Phytochemical Study: Molecular Docking of Eugenol Derivatives as Antioxidant and Antimicrobial Agents

Author:

Abdou Achraf1ORCID,Idouaarame Sabrine2,Salah Mohammed3,Nor Nabil3,Zahm Soukaina3,El Makssoudi Abdelhakim1,Mazoir Noureddine4,Benharref Ahmed5,Dari Abdelmjid1,Eddine Jamal Jamal1,Blaghen Mohamed2,Dakir Mohamed1

Affiliation:

1. Laboratory of Organic Synthesis, Extraction and Valorization, Faculty of Sciences Ain Chock, Hassan II University of Casablanca, P.O. Box 20, 20000, Casablanca, Morocco

2. Laboratory of Pharmacology, Microbiology, Biotechnology and Environment, Faculty of Sciences Ain Chock, Hassan II University of Casablanca, P.O. Box 20, 20000, Casablanca, Morocco

3. Molecular Modeling and Spectroscopy Research Team, Department of Chemistry, Faculty of Sciences, ChouaïbDoukkali University, P.O. Box 20, 24000 El Jadida, Morocco

4. Laboratory of Plant Biotechnology and Ecosystem Valorization, Faculty of Sciences ChouaibDoukkali University, Research Unit: Natural Resource Valorizations P.O. Box 20, 24000 El Jadida, Morocco

5. Laboratory of Biomolecular Chemistry, Natural Substances, and Reactivity, URAC 16, Faculty of Sciences Semlalia, Cadi Ayyad University, P.O. Box 2390, 40000 Marrakech, Morocco

Abstract

Abstract: Eugenol (4-allyl-2-methoxyphenol) is a natural phenolic compound present in certain aromatic plants; however, it is generally extracted from the essential oil of Eugenia caryophyllata (Syzygiumaromaticum) (L.) Merr. and L.M. Perry. This bioactive natural compound has generated considerable biological interest with well-known antimicrobial and antioxidant actions. This study aimed at evaluating eugenol derivatives as antimicrobial and antioxidant agents with the aid of molecular dynamic simulation. The starting material was extracted from cloves using hydrodistillation. Two eugenol derivatives, acetyleugenol (4-allyl-2-methoxyphenylacetate) and epoxyeugenol 4-(2,3- Epoxypropyl)-2-methoxyphenol, were prepared and tested against two strains Escherichia coli (E. coli) and Staphylococcus aureus (S. aureus). The results have revealed that the three compounds (eugenol, acetyleugenol, and epoxyeugenol) possess important potentials for inhibition against E. coli and S. aureus. The antioxidant activity of eugenol derivatives was evaluated by reacting with DPPH (1,1- diphenyl-2-picrylhydrazyl), and it was reported that the epoxyeugenol was the most active compound. The molecular docking scores of three compounds and the amino acids in the active site pockets of the selected proteins of the two bacteria have approved and explained the biological experimental outcomes.

Publisher

Bentham Science Publishers Ltd.

Subject

Organic Chemistry,Biochemistry

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