Author:
Carev Ivana,Gelemanović Andrea,Glumac Mateo,Tutek Klaudia,Dželalija Mile,Paiardini Alessandro,Prosseda Gianni
Abstract
AbstractThe essential oils from the Centaurea genus are well known for their pharmacological properties. The most abundant and dominant chemical components in Centaurea essential oils are ß-caryophyllene, hexadecanoic acid, spathulenol, pentacosane, caryophyllene oxide, and phytol. However, whether these dominant components are the key drivers for observed antimicrobial activity remains unclear. Thus, the aim of this study was dual. Here we provide comprehensive, literature-based data to correlate the chemical compounds in Centaurea essential oils with the tested antimicrobial activity. Secondly, we characterized the essential oil of Centaurea triumfettii All. squarrose knapweed using coupled system gas chromatography–mass spectrometry and tested its phytochemicals for antimicrobial activity against E. coli and S. epidermis using disc diffusion assay and monitoring their growth in Muller Hinton broth. The most abundant compounds in C. triumfettii essential oil were hexadecanoic acid (11.1%), spathulenol (10.8%), longifolene (8.8%), germacrene D (8.4%), aromadendrene oxide (6.0%) and linoleic acid (5.3%). Based on our analysis of literature data from other Centaurea essential oils, they were positively correlated with antimicrobial activity. Using an agar disk diffusion method, tested chemical constituents did not show experimental evidence to support this positive correlation to antimicrobial activity when we tested them as pure components. The antibacterial effect of essential oil constituents may be related to a complex synergistic, rather than a single component as suggested by performed network pharmacology analysis, underlying the theoretical interactions between the essential oil phytochemicals listed as potentially responsible for antimicrobial activity and should be confirmed in further in-depth studies. This is the first report on the comparative analysis of Centaurea essential oils with good antimicrobial activity, as well as the first analysis of chemical components of the essential oil from C. triumfettii and the first report of antimicrobial activity of the representative, pure components: aromadendrene, germacrene D, spathulenol, longifolene, and the mixture of selected chemical compounds. This work contributes to the body of knowledge on the genus Centaurea and C. triumfettii species.
Funder
Hrvatska Zaklada za Znanost
EU Comission
Publisher
Springer Science and Business Media LLC
Reference67 articles.
1. Aziz Asyikin, Z. A. et al. Essential oils: Extraction techniques, pharmaceutical and therapeutic potential - A review. Curr. Drug Metab. 19, 1100–1110 (2018).
2. Dudareva, N., Klempien, A., Muhlemann, J. K. & Kaplan, I. Biosynthesis, function and metabolic engineering of plant volatile organic compounds. New Phytol. 198, 16–32 (2013).
3. da Silva, J. K. R., Figueiredo, P. L. B., Byler, K. G. & Setzer, W. N. Essential oils as antiviral agents. Potential of essential oils to treat SARS-CoV-2 Infection: An in-silico investigation. Int. J. Mol. Sci. 21, 3426 (2020).
4. Perrino, E. V., Valerio, F., Gannouchi, A., Trani, A. & Mezzapesa, G. Ecological and plant community implication on essential oils composition in useful wild officinal species: A pilot case study in apulia (Italy). Plants (Basel, Switzerland) 10, 574 (2021).
5. D’Antonio, C. M. & Meyerson, L. A. Exotic plant species as problems and solutions in ecological restoration: A synthesis. Restor. Ecol. 10, 703–713 (2002).
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