Phytochemical, Pharmacological, and Molecular Docking Study of Dry Extracts of <i>Matricaria discoidea</i> DC. with Analgesic and Soporific Activities

Pineapple weed <i>(Matricaria discoidea</i> DC.) is a widespread plant in Europe and North America. In ethnomedicine, it is well-known for its anti-inflammatory and spasmolytic activities. The aim of this research was to develop novel methods of <i>M. discoidea</i> processing...

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Main Authors: Janne Sepp, Oleh Koshovyi, Valdas Jakštas, Vaidotas Žvikas, Iryna Botsula, Igor Kireyev, Hanna Severina, Oleksandr Kukhtenko, Kaisa Põhako-Palu, Karin Kogermann, Jyrki Heinämäki, Ain Raal
Format: Article
Language:English
Published: MDPI AG 2024-03-01
Series:Biomolecules
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Online Access:https://www.mdpi.com/2218-273X/14/3/361
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Summary:Pineapple weed <i>(Matricaria discoidea</i> DC.) is a widespread plant in Europe and North America. In ethnomedicine, it is well-known for its anti-inflammatory and spasmolytic activities. The aim of this research was to develop novel methods of <i>M. discoidea</i> processing to obtain essential oil and dry extracts and to investigate their phytochemical compositions. Moreover, the molecular docking of the main substances and the in vivo studies on their soporific and analgesic activities were conducted. The essential oil and two dry extracts from <i>M. discoidea</i> were prepared. A total of 16 phenolic compounds (seven flavonoids, seven hydroxycinnamic acids, and two phenolic acids) in the dry extracts were identified by means of UPLC-MS/MS. In the essential oil, nine main terpenoids were identified by gas chromatography (GC). It was shown that phenolic extraction from the herb was successful when using 70% ethanol in a triple extraction method and at a ratio of 1:14–1:16. The in vivo studies with rodents demonstrated the analgesic activity of the <i>M. discoidea</i> extracts and improvements in the sleep of animals. The dry extracts of <i>M. discoidea</i> did not show any toxicity. The molecular docking analysis showed a high probability of COX-1,2 inhibition and NMDA receptor antagonism by the extracts.
ISSN:2218-273X