Phenolic acids are widely found in fruits and vegetables. The inhibitory effect of phenolic acids on α-amylase, a key enzyme for starch digestion, has attracted the attention of researchers. To further investigate the effects of different substituents on the benzene ring of phenolic acid on the inhibition of α-amylase activity, in vitro experiments and molecular docking were used. The structure-activity relationships of 17 phenolic acids with benzoic acid as the parent nucleus were analyzed by determining their half inhibitory concentration (IC50) toward α-amylase. The results showed that 2,3,4-trihydroxybenzoic acid had the strongest inhibitory effect on α-amylase with an IC50 value of 17.30 ± 0.73 mM. According to the structure-activity a...
Diabetes mellitus is a major health problem globally. The management of carbohydrate digestion provi...
The effects of 10 polyphenols and 2 aromatic amino acids on human salivery α-amylase (SA) and porcin...
Aldose reductase (ALR2) is an enzyme involved in the development of long-term diabetic complications...
Phenolic acids are involved in modulating the activity of starch digestive enzymes but remains uncle...
Background: α-Amylase plays an important role in starch digestion, the main source of exogenous gluc...
Summary: Herein, we report the experimental results of the inhibition effects of some phenolic compo...
This thesis presents the results of structure-activity relationship (SAR) studies on inhibitors of t...
In this study, structural specificity of flavonoids was investigated to selectively inhibit starch d...
The increasing prevalence of type 2 diabetes has stimulated research aimed at discovering new drugs ...
In this study, 22 phenolic compounds were investigated to inhibit the angiotensin-converting enzyme ...
A wide range of phenolic compounds belonging to different classes and subclasses with a potency to i...
α-Amylase has been considered an important therapeutic target for the management of type 2 diabetes ...
Aldose reductase (AR), α-amylase, and α-glycosidase are vital enzymes to prevent diabetic complicati...
Background: Diabetes mellitus (DM) is a serious public health challenge, projected by WHO to be one ...
AbstractBackground α-Amylases catalyze the hydrolysis of glycosidic linkages in starch and other rel...
Diabetes mellitus is a major health problem globally. The management of carbohydrate digestion provi...
The effects of 10 polyphenols and 2 aromatic amino acids on human salivery α-amylase (SA) and porcin...
Aldose reductase (ALR2) is an enzyme involved in the development of long-term diabetic complications...
Phenolic acids are involved in modulating the activity of starch digestive enzymes but remains uncle...
Background: α-Amylase plays an important role in starch digestion, the main source of exogenous gluc...
Summary: Herein, we report the experimental results of the inhibition effects of some phenolic compo...
This thesis presents the results of structure-activity relationship (SAR) studies on inhibitors of t...
In this study, structural specificity of flavonoids was investigated to selectively inhibit starch d...
The increasing prevalence of type 2 diabetes has stimulated research aimed at discovering new drugs ...
In this study, 22 phenolic compounds were investigated to inhibit the angiotensin-converting enzyme ...
A wide range of phenolic compounds belonging to different classes and subclasses with a potency to i...
α-Amylase has been considered an important therapeutic target for the management of type 2 diabetes ...
Aldose reductase (AR), α-amylase, and α-glycosidase are vital enzymes to prevent diabetic complicati...
Background: Diabetes mellitus (DM) is a serious public health challenge, projected by WHO to be one ...
AbstractBackground α-Amylases catalyze the hydrolysis of glycosidic linkages in starch and other rel...
Diabetes mellitus is a major health problem globally. The management of carbohydrate digestion provi...
The effects of 10 polyphenols and 2 aromatic amino acids on human salivery α-amylase (SA) and porcin...
Aldose reductase (ALR2) is an enzyme involved in the development of long-term diabetic complications...