Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

α-amylase Inhibitor Based on Oleanolic Acid: In vitro and in silico Studies

View through CrossRef
Alpha-amylase (α-amylase) is a key enzyme involved in the hydrolysis of α-1,4-glycosidic bonds in starch, playing a crucial role in regulating carbohydrate metabolism. Inhibiting the activity of α-amylase is a promising therapeutic approach for managing disorders associated with abnormal glucose metabolism, such as diabetes and obesity. Oleanolic acid (OA), a common pentacyclic triterpenoid found in various natural plants, exhibits a wide range of pharmacological properties, including hepatoprotective, anti-inflammatory, antioxidant, and potential anticancer effects. This study investigates the α-amylase inhibitory activity of OA derived from Panax bipinnatifidus Seem. cultivated in Vietnam using a combined in vitro and in silico approach. In the in vitro assays, OA exhibited α-amylase inhibitory activity with an IC50 value of 190.84 μg/mL; however, it was less effective compared to acarbose, a reference inhibitor with an IC50 value of 14.15 μg/mL. In contrast, in silico studies utilizing molecular docking shed light on the detailed molecular interactions between oleanolic acid and α-amylase. Key amino acid residues involved in the binding process include TYR62, ASP197, GLU233, HIS101, and LEU162, forming hydrogen bonds and hydrophobic interactions with OA. The calculated binding energy was -8.33 kcal/mol-1, indicating strong affinity and stable binding between OA and α-amylase. When compared to acarbose, OA displayed a stronger binding affinity to α-amylase, while acarbose had a binding energy of -2.90 kcal/mol-1. However, acarbose formed more hydrogen bonds with various amino acid residues such as GLU233, ASP300, GLY304, HIS305, and GLY306, along with van der Waals interactions, indicating a distinct binding pattern compared to OA. These results suggest that although OA has potential as a natural α-amylase inhibitor, its efficacy remains lower than acarbose in both molecular simulations (in silico) and experimental assays (in vitro). This underscores the necessity to optimize the structure of OA or combine it with other therapeutic strategies to enhance its α-amylase inhibitory effectiveness, while also opening avenues for further research into natural α-amylase inhibitors.
Title: α-amylase Inhibitor Based on Oleanolic Acid: In vitro and in silico Studies
Description:
Alpha-amylase (α-amylase) is a key enzyme involved in the hydrolysis of α-1,4-glycosidic bonds in starch, playing a crucial role in regulating carbohydrate metabolism.
Inhibiting the activity of α-amylase is a promising therapeutic approach for managing disorders associated with abnormal glucose metabolism, such as diabetes and obesity.
Oleanolic acid (OA), a common pentacyclic triterpenoid found in various natural plants, exhibits a wide range of pharmacological properties, including hepatoprotective, anti-inflammatory, antioxidant, and potential anticancer effects.
This study investigates the α-amylase inhibitory activity of OA derived from Panax bipinnatifidus Seem.
cultivated in Vietnam using a combined in vitro and in silico approach.
In the in vitro assays, OA exhibited α-amylase inhibitory activity with an IC50 value of 190.
84 μg/mL; however, it was less effective compared to acarbose, a reference inhibitor with an IC50 value of 14.
15 μg/mL.
In contrast, in silico studies utilizing molecular docking shed light on the detailed molecular interactions between oleanolic acid and α-amylase.
Key amino acid residues involved in the binding process include TYR62, ASP197, GLU233, HIS101, and LEU162, forming hydrogen bonds and hydrophobic interactions with OA.
The calculated binding energy was -8.
33 kcal/mol-1, indicating strong affinity and stable binding between OA and α-amylase.
When compared to acarbose, OA displayed a stronger binding affinity to α-amylase, while acarbose had a binding energy of -2.
90 kcal/mol-1.
However, acarbose formed more hydrogen bonds with various amino acid residues such as GLU233, ASP300, GLY304, HIS305, and GLY306, along with van der Waals interactions, indicating a distinct binding pattern compared to OA.
These results suggest that although OA has potential as a natural α-amylase inhibitor, its efficacy remains lower than acarbose in both molecular simulations (in silico) and experimental assays (in vitro).
This underscores the necessity to optimize the structure of OA or combine it with other therapeutic strategies to enhance its α-amylase inhibitory effectiveness, while also opening avenues for further research into natural α-amylase inhibitors.

Related Results

The Effects of L-glutamate, L-glutamine, and L-aspartic Acid on the Amylase Production of E. coli Transformed With pAmylase
The Effects of L-glutamate, L-glutamine, and L-aspartic Acid on the Amylase Production of E. coli Transformed With pAmylase
Amylase catalyzes the hydrolysis of dietary starch into oligosaccharides. In humans, amylase is produced by the pancreas and salivary glands and is important in food digestion. Hum...
Appropriating conditions for acquisition high-content α – amylase of germinated brown rice variety Oryza stiva Anhdao
Appropriating conditions for acquisition high-content α – amylase of germinated brown rice variety Oryza stiva Anhdao
Brown rice is a food ingredient which has high nutritious values. During germination, some nutritious and functional components are increased such as lysine, vitamin E, B1, B6, mag...
A Study of Serum Amylase as a Probable Prognostic Marker in Acute Organophosphorus Poisoning
A Study of Serum Amylase as a Probable Prognostic Marker in Acute Organophosphorus Poisoning
Background and Objectives: Organophosphate compounds are frequently used for homicidal and suicidal purposes, organophosphates account for as many as 80% of pes...
Assessment of diastatic, proteolytic and lipolytic activities of yellow and brown varieties of Cyperus esculentus (Tigernuts) extracts
Assessment of diastatic, proteolytic and lipolytic activities of yellow and brown varieties of Cyperus esculentus (Tigernuts) extracts
Analyses of two varieties of Cyperus esculentus (tigernuts) showed that the 100-nutweight of the yellow variety (49.1 g) was higher than the brown variety (14.8 g). The percentage ...
Expression of β-Amylase from Alfalfa Taproots
Expression of β-Amylase from Alfalfa Taproots
Abstract Alfalfa (Medicago sativa L.) roots contain large quantities of β-amylase, but little is known about its role in vivo. We studied this by isolating a β-amyla...
Oleanolic Acid and Its Derivatives: Biological Activities and Therapeutic Potential in Chronic Diseases
Oleanolic Acid and Its Derivatives: Biological Activities and Therapeutic Potential in Chronic Diseases
The increasing demand for natural products as an alternative therapy for chronic diseases has encouraged research into the pharmacological importance of bioactive compounds from pl...

Back to Top