Molekul: Jurnal Ilmiah Kimia
Vol 21 No 2 (2026)

Structural Characterization and Antidiabetic Drug Potential of Aminated Eugenol Derivatives Synthesized via Ultrasound-Assisted Method

Riska Mardiyanti (Department of Chemistry, Faculty of Mathematics and Natural Sciences, Hasanuddin University, Kampus Unhas Tamalanrea, Makassar, 90245, Indonesia.)
Jumina Jumina (Department of Chemistry, Faculty of Mathematics and Natural Sciences, Gadjah Mada University, Sleman, Yogyakarta, 55281, Indonesia.)
Nunuk Hariani Soekamto (Department of Chemistry, Faculty of Mathematics and Natural Sciences, Hasanuddin University, Kampus Unhas Tamalanrea, Makassar, 90245, Indonesia.)
Nur Umriani Permatasari (Department of Chemistry, Faculty of Mathematics and Natural Sciences, Hasanuddin University, Kampus Unhas Tamalanrea, Makassar, 90245, Indonesia.)
Bulkis Musa (Department of Chemistry, Faculty of Mathematics and Natural Sciences, Hasanuddin University, Kampus Unhas Tamalanrea, Makassar, 90245, Indonesia.)
Muhammad Al Mustawa (Department of Chemistry, Faculty of Mathematics and Natural Sciences, Hasanuddin University, Kampus Unhas Tamalanrea, Makassar, 90245, Indonesia.)



Article Info

Publish Date
20 Jul 2026

Abstract

ABSTRACT. Diabetes mellitus remains a global health challenge, necessitating the development of more effective a-amylase inhibitors with fewer side effects than current synthetic drugs. This study reports the successful synthesis of three aminated eugenol derivatives, a (1-(4-allyl-2-methoxyphenoxy)-3-(phenylamino)propan-2-ol), b (1-(4-allyl-2-methoxyphenoxy)-3-(m-tolylamino)propan-2-ol), and c (1-(4-allyl-2-methoxyphenoxy)-3-((4 chlorophenyl)amino)propan-2-ol), via ultrasonically assisted epoxide ring-opening using aniline, m-toluidine, and 4-chloroaniline. Ultrasonic irradiation significantly reduced the reaction time from 5-24 hours to 2 hours. Structural characterization by FTIR, ¹H-NMR, ¹³C-NMR, GC-MS, and melting point analysis confirmed the successful formation of all derivatives. In vitro α-amylase inhibition assays (UV–Vis) showed that all compounds exhibited higher inhibitory activity than acarbose, with compound b demonstrating the strongest inhibition (99.04% at 250 µM). Molecular docking studies against α-amylase (PDB: 1B2Y) further supported these results, yielding binding energies of –4.58, –5.13, and –5.16 kcal mol⁻¹ for compounds a, b, and c, respectively, compared with –3.64 kcal mol⁻¹ for acarbose. These findings demonstrate the enhanced efficiency of the ultrasound-assisted synthesis and substituent variations enhance both the structural and biological properties of the eugenol derivatives, offering critical perspectives on how their molecular structure dictates activity, thereby validating their future utility as promising antidiabetic drug candidates. Keywords: α-amylase binding affinity, epoxide ring-opening, sonochemical synthesis, structure-activity relationship, substituent electronic effect.

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Journal Info

Abbrev

jm

Publisher

Subject

Biochemistry, Genetics & Molecular Biology Chemistry Materials Science & Nanotechnology

Description

The MOLEKUL is dedicated to fostering advancements in all branches of chemistry and its diverse sub-disciplines. It aims to publish high-quality research encompassing a wide range of topics, including but not limited to Pharmaceutical Chemistry, Biological Activities of Synthetic Drugs, ...