Menger, M.M.; Histing, T.; Poeske, F.; Schäfer, L.P.; Steinestel, K.; Löwer-Kiem, L.-M.; Menger, M.D.; Laschke, M.W.; Münzer, P.; Borst, O.;
et al. Prolonged Ischemia Induces Cellular Stress, Stimulates Extracellular Matrix Remodeling and Compromises the Viability of Human Cancellous Bone Grafts. Cells 2026, 15, 1261.
https://doi.org/10.3390/cells15141261
AMA Style
Menger MM, Histing T, Poeske F, Schäfer LP, Steinestel K, Löwer-Kiem L-M, Menger MD, Laschke MW, Münzer P, Borst O,
et al. Prolonged Ischemia Induces Cellular Stress, Stimulates Extracellular Matrix Remodeling and Compromises the Viability of Human Cancellous Bone Grafts. Cells. 2026; 15(14):1261.
https://doi.org/10.3390/cells15141261
Chicago/Turabian Style
Menger, Maximilian M., Tina Histing, Franziska Poeske, Lina P. Schäfer, Konrad Steinestel, Lena-Maria Löwer-Kiem, Michael D. Menger, Matthias W. Laschke, Patrick Münzer, Oliver Borst,
and et al. 2026. "Prolonged Ischemia Induces Cellular Stress, Stimulates Extracellular Matrix Remodeling and Compromises the Viability of Human Cancellous Bone Grafts" Cells 15, no. 14: 1261.
https://doi.org/10.3390/cells15141261
APA Style
Menger, M. M., Histing, T., Poeske, F., Schäfer, L. P., Steinestel, K., Löwer-Kiem, L.-M., Menger, M. D., Laschke, M. W., Münzer, P., Borst, O., Braun, B. J., Ehnert, S., & Herath, S. C.
(2026). Prolonged Ischemia Induces Cellular Stress, Stimulates Extracellular Matrix Remodeling and Compromises the Viability of Human Cancellous Bone Grafts. Cells, 15(14), 1261.
https://doi.org/10.3390/cells15141261