Le Nihouannen, D.; Boiziau, C.; Rey, S.; Agadzhanian, N.; Dusserre, N.; Cordelières, F.; Priault, M.; Boeuf, H.
Inhibiting Autophagy by Chemicals During SCAPs Osteodifferentiation Elicits Disorganized Mineralization, While the Knock-Out of Atg5/7 Genes Leads to Cell Adaptation. Cells 2025, 14, 146.
https://doi.org/10.3390/cells14020146
AMA Style
Le Nihouannen D, Boiziau C, Rey S, Agadzhanian N, Dusserre N, Cordelières F, Priault M, Boeuf H.
Inhibiting Autophagy by Chemicals During SCAPs Osteodifferentiation Elicits Disorganized Mineralization, While the Knock-Out of Atg5/7 Genes Leads to Cell Adaptation. Cells. 2025; 14(2):146.
https://doi.org/10.3390/cells14020146
Chicago/Turabian Style
Le Nihouannen, Damien, Claudine Boiziau, Sylvie Rey, Nicole Agadzhanian, Nathalie Dusserre, Fabrice Cordelières, Muriel Priault, and Helene Boeuf.
2025. "Inhibiting Autophagy by Chemicals During SCAPs Osteodifferentiation Elicits Disorganized Mineralization, While the Knock-Out of Atg5/7 Genes Leads to Cell Adaptation" Cells 14, no. 2: 146.
https://doi.org/10.3390/cells14020146
APA Style
Le Nihouannen, D., Boiziau, C., Rey, S., Agadzhanian, N., Dusserre, N., Cordelières, F., Priault, M., & Boeuf, H.
(2025). Inhibiting Autophagy by Chemicals During SCAPs Osteodifferentiation Elicits Disorganized Mineralization, While the Knock-Out of Atg5/7 Genes Leads to Cell Adaptation. Cells, 14(2), 146.
https://doi.org/10.3390/cells14020146