Ngā hua rapu - Claudia C. Robayo‐Torres
- E whakaatu ana i te 1 - 4 hua o te 4
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1
Luminal Substrate “Brake” on Mucosal Maltase‐glucoamylase Activity Regulates Total Rate of Starch Digestion to Glucose mā Roberto Quezada‐Calvillo, Claudia C. Robayo‐Torres, Zihua Ao, Bruce R. Hamaker, Andrea Quaroni, Gary D. Brayer, Erwin E. Sterchi, Susan S. Baker, Buford L. Nichols
I whakaputaina 2007Artigo -
2
Mucosal Maltase-Glucoamylase Plays a Crucial Role in Starch Digestion and Prandial Glucose Homeostasis of Mice mā Buford L. Nichols, Roberto Quezada‐Calvillo, Claudia C. Robayo‐Torres, Zihua Ao, Bruce R. Hamaker, Nancy F. Butte, Juan C. Marini, Farook Jahoor, Erwin E. Sterchi
I whakaputaina 2009Artigo -
3
Luminal Starch Substrate “Brake” on Maltase-Glucoamylase Activity Is Located within the Glucoamylase Subunit3 mā Roberto Quezada‐Calvillo, Lyann Sim, Zihua Ao, Bruce R. Hamaker, Andrea Quaroni, Gary D. Brayer, Erwin E. Sterchi, Claudia C. Robayo‐Torres, David R. Rose, Buford L. Nichols
I whakaputaina 2008Artigo -
4
Contribution of Mucosal Maltase-Glucoamylase Activities to Mouse Small Intestinal Starch α-Glucogenesis3 mā Roberto Quezada‐Calvillo, Claudia C. Robayo‐Torres, Antone R. Opekun, Partha Sen, Zihua Ao, Bruce R. Hamaker, Andrea Quaroni, Gary D. Brayer, Sigrid Wattler, Michael Nehls, Erwin E. Sterchi, Buford L. Nichols
I whakaputaina 2007Artigo
Ngā utauta rapu:
Ngā marau whai pānga
Biochemistry
Chemistry
Enzyme
Biology
Maltase
Starch
Amylase
Chromatography
Digestion (alchemy)
Maltose
Medicine
Sucrase
Acarbose
Active site
Alpha-amylase
Alpha-glucosidase
Dextrin
Disaccharidase
Endocrinology
Food science
Gene
Gluconeogenesis
Glucose homeostasis
Heparin
Homeostasis
Hydrolysis
Ingestion
Insulin
Insulin resistance
Internal medicine