Biological Properties of Mentha viridis L. Essential Oil and Its Main Monoterpene Constituents

Author:

Omari Nasreddine El1,Chamkhi Imane2,Bakrim Saad3,Aanniz Tarik4,Benali Taoufiq5,Akhazzane Mohamed6,Ullah Riaz7,Alotaibi Amal8,Bari Ahmed9,Elhrech Hamza10,Zengin Gokhan11ORCID,Bouyahya Abdelhakim10

Affiliation:

1. High Institute of Nursing Professions and Health Techniques of Tetouan Tetouan Morocco

2. Geo-Biodiversity and Natural Patrimony Laboratory (GeoBio) Geophysics Natural Patrimony. Research Center (GEOPAC) Scientific Institute Mohammed V University in Rabat Morocco

3. Geo-Bio-Environment Engineering and Innovation Laboratory Molecular Engineering Biotechnology and Innovation Team Polydisciplinary Faculty of Taroudant Ibn Zohr University Agadir 80000 Morocco

4. Medical Biotechnology Laboratory Rabat Medical & Pharmacy School Mohammed V University in Rabat Rabat B.P.–6203 Morocco

5. Environment and Health Team Polydisciplinary Faculty of Safi Cadi Ayyad University Safi B.P.–4162 Morocco

6. Cité de l'innovation Université Sidi Mohamed Ben Abdellah Route Immouzer, P.O. Box 2626 Fez 30000 Morocco

7. Medicinal Aromatic and Poisonous Plants Research Center College of Pharmacy King Saud University Riyadh Saudi Arabia

8. Department of Basic Science College of Medicine Princess Nourah bint Abdulrahman University Riyadh Saudi Arabia

9. Department of Pharmaceutical Chemistry College of Pharmacy King Saud University Riyadh Saudi Arabia

10. Laboratory of Human Pathologies Biology Department of Biology Faculty of Sciences Mohammed V University in Rabat Rabat 10106 Morocco

11. Department of Biology Science Faculty Selcuk University Konya Turkey

Abstract

AbstractThis research aimed to evaluate the antidiabetic, dermatoprotective, and antibacterial activities of Mentha viridis L. essential oil (MVEO) collected in the province of Ouezzane (Northwest Morocco). Gas chromatography‐mass spectrometry (GC‐MS) analysis revealed that the main constituents of MVEO were carvone (37.26 %), 1,8‐cineole (11.82 %), limonene (5.27 %), α‐terpineol (4.16 %), and β‐caryophyllene (4.04 %). MVEO showed strong inhibitory effects on α‐amylase and α‐glucosidase activities, exceeding those of acarbose, but weak anti‐elastase activity. The main compounds, β‐caryophyllene (IC50=79.91±2.24 and 62.08±2.78 μg/mL) and limonene (IC50=90.73±3.47 and 68.98±1, 60 μg/mL), demonstrated the strongest inhibitory effects on both digestive enzymes (α‐glucosidase and α‐amylase, respectively). In silico investigations, using molecular docking, also showed the inhibitory potential of these bioactive compounds against the enzymes tested. In conclusion, MVEO, due to its main components such as limonene, 1,8‐cineole, β‐caryophyllene, carvone, and α‐terpineol, shows promising prospects for drug discovery and natural therapeutic applications.

Publisher

Wiley

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