Tsai, L.-T.; Weng, T.-I.; Chang, T.-Y.; Lan, K.-C.; Chiang, C.-K.; Liu, S.-H.
Inhibition of Indoxyl Sulfate-Induced Reactive Oxygen Species-Related Ferroptosis Alleviates Renal Cell Injury In Vitro and Chronic Kidney Disease Progression In Vivo. Antioxidants 2023, 12, 1931.
https://doi.org/10.3390/antiox12111931
AMA Style
Tsai L-T, Weng T-I, Chang T-Y, Lan K-C, Chiang C-K, Liu S-H.
Inhibition of Indoxyl Sulfate-Induced Reactive Oxygen Species-Related Ferroptosis Alleviates Renal Cell Injury In Vitro and Chronic Kidney Disease Progression In Vivo. Antioxidants. 2023; 12(11):1931.
https://doi.org/10.3390/antiox12111931
Chicago/Turabian Style
Tsai, Li-Ting, Te-I Weng, Ting-Yu Chang, Kuo-Cheng Lan, Chih-Kang Chiang, and Shing-Hwa Liu.
2023. "Inhibition of Indoxyl Sulfate-Induced Reactive Oxygen Species-Related Ferroptosis Alleviates Renal Cell Injury In Vitro and Chronic Kidney Disease Progression In Vivo" Antioxidants 12, no. 11: 1931.
https://doi.org/10.3390/antiox12111931
APA Style
Tsai, L.-T., Weng, T.-I., Chang, T.-Y., Lan, K.-C., Chiang, C.-K., & Liu, S.-H.
(2023). Inhibition of Indoxyl Sulfate-Induced Reactive Oxygen Species-Related Ferroptosis Alleviates Renal Cell Injury In Vitro and Chronic Kidney Disease Progression In Vivo. Antioxidants, 12(11), 1931.
https://doi.org/10.3390/antiox12111931