Kakava, S.; Schlumpf, E.; Panteloglou, G.; Tellenbach, F.; von Eckardstein, A.; Robert, J.
Brain Endothelial Cells in Contrary to the Aortic Do Not Transport but Degrade Low-Density Lipoproteins via Both LDLR and ALK1. Cells 2022, 11, 3044.
https://doi.org/10.3390/cells11193044
AMA Style
Kakava S, Schlumpf E, Panteloglou G, Tellenbach F, von Eckardstein A, Robert J.
Brain Endothelial Cells in Contrary to the Aortic Do Not Transport but Degrade Low-Density Lipoproteins via Both LDLR and ALK1. Cells. 2022; 11(19):3044.
https://doi.org/10.3390/cells11193044
Chicago/Turabian Style
Kakava, Sofia, Eveline Schlumpf, Grigorios Panteloglou, Flavia Tellenbach, Arnold von Eckardstein, and Jerome Robert.
2022. "Brain Endothelial Cells in Contrary to the Aortic Do Not Transport but Degrade Low-Density Lipoproteins via Both LDLR and ALK1" Cells 11, no. 19: 3044.
https://doi.org/10.3390/cells11193044
APA Style
Kakava, S., Schlumpf, E., Panteloglou, G., Tellenbach, F., von Eckardstein, A., & Robert, J.
(2022). Brain Endothelial Cells in Contrary to the Aortic Do Not Transport but Degrade Low-Density Lipoproteins via Both LDLR and ALK1. Cells, 11(19), 3044.
https://doi.org/10.3390/cells11193044