Artikel

Design and Synthesis of β‐Carboline Hydrazone Hybrids as New α‐Amylase and α‐Glucosidase Inhibitors: Inhibition Kinetics and Molecular Docking Studies

14.08.2025

Von Wiley-VCH zur Verfügung gestellt

The current study has successfully designed and synthesized a series of β-carboline hydrazone hybrids as new α-amylase and α-glucosidase inhibitors. Inhibition kinetic analysis revealed that they are competitive-type inhibitors of α-amylase and non-competitive type inhibitors of α-glucosidase. Molecular docking studies suggest that the origin of binding affinities stems from both hydrophobic and hydrophilic binding interactions.


Abstract

Diabetes mellitus (DM) is a chronic metabolic disorder that has been flagged as a global threat with progression at an alarming rate worldwide. The dual inhibition of carbohydrate hydrolases, α-amylase, and α-glucosidase, has been considered one of the most coveted approaches for diabetes management. In view of hybrid compounds that usually exhibit greater affinity and efficiency, we have designed and synthesized a series of β-carboline hydrazone hybrids (114) as new α-amylase and α-glucosidase inhibitors. Compared to standard acarbose, the synthesized compounds exhibited promising α-amylase and α-glucosidase inhibition with IC50 values ranging between 1.99–8.23 mM and 1.62–9.09 mM, respectively. Compound 11 (IC50 = 1.99 ± 0.18 mM) turned out to be the most active against α-amylase enzyme, whereas 9 (IC50 = 1.62 ± 0.11 mM) displayed the highest inhibitory activity against α-glucosidase. Inhibition kinetic analysis of selected compounds revealed that they are competitive-type inhibitors of α-amylase and noncompetitive-type inhibitors of α-glucosidase. Molecular docking studies of compounds 114 suggest that the origin of binding affinities stems from both hydrophobic and hydrophilic binding interactions. The chemical structures of compounds 114 was extensively characterized by spectroscopic methods, including 1H- and 13C-NMR, and IR spectroscopy.

Verwandte Artikel
Design and Synthesis of β‐Carboline Hydrazone Hybrids as New α‐Amylase and α‐Glucosidase Inhibitors: Inhibition Kinetics and Molecular Docking Studies
In Kürze
Design and Synthesis of β‐Carboline Hydrazone Hybrids as New α‐Amylase and α‐Glucosidase Inhibitors: Inhibition Kinetics and Molecular Docking Studies
Ehrungen, Karriere
Design and Synthesis of β‐Carboline Hydrazone Hybrids as New α‐Amylase and α‐Glucosidase Inhibitors: Inhibition Kinetics and Molecular Docking Studies
Aus den Fachgruppen
Design and Synthesis of β‐Carboline Hydrazone Hybrids as New α‐Amylase and α‐Glucosidase Inhibitors: Inhibition Kinetics and Molecular Docking Studies
EuChemS Policy Workshop „PFAS”
Design and Synthesis of β‐Carboline Hydrazone Hybrids as New α‐Amylase and α‐Glucosidase Inhibitors: Inhibition Kinetics and Molecular Docking Studies
Bafög beantragen

Das könnte Sie auch interessieren

GDCh-Mitglieder exklusiv

Artikel • Nachrichten aus der Chemie

In Kürze

GÖCH

Termin vormerken: Generalversammlung am 21. September Die diesjährige Generalversammlung ist im Rahmen der Chemietage am...

30.04.2026
GDCh-Mitglieder exklusiv

Artikel • Nachrichten aus der Chemie

Ehrungen, Karriere

Service

Ehrungen Finnian Freeling, Dr.: Promotionspreis Wasserchemie der Wasserchemischen Gesellschaft, Fachgruppe der GDCh, für...

30.04.2026
GDCh-Mitglieder exklusiv

Artikel • Nachrichten aus der Chemie

Aus den Fachgruppen

GDCh

Bauchemie Neuer Vorstand Die GDCh-Fachgruppe Bauchemie hat ihren Vorstand für die Amtszeit 1. Januar 2026 bis 31. Dezemb...

30.04.2026