Ansari, P.; Hannan, J.M.A.; Seidel, V.; Abdel-Wahab, Y.H.A.
Polyphenol-Rich Leaf of Annona squamosa Stimulates Insulin Release from BRIN-BD11 Cells and Isolated Mouse Islets, Reduces (CH2O)n Digestion and Absorption, and Improves Glucose Tolerance and GLP-1 (7-36) Levels in High-Fat-Fed Rats. Metabolites 2022, 12, 995.
https://doi.org/10.3390/metabo12100995
AMA Style
Ansari P, Hannan JMA, Seidel V, Abdel-Wahab YHA.
Polyphenol-Rich Leaf of Annona squamosa Stimulates Insulin Release from BRIN-BD11 Cells and Isolated Mouse Islets, Reduces (CH2O)n Digestion and Absorption, and Improves Glucose Tolerance and GLP-1 (7-36) Levels in High-Fat-Fed Rats. Metabolites. 2022; 12(10):995.
https://doi.org/10.3390/metabo12100995
Chicago/Turabian Style
Ansari, Prawej, J.M.A. Hannan, Veronique Seidel, and Yasser H.A. Abdel-Wahab.
2022. "Polyphenol-Rich Leaf of Annona squamosa Stimulates Insulin Release from BRIN-BD11 Cells and Isolated Mouse Islets, Reduces (CH2O)n Digestion and Absorption, and Improves Glucose Tolerance and GLP-1 (7-36) Levels in High-Fat-Fed Rats" Metabolites 12, no. 10: 995.
https://doi.org/10.3390/metabo12100995
APA Style
Ansari, P., Hannan, J. M. A., Seidel, V., & Abdel-Wahab, Y. H. A.
(2022). Polyphenol-Rich Leaf of Annona squamosa Stimulates Insulin Release from BRIN-BD11 Cells and Isolated Mouse Islets, Reduces (CH2O)n Digestion and Absorption, and Improves Glucose Tolerance and GLP-1 (7-36) Levels in High-Fat-Fed Rats. Metabolites, 12(10), 995.
https://doi.org/10.3390/metabo12100995