Shi, Y.; Jiang, M.; Zhang, Y.; Diao, Y.; Li, N.; Liu, W.; Qiu, Z.; Qiu, Y.; Jia, A.
Hyperoside Nanomicelles Alleviate Atherosclerosis by Modulating the Lipid Profile and Intestinal Flora Structure in High-Fat-Diet-Fed Apolipoprotein-E-Deficient Mice. Molecules 2023, 28, 5088.
https://doi.org/10.3390/molecules28135088
AMA Style
Shi Y, Jiang M, Zhang Y, Diao Y, Li N, Liu W, Qiu Z, Qiu Y, Jia A.
Hyperoside Nanomicelles Alleviate Atherosclerosis by Modulating the Lipid Profile and Intestinal Flora Structure in High-Fat-Diet-Fed Apolipoprotein-E-Deficient Mice. Molecules. 2023; 28(13):5088.
https://doi.org/10.3390/molecules28135088
Chicago/Turabian Style
Shi, Yuwen, Mengcheng Jiang, Yuhang Zhang, Yuanyuan Diao, Na Li, Weipeng Liu, Zhidong Qiu, Ye Qiu, and Ailing Jia.
2023. "Hyperoside Nanomicelles Alleviate Atherosclerosis by Modulating the Lipid Profile and Intestinal Flora Structure in High-Fat-Diet-Fed Apolipoprotein-E-Deficient Mice" Molecules 28, no. 13: 5088.
https://doi.org/10.3390/molecules28135088
APA Style
Shi, Y., Jiang, M., Zhang, Y., Diao, Y., Li, N., Liu, W., Qiu, Z., Qiu, Y., & Jia, A.
(2023). Hyperoside Nanomicelles Alleviate Atherosclerosis by Modulating the Lipid Profile and Intestinal Flora Structure in High-Fat-Diet-Fed Apolipoprotein-E-Deficient Mice. Molecules, 28(13), 5088.
https://doi.org/10.3390/molecules28135088