Kulebyakin, K.; Tyurin-Kuzmin, P.; Sozaeva, L.; Voloshin, N.; Nikolaev, M.; Chechekhin, V.; Vigovskiy, M.; Sysoeva, V.; Korchagina, E.; Naida, D.;
et al. Dynamic Balance between PTH1R-Dependent Signal Cascades Determines Its Pro- or Anti-Osteogenic Effects on MSC. Cells 2022, 11, 3519.
https://doi.org/10.3390/cells11213519
AMA Style
Kulebyakin K, Tyurin-Kuzmin P, Sozaeva L, Voloshin N, Nikolaev M, Chechekhin V, Vigovskiy M, Sysoeva V, Korchagina E, Naida D,
et al. Dynamic Balance between PTH1R-Dependent Signal Cascades Determines Its Pro- or Anti-Osteogenic Effects on MSC. Cells. 2022; 11(21):3519.
https://doi.org/10.3390/cells11213519
Chicago/Turabian Style
Kulebyakin, Konstantin, Pyotr Tyurin-Kuzmin, Leila Sozaeva, Nikita Voloshin, Mikhail Nikolaev, Vadim Chechekhin, Maxim Vigovskiy, Veronika Sysoeva, Elizaveta Korchagina, Daria Naida,
and et al. 2022. "Dynamic Balance between PTH1R-Dependent Signal Cascades Determines Its Pro- or Anti-Osteogenic Effects on MSC" Cells 11, no. 21: 3519.
https://doi.org/10.3390/cells11213519
APA Style
Kulebyakin, K., Tyurin-Kuzmin, P., Sozaeva, L., Voloshin, N., Nikolaev, M., Chechekhin, V., Vigovskiy, M., Sysoeva, V., Korchagina, E., Naida, D., & Vorontsova, M.
(2022). Dynamic Balance between PTH1R-Dependent Signal Cascades Determines Its Pro- or Anti-Osteogenic Effects on MSC. Cells, 11(21), 3519.
https://doi.org/10.3390/cells11213519