References
- Nature v.414 Insulin signaling and the regulation of glucose and lipid metabolism Saltiel,A.R.;Kahn,C.R. https://doi.org/10.1038/35107183
- Drugs v.57 Drug therapy of postprandial hyperglycemia Mooradian,A.D.;Thurman,J.E.
- Biosci Biotechnol Biochem v.61 Isolation and identification of alpha-glucosidase inhibitors from Tochu-cha (Eucommia ulmoides) Watanabe,J.;Kawabata,J.;Kurihara,H.;Niki,R. https://doi.org/10.1271/bbb.61.177
- Eur J Biochem v.252 The mechanism of porcine pancreatic alpha-amylase inhibition of maltopentaose hydrolysis by acarbose, maltose and maltotriose Kazaz,M.A.;Desseausx,V.;Marchis Mouren,G.;Prodanov,E.;Santimone,M. https://doi.org/10.1046/j.1432-1327.1998.2520100.x
- Chem Pharm Bull v.47 Synthesis of new N-containing maltooligosaccharides, alpha-amylase inhibitors, and their biological activities Uchida,R.;Nasu,A.;Tokutake,S.;Kasai,K.;Tobe,K.;Yamaji,N. https://doi.org/10.1248/cpb.47.187
- J Agric Food Chem v.47 Inhibitory effect of alpha-glucosidase inhibitors varies according to its origin Oki,T.;Matsui,T.;Osajima,Y. https://doi.org/10.1021/jf980788t
- J of Nutr v.130 High chromium yeast supplementation improves glucose tolerance in pigs by decreasing hepatic extraction of insulin Guan,X.;Matte,J.J.;Ku,P.K.;Snow,J.L.;Burton,J.L.;Trottier,N.L.
- Nature v.414 New drug targets for type 2 diabetes and the metabolic syndrome Moller,D.E. https://doi.org/10.1038/414821a
- Am J Clin Nutr v.55 Effect of an intestinal disaccharidase inhibitor (AO-128) on obesity and diabetes Matuo,T.;Odaka,H.;Ikeda,H.
- J Agric Food Chem v.49 Polyhydroxylated alkaloids isolated from mulberry trees (Morusalba L.) and silkworms (Bombyx mori L.) Asano,N.;Yamashita,T.;Yasuda,K.;Ikeda,K.;Kizu,H.;Kameda,Y.;Kato,A.;Nash,R.J.;Lee,H.S.;Ryu,K.S. https://doi.org/10.1021/jf010567e
- Pancreas v.17 Acute postprandial gastrointestinal and metabolic effects of wheat amylase inhibitor (WAI) in normal, obese, and diabetic humans Lankisch,M.;Layer,P.;Rizza,R.A.;DiMagno,E.P. https://doi.org/10.1097/00006676-199808000-00011
- Comp Biochem Physiol A v.100 The effect of acarbose on the food intake, weight gain, and adiposity of LA/N-cp rats Vedula,U.;Schnitzer Polokoff,R.;Tulp,O.L. https://doi.org/10.1016/0300-9629(91)90503-5
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