Luis-Ravelo, D.; Fumagallo-Reading, F.; Febles-Casquero, A.; Lopez-Fernandez, J.; Marcellino, D.J.; Gonzalez-Hernandez, T.
Dopamine Receptor D3 Induces Transient, mTORC1-Dependent Autophagy That Becomes Persistent, AMPK-Mediated, and Neuroprotective in Experimental Models of Huntington’s Disease. Cells 2025, 14, 652.
https://doi.org/10.3390/cells14090652
AMA Style
Luis-Ravelo D, Fumagallo-Reading F, Febles-Casquero A, Lopez-Fernandez J, Marcellino DJ, Gonzalez-Hernandez T.
Dopamine Receptor D3 Induces Transient, mTORC1-Dependent Autophagy That Becomes Persistent, AMPK-Mediated, and Neuroprotective in Experimental Models of Huntington’s Disease. Cells. 2025; 14(9):652.
https://doi.org/10.3390/cells14090652
Chicago/Turabian Style
Luis-Ravelo, Diego, Felipe Fumagallo-Reading, Alejandro Febles-Casquero, Jonathan Lopez-Fernandez, Daniel J. Marcellino, and Tomas Gonzalez-Hernandez.
2025. "Dopamine Receptor D3 Induces Transient, mTORC1-Dependent Autophagy That Becomes Persistent, AMPK-Mediated, and Neuroprotective in Experimental Models of Huntington’s Disease" Cells 14, no. 9: 652.
https://doi.org/10.3390/cells14090652
APA Style
Luis-Ravelo, D., Fumagallo-Reading, F., Febles-Casquero, A., Lopez-Fernandez, J., Marcellino, D. J., & Gonzalez-Hernandez, T.
(2025). Dopamine Receptor D3 Induces Transient, mTORC1-Dependent Autophagy That Becomes Persistent, AMPK-Mediated, and Neuroprotective in Experimental Models of Huntington’s Disease. Cells, 14(9), 652.
https://doi.org/10.3390/cells14090652