BeyoÄŸlu, D.; Huang, P.; Skelton-Badlani, D.; Zong, C.; Popov, Y.V.; Idle, J.R.
Metabolic Hijacking of Hexose Metabolism to Ascorbate Synthesis Is the Unifying Biochemical Basis of Murine Liver Fibrosis. Cells 2023, 12, 485.
https://doi.org/10.3390/cells12030485
AMA Style
BeyoÄŸlu D, Huang P, Skelton-Badlani D, Zong C, Popov YV, Idle JR.
Metabolic Hijacking of Hexose Metabolism to Ascorbate Synthesis Is the Unifying Biochemical Basis of Murine Liver Fibrosis. Cells. 2023; 12(3):485.
https://doi.org/10.3390/cells12030485
Chicago/Turabian Style
BeyoÄŸlu, Diren, Pinzhu Huang, Disha Skelton-Badlani, Christine Zong, Yury V. Popov, and Jeffrey R. Idle.
2023. "Metabolic Hijacking of Hexose Metabolism to Ascorbate Synthesis Is the Unifying Biochemical Basis of Murine Liver Fibrosis" Cells 12, no. 3: 485.
https://doi.org/10.3390/cells12030485
APA Style
BeyoÄŸlu, D., Huang, P., Skelton-Badlani, D., Zong, C., Popov, Y. V., & Idle, J. R.
(2023). Metabolic Hijacking of Hexose Metabolism to Ascorbate Synthesis Is the Unifying Biochemical Basis of Murine Liver Fibrosis. Cells, 12(3), 485.
https://doi.org/10.3390/cells12030485