Metabolite profiling and bioactivity of Cicerbita alpina (L.) Wallr. (Asteraceae, Cichorieae)

Author:

Zheleva-Dimitrova Dimitrina1ORCID,Petrova Alexandra2,Zengin Gokhan3ORCID,Sinan Kouadio Ibrahime3,Balabanova Vessela1,Joubert Olivier4ORCID,Zidorn Christian5ORCID,Voynikov Yulian6,Simeonova Rumyana2ORCID,Gevrenova Reneta1ORCID

Affiliation:

1. Department of Pharmacognosy, Faculty of Pharmacy, Medical University-Sofia, 1000 Sofia, Bulgaria

2. Department of Pharmacology, Pharmacotherapy and Toxicology, Faculty of Pharmacy, Medical University-Sofia, 1000 Sofia, Bulgaria

3. Department of Biology, Faculty of Science, Selcuk University, Campus, 42250 Konya, Turkey

4. Institut Jean Lamour, UMR CNRS 7198, Université de Lorraine, CNRS, IJL, F-54000 Nancy, France

5. Pharmazeutisches Institut, Abteilung Pharmazeutische Biologie, Christian-Albrechts-Universität zu Kiel, 24118 Kiel, Germany

6. Department of Chemistry, Faculty of Pharmacy, Medical University-Sofia, 1000 Sofia, Bulgaria

Abstract

Cicerbita alpina (L.) Wallr. is a perennial herbaceous plant in the tribe Cichorieae (Lactuceae), Asteraceae family, distributed in the mountainous regions in Europe. In this study, we focused on the metabolite profiling and the bioactivity of C. alpina leaves and flowering heads methanol-aqueous extracts. The antioxidant activity of extracts, as well as inhibitory potential towards selected enzymes, involving in several human diseases, including metabolic syndrome (α-glucosidase, α-amylase, and lipase), Alzheimer’s disease, (cholinesterases: AChE, BchE), hyperpigmentation (tyrosinase), and cytotoxicity were assessed. The workflow comprised ultra-high-performance liquid chromatography—high-resolution mass spectrometry (UHPLC-HRMS). UHPLC-HRMS analysis revealed more than 100 secondary metabolites, including acylquinic, acyltartaric acids, flavonoids, bitter sesquiterpene lactones (STLs), such as lactucin, dihydrolactucin, their derivatives, and coumarins. Leaves showed a stronger antioxidant activity compared to flowering heads, as well as lipase (4.75 ± 0.21 mg OE/g), AchE (1.98 ± 0.02 mg GALAE/g), BchE (0.74 ± 0.06 mg GALAE/g), and tyrosinase (49.87 ± 3.19 mg KAE/g) inhibitory potential. Flowering heads showed the highest activity against α-glucosidase (1.05 ± 0.17 mmol ACAE/g) and α-amylase (0.47 ± 0.03). The obtained results highlighted C. alpina as a rich source of acylquinic, acyltartaric acids, flavonoids, and STLs with significant bioactivity, and therefore the taxon could be considered as a potential candidate for the development of health-promoting applications.

Funder

Medical Science Council at the Medical University-Sofia, Bulgaria

Publisher

MDPI AG

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

Reference39 articles.

1. Funk, V.A. (2009). Systematics, Evolution, and Biogeography of Compositae, International Association for Plant Taxonomy.

2. Phenolics and a sesquiterpene lactone in the edible shoots of Cicerbita alpina (L.) Wallroth;Fusani;J. Food Compos. Anal.,2010

3. Scartezzini, F., Vender, C., Aiello, N., and Fusani, P. (2005, January 14–17). Domestication and field management trials of Cicerbita alpina (L.) Wallr. Proceedings of the First International Conference on Crop Wild Relative Conservation and Use, Sicily, Italy.

4. Microwave-assisted extraction of edible Cicerbita alpina shoots and its LC-MS phenolic profile;Alexandru;J. Sci. Food Agric.,2013

5. Sesquiterpene lactones and their precursors as chemosystematic markers in the tribe Cichorieae of the Asteraceae revisited: An update (2008–2017);Shulha;Phytochemistry,2019

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