Biology Reference
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Chang, X., & Kang, W. Y. (2012). Antioxidant and alpha-glucosidase inhibitory compounds
fromPimpinella candolleana Wight et Arn. Mediclinal Chemistry Research , 21 , 4324-4329.
Clegg, M. E., Pratt, M., Meade, C. M., &Henry, C. J. K. (2011). The addition of raspberries
and blueberries to a starch-based food does not alter the glycaemic response. British Jour-
nal of Nutrition , 106 , 335-338.
Cuyvers, S., Dornez, E., Delcour, J. A., &Courtin, C. M. (2012). Occurrence and functional
significance of secondary carbohydrate binding sites in glycoside hydrolases. Critical
Reviews in Biotechnology , 32 , 93-107.
Ernst, B., & Magnani, J. L. (2009). From carbohydrate leads to glycomimetic drugs. Nature
Reviews. Drug Discovery , 8 , 661-677.
Escand´n-Rivera, S., Gonz´lez-Andrade, M., Bye, R., Linares, E., Navarrete, A., &
Mata, R. (2012). a -Glucosidase inhibitors from Brickellia cavanillesii. Journal of Natural
Products , 75 , 968-974.
Etxeberria, U., de la Garza, A. L., Campion, J., Martinez, J. A., &Milagro, F. I. (2012). Anti-
diabetic effects of natural plant extracts via inhibition of carbohydrate hydrolysis enzymes
with emphasis on pancreatic alpha amylase. Expert Opinion on Therapeutic Targets , 16 ,
269-297.
Fox, J. D., & Robyt, J. F. (1991). Miniaturization of three carbohydrate analyses using a
microsample plate reader. Analytical Biochemistry , 195 , 93-96.
Gibbs, B. F., Kermasha, S., Alli, I., & Mulligan, C. N. (1999). Encapsulation in the food
industry: A review. International Journal of Food Sciences and Nutrition , 50 , 213-224.
Goto, T., Horita, M., Nagai, H., Nagatomo, A., Nishida, N., Matsuura, Y., et al. (2012).
Tiliroside, a glycosidic flavonoid, inhibits carbohydrate digestion and glucose absorption
in the gastrointestinal tract. Molecular Nutrition & Food Research , 56 , 435-445.
Heinonen, M. (2007). Antioxidant activity and antimicrobial effect of berry phenolics-a
Finnish perspective. Molecular Nutrition & Food Research , 51 , 684-691.
Hlebowicz, J., Hlebowicz, A., Lindstedt, S., Bjorgell, O., Hoeglund, P., Holst, J. J., et al.
(2009). Effects of 1 and 3 g cinnamon on gastric emptying, satiety, and postprandial blood
glucose, insulin, glucose-dependent insulinotropic polypeptide, glucagon-like peptide 1,
and ghrelin concentrations in healthy subjects. American Journal of Clinical Nutrition , 89 ,
815-821.
Hou, W. L., Li, Y. F., Zhang, Q., Wei, X., Peng, A. H., Chen, L. J., et al. (2009). Triterpene
acids isolated from Lagerstroemia speciosa leaves as alpha-glucosidase inhibitors.
Phytotherapy Research , 23 , 614-618.
Hu, Y. C., Luo, Y. D., Li, L., Joshi, M. K., & Lu, Y. H. (2012). In vitro investigation of
2 0 ,4 0 -dihydroxy-6 0 -methoxy-3 0 ,5 0 -dimethylchalcone for glycemic control. Journal of
Agricultural and Food Chemistry , 60 , 10683-10688.
Huang, G. J., Hsieh, W. T., Chang, H. Y., Huang, S. S., Lin, Y. C., & Kuo, Y. H. (2011).
alpha-Glucosidase and aldose reductase inhibitory activities from the fruiting body of
Phellinus merrillii. Journal of Agricultural and Food Chemistry , 59 , 5702-5706.
Jain, S. C., Lohiya, N. K., & Kapoor, A. (1987). Trigonella foenumgraecum Linn:
A hypoglycaemic agent. Indian Journal of Pharmaceutical Sciences , 49 , 113-114.
Jenkins, D. J. A., Kendall, C. W. C., Augustin, L. S. A., Franseschi, S., Hamaidi, M.,
Marchie, A., et al. (1981). Glycemic index of foods: A physiological basis for carbohy-
drate exchange. American Journal of Clinical Nutrition , 34 , 362-366.
Johnston, K., Sharp, P., & Clifford, M. (2005). Dietary polyphenols decrease glucose uptake
by human interstinal Caco-2 cells. FEBS Letters , 579 , 1653-1657.
Kelemen, M. V., & Whelan, W. J. (1966). Inhibition of glucosidases and galactosidases by
polyols. Archives of Biochemistry and Biophysics , 117 , 423-428.
Keyhanian, S., & Stahl-Biskup, E. (2007). Phenolic constituents in dried flowers of Aloe
vera (Aloe barbadensis) and their in vitro antioxidative capacity. Planta Medica , 73 ,
599-602.
 
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