Chu, Z.; Li, W.; You, G.; Chen, Y.; Qin, D.; Shu, P.; Wang, Y.; Wang, Y.; Zhao, L.; Zhou, H.
Resveratrol, a New Allosteric Effector of Hemoglobin, Enhances Oxygen Supply Efficiency and Improves Adaption to Acute Severe Hypoxia. Molecules 2023, 28, 2050.
https://doi.org/10.3390/molecules28052050
AMA Style
Chu Z, Li W, You G, Chen Y, Qin D, Shu P, Wang Y, Wang Y, Zhao L, Zhou H.
Resveratrol, a New Allosteric Effector of Hemoglobin, Enhances Oxygen Supply Efficiency and Improves Adaption to Acute Severe Hypoxia. Molecules. 2023; 28(5):2050.
https://doi.org/10.3390/molecules28052050
Chicago/Turabian Style
Chu, Zongtang, Weidan Li, Guoxing You, Yuzhi Chen, Dong Qin, Peilin Shu, Yujing Wang, Ying Wang, Lian Zhao, and Hong Zhou.
2023. "Resveratrol, a New Allosteric Effector of Hemoglobin, Enhances Oxygen Supply Efficiency and Improves Adaption to Acute Severe Hypoxia" Molecules 28, no. 5: 2050.
https://doi.org/10.3390/molecules28052050
APA Style
Chu, Z., Li, W., You, G., Chen, Y., Qin, D., Shu, P., Wang, Y., Wang, Y., Zhao, L., & Zhou, H.
(2023). Resveratrol, a New Allosteric Effector of Hemoglobin, Enhances Oxygen Supply Efficiency and Improves Adaption to Acute Severe Hypoxia. Molecules, 28(5), 2050.
https://doi.org/10.3390/molecules28052050