Combining chemical profiles and biological abilities of different extracts from Tanacetum nitens (Boiss. & NoëGrierson using network pharmacology

Author:

Dall'Acqua Stefano1ORCID,Yagi Sakina23,Sut Stefania1,Uba Abdullahi Ibrahim4,Ponniya Sathish Kumar M.5,Koyuncu Ismail6,Toprak Kenan6,Balos Mehmet Maruf7,Kaplan Alevcan8,Çakılcıoğlu Uğur9ORCID,Zengin Gokhan10ORCID

Affiliation:

1. Department of Pharmaceutical and Pharmacological Sciences University of Padova Padova Italy

2. Department of Botany, Faculty of Science University of Khartoum Khartoum Sudan

3. Le Laboratoire Agronomie et Environnement Université de Lorraine, INRAE, LAE Nancy France

4. Department of Molecular Biology and Genetics Istanbul AREL University Istanbul Turkey

5. Department of Bioinformatics Pondicherry University Pudhucherry India

6. Department of Medical Biochemistry, Faculty of Medicine Harran University Sanliurfa Turkey

7. Sanlıurfa Provincial Directorate of National Education Sanlıurfa Turkey

8. Sason Vocational School Batman University Batman Turkey

9. Pertek Sakine Genç Vocational School Munzur University Pertek, Tunceli Turkey

10. Department of Faculty, Faculty of Science Selcuk University Konya Turkey

Abstract

AbstractTanacetum nitens (Boiss. & NoëGrierson is an aromatic perennial herb used in Turkish traditional medicine to treat headache, fever, and skin diseases. This study aimed to investigate the chemical composition, antioxidant, enzyme inhibition, and cytotoxic properties of T. nitens aerial parts. Organic solvent extracts were prepared by sequential maceration in hexane, dichloromethane, ethyl acetate, and methanol while aqueous extracts were obtained by maceration or infusion. Nuclear magnetic resonance (NMR) and LC‐DAD‐MS analysis allowed the identification and quantification of different phytoconstituents including parthenolide, tanacetol B, tatridin B, quinic acid derivatives, β‐sitosterol, and glycoside derivatives of quercetin and luteolin. The type and amount of these phytochemicals recovered by each solvent were variable and significant enough to impact the biological activities of the plant. Methanolic and aqueous extracts displayed the highest scavenging and ions‐reducing properties while the dichloromethane and ethyl acetate extracts exerted the best total antioxidant activity and metal chelating power. Results of enzyme inhibition activity showed that the hexane, ethyl acetate, and dichloromethane extracts had comparable anti‐acetylcholinesterase activity and the latter extract revealed the highest anti‐butyrylcholinesterase activity. The best α‐amylase and α‐glucosidase inhibition activities were obtained from the hexane extract. The dichloromethane and ethyl acetate extracts exhibited the highest cytotoxic effect against the prostate carcinoma DU‐145 cells. In conclusion, these findings indicated that T. nitens can be a promising source of biomolecules with potential therapeutic applications.

Publisher

Wiley

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