La Cognata, V.; D’Amico, A.G.; Maugeri, G.; Morello, G.; Guarnaccia, M.; Magrì, B.; Aronica, E.; D’Agata, V.; Cavallaro, S.
CXCR2 Is Deregulated in ALS Spinal Cord and Its Activation Triggers Apoptosis in Motor Neuron-Like Cells Overexpressing hSOD1-G93A. Cells 2023, 12, 1813.
https://doi.org/10.3390/cells12141813
AMA Style
La Cognata V, D’Amico AG, Maugeri G, Morello G, Guarnaccia M, Magrì B, Aronica E, D’Agata V, Cavallaro S.
CXCR2 Is Deregulated in ALS Spinal Cord and Its Activation Triggers Apoptosis in Motor Neuron-Like Cells Overexpressing hSOD1-G93A. Cells. 2023; 12(14):1813.
https://doi.org/10.3390/cells12141813
Chicago/Turabian Style
La Cognata, Valentina, Agata Grazia D’Amico, Grazia Maugeri, Giovanna Morello, Maria Guarnaccia, Benedetta Magrì, Eleonora Aronica, Velia D’Agata, and Sebastiano Cavallaro.
2023. "CXCR2 Is Deregulated in ALS Spinal Cord and Its Activation Triggers Apoptosis in Motor Neuron-Like Cells Overexpressing hSOD1-G93A" Cells 12, no. 14: 1813.
https://doi.org/10.3390/cells12141813
APA Style
La Cognata, V., D’Amico, A. G., Maugeri, G., Morello, G., Guarnaccia, M., Magrì, B., Aronica, E., D’Agata, V., & Cavallaro, S.
(2023). CXCR2 Is Deregulated in ALS Spinal Cord and Its Activation Triggers Apoptosis in Motor Neuron-Like Cells Overexpressing hSOD1-G93A. Cells, 12(14), 1813.
https://doi.org/10.3390/cells12141813