Mazibuko-Mbeje, S.E.; Mthembu, S.X.H.; Tshiitamune, A.; Muvhulawa, N.; Mthiyane, F.T.; Ziqubu, K.; Muller, C.J.F.; Dludla, P.V.
Orientin Improves Substrate Utilization and the Expression of Major Genes Involved in Insulin Signaling and Energy Regulation in Cultured Insulin-Resistant Liver Cells. Molecules 2021, 26, 6154.
https://doi.org/10.3390/molecules26206154
AMA Style
Mazibuko-Mbeje SE, Mthembu SXH, Tshiitamune A, Muvhulawa N, Mthiyane FT, Ziqubu K, Muller CJF, Dludla PV.
Orientin Improves Substrate Utilization and the Expression of Major Genes Involved in Insulin Signaling and Energy Regulation in Cultured Insulin-Resistant Liver Cells. Molecules. 2021; 26(20):6154.
https://doi.org/10.3390/molecules26206154
Chicago/Turabian Style
Mazibuko-Mbeje, Sithandiwe E., Sinenhlanhla X. H. Mthembu, Andani Tshiitamune, Ndivhuwo Muvhulawa, Fikile T. Mthiyane, Khanyisani Ziqubu, Christo J. F. Muller, and Phiwayinkosi V. Dludla.
2021. "Orientin Improves Substrate Utilization and the Expression of Major Genes Involved in Insulin Signaling and Energy Regulation in Cultured Insulin-Resistant Liver Cells" Molecules 26, no. 20: 6154.
https://doi.org/10.3390/molecules26206154
APA Style
Mazibuko-Mbeje, S. E., Mthembu, S. X. H., Tshiitamune, A., Muvhulawa, N., Mthiyane, F. T., Ziqubu, K., Muller, C. J. F., & Dludla, P. V.
(2021). Orientin Improves Substrate Utilization and the Expression of Major Genes Involved in Insulin Signaling and Energy Regulation in Cultured Insulin-Resistant Liver Cells. Molecules, 26(20), 6154.
https://doi.org/10.3390/molecules26206154