing Differentiation and Insulin Signaling Molecules in Human Skeletal Muscle. Cells 2021, 10, 3443.
https://doi.org/10.3390/cells10123443
AMA Style
Dreher SI, Höckele S, Huypens P, Irmler M, Hoffmann C, Jeske T, Hastreiter M, Moller A, Birkenfeld AL, Häring H-U,
et al. TGF-β Induction of miR-143/145 Is Associated to Exercise Response by Influencing Differentiation and Insulin Signaling Molecules in Human Skeletal Muscle. Cells. 2021; 10(12):3443.
https://doi.org/10.3390/cells10123443
Chicago/Turabian Style
Dreher, Simon I., Selina Höckele, Peter Huypens, Martin Irmler, Christoph Hoffmann, Tim Jeske, Maximilian Hastreiter, Anja Moller, Andreas L. Birkenfeld, Hans-Ulrich Häring,
and et al. 2021. "TGF-β Induction of miR-143/145 Is Associated to Exercise Response by Influencing Differentiation and Insulin Signaling Molecules in Human Skeletal Muscle" Cells 10, no. 12: 3443.
https://doi.org/10.3390/cells10123443
APA Style
Dreher, S. I., Höckele, S., Huypens, P., Irmler, M., Hoffmann, C., Jeske, T., Hastreiter, M., Moller, A., Birkenfeld, A. L., Häring, H.-U., Peter, A., Beckers, J., Hrabě de Angelis, M., & Weigert, C.
(2021). TGF-β Induction of miR-143/145 Is Associated to Exercise Response by Influencing Differentiation and Insulin Signaling Molecules in Human Skeletal Muscle. Cells, 10(12), 3443.
https://doi.org/10.3390/cells10123443