Background: α-Amylase plays an important role in starch digestion, the main source of exogenous glucose in the human diet. Retarding glucose absorption through delaying digestion of starchy foods by inhibiting α-amylase in the digestive tract has potential as a management and/or therapeutic approach to type II diabetes. Polyphenols have been reported to have inhibitory activity against the enzyme. Scope and approach: This review provides an overview of structure-activity relationships of dietary polyphenols inhibiting α-amylase and the underlying mechanisms. The methods applied to characterize binding interactions between polyphenols and α-amylase, as well as the relationships between the constants obtained from these methods are discussed....
The health benefits derived from a diet rich in phenolic compounds have been suggested to be partly ...
In this study, the effect of berry polyphenols on starch digestion was tested in vitro both by co-di...
In this study, structural specificity of flavonoids was investigated to selectively inhibit starch d...
The effects of three soluble polysaccharides on the inhibitory activity of tea polyphenols against p...
The effects of three soluble polysaccharides on the inhibitory activity of tea polyphenols against p...
Functional foods offer the possibility to modulate the absorption of sugars, leading to benefits for...
Background: Diabetes mellitus (DM) is a serious public health challenge, projected by WHO to be one ...
Aldose reductase (AR), α-amylase, and α-glycosidase are vital enzymes to prevent diabetic complicati...
The effects of tea polyphenols on binding of porcine pancreatic α-amylase (PPA) with normal maize st...
The increasing prevalence of type 2 diabetes has stimulated research aimed at discovering new drugs ...
Human pancreatic alpha-amylase (HPA) is the enzyme responsible for hydrolyzing starch within the gut...
α-Amylase is a generally acknowledged molecular target of a distinct class of antidiabetic drugs nam...
International audienceMany studies have shown that flavan-3-ols inhibit mammalian alpha-amylases but...
Polyphenols have been reported to modulate starch digestion, thus influencing the glycaemic index of...
Phenolic acids are involved in modulating the activity of starch digestive enzymes but remains uncle...
The health benefits derived from a diet rich in phenolic compounds have been suggested to be partly ...
In this study, the effect of berry polyphenols on starch digestion was tested in vitro both by co-di...
In this study, structural specificity of flavonoids was investigated to selectively inhibit starch d...
The effects of three soluble polysaccharides on the inhibitory activity of tea polyphenols against p...
The effects of three soluble polysaccharides on the inhibitory activity of tea polyphenols against p...
Functional foods offer the possibility to modulate the absorption of sugars, leading to benefits for...
Background: Diabetes mellitus (DM) is a serious public health challenge, projected by WHO to be one ...
Aldose reductase (AR), α-amylase, and α-glycosidase are vital enzymes to prevent diabetic complicati...
The effects of tea polyphenols on binding of porcine pancreatic α-amylase (PPA) with normal maize st...
The increasing prevalence of type 2 diabetes has stimulated research aimed at discovering new drugs ...
Human pancreatic alpha-amylase (HPA) is the enzyme responsible for hydrolyzing starch within the gut...
α-Amylase is a generally acknowledged molecular target of a distinct class of antidiabetic drugs nam...
International audienceMany studies have shown that flavan-3-ols inhibit mammalian alpha-amylases but...
Polyphenols have been reported to modulate starch digestion, thus influencing the glycaemic index of...
Phenolic acids are involved in modulating the activity of starch digestive enzymes but remains uncle...
The health benefits derived from a diet rich in phenolic compounds have been suggested to be partly ...
In this study, the effect of berry polyphenols on starch digestion was tested in vitro both by co-di...
In this study, structural specificity of flavonoids was investigated to selectively inhibit starch d...