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Beta-Glucan From Barley Attenuates Post-prandial Glycemic Response by Inhibiting the Activities of Glucose Transporters but Not Intestinal Brush Border Enzymes and Amylolysis of Starch. , Malunga LN., Front Nutr. April 16, 2021; 8 628571.
Beneficial actions of the [A14K] analog of the frog skin peptide PGLa-AM1 in mice with obesity and degenerative diabetes: A mechanistic study. , Musale V., Peptides. February 1, 2021; 136 170472.
Inhibition of the facilitative sugar transporters (GLUTs) by tea extracts and catechins. , Ni D., FASEB J. August 1, 2020; 34 (8): 9995-10010.
Nutritional implications of olives and sugar: attenuation of post-prandial glucose spikes in healthy volunteers by inhibition of sucrose hydrolysis and glucose transport by oleuropein. , Kerimi A., Eur J Nutr. April 1, 2019; 58 (3): 1315-1330.
Effect of the flavonoid hesperidin on glucose and fructose transport, sucrase activity and glycaemic response to orange juice in a crossover trial on healthy volunteers. , Kerimi A., Br J Nutr. April 1, 2019; 121 (7): 782-792.
Green and Chamomile Teas, but not Acarbose, Attenuate Glucose and Fructose Transport via Inhibition of GLUT2 and GLUT5. , Villa-Rodriguez JA., Mol Nutr Food Res. December 1, 2017; 61 (12):
Distinct action of the α-glucosidase inhibitor miglitol on SGLT3, enteroendocrine cells, and GLP1 secretion. , Lee EY ., J Endocrinol. March 1, 2015; 224 (3): 205-14.
Impaired liver function in Xenopus tropicalis exposed to benzo[a]pyrene: transcriptomic and metabolic evidence. , Regnault C., BMC Genomics. August 8, 2014; 15 666.
SLC2A9 is a high-capacity urate transporter in humans. , Caulfield MJ., PLoS Med. October 7, 2008; 5 (10): e197.