Chemical Characterization, DNA‐Damage Protection, Antiproliferative Activity and in Silico Studies of the Essential Oils from Perralderia coronopifolia Coss.**

Author:

Boussaha Sara12ORCID,Lassed Somia3ORCID,Abdelwahab Ahmed B.4ORCID,Krid Adel56ORCID,Altun Muhammed7ORCID,Chalard Pr.Pierre8,Chalchat Pr.Jean Claude9ORCID,Figueredo Gilles10,Zama Pr.Djamila1ORCID,Demirtas Pr.Ibrahim7ORCID,Benayache Pr.Samir1ORCID,Benayache Pr.Fadila1ORCID

Affiliation:

1. Unité de Recherche: Valorisation des Ressources Naturelles Molécules Bioactives et Analyses Physicochimiques et Biologiques Université Frères Mentouri Constantine 1. Route d'Aïn El Bey 25017 Constantine Algérie

2. Higher National School of Biotechnology Taoufik KHAZNADAR nouveau Pôle universitaire Ali Mendili BP. E66 Constantine 25100 Algeria

3. Département de Microbiologie et Biochimie Université Mostefa Benboulaid, Batna-2 05078 Batna Algérie

4. Temisis Therapeutics 19 avenue de la Forêt de Haye 54500 Vandœuvre-lès-Nancy France

5. Laboratoire de Physique Mathématique et Subatomique LPMS Département de Chimie Université des Frères Mentouri 25017 Constantine Algeria

6. Pharmaceutical Sciences Research Center (CRSP) Ali Mendjli, Constantine 25000 Algeria

7. Plant research laboratory Chemistry Department Cankiri Karatekin University Ballica Campus 18100 Cankiri Turkey

8. Université Clermont Auvergne CNRS SIGMA Clermont ICC F-63000 Clermont Ferrand France

9. Association de Valorisation des Huiles Essentielles et des Arômes (AVAHEA) La Laye 7 63500 Saint Babel France

10. Laboratoire d'Analyses des Extraits Végétaux et des Arômes (LEXVA Analytique) 460 Rue du Montant 63110 Beaumont France

Abstract

AbstractIn this study, for the first time, we analyzed the chemical composition of essential oils (EOs) steam‐distilled from the flowers and leaves of Perralderia coronopifolia by GC‐FID/MS. The objective was to explore new anticancer and antioxidant bioactive substances and understand their mechanisms of action through the use of plant‐derived natural products. The major chemical components characterizing the EOs were cis‐chrysanthenyl acetate 1, 6‐oxocyclonerolidol 2, cis‐8‐acetoxychrysanthenyl acetate 3, and 6α‐hydroxycyclonerolidol 4, respectively. Furthermore, the EOs inhibited cell proliferation in HeLa (human cervix carcinoma) and PC3 (human prostate cancer) cells and protected plasmid DNA from oxidative damage caused by UV‐photolyzed H2O2. Employing a molecular docking study, we elucidated the main compounds′ inhibition mechanisms. Consequently, the antitumor activity could be related to the inhibitory property of compound 3 against CDC25B phosphatase. The evaluation of ADMET (absorption, distribution, metabolism, excretion, and toxicity) properties and the density functional theory (DFT) calculations of the major compounds, especially compound 3, offer potential insights for designing and developing new cancer drug candidates. In conclusion, our study provides a framework for future research and development in the field by establishing a scientific foundation for the use of Perralderia coronopifolia essential oils as a prospective source of antioxidant and anticancer agents.

Publisher

Wiley

Subject

Molecular Biology,Molecular Medicine,General Chemistry,Biochemistry,General Medicine,Bioengineering

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