Microbial transformation of matricaria recutita L. essential oil and its components
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Abstract (EN)
The commercially available chamomile essential oil of pharmacopoeial quality was used after analytical verification by GC/MS and GC/FID where the main components were α-bisabolol oxides A (47.7%) and B (6.2%), (E)-β-farnesene (21.5%), α-bisabolone oxide A (5.7%), chamazulene (4.1%), and α-bisabolol (2.1%), respectively. In this thesis, it was aimed to investigate the biotransformation potential of chamomile essential oil and its components α-bisabolol, bisabolol oxides, farnesene, and chamazulene using 22 different microorganisms. In addition to the utilization of chamomile essential oil, the bisabolol oxides, chamazulene were isolated from the essential oil; whereas α-bisabolol and a mixture of farnesene isomers were obtained commercially, which were also used in the biotransformation studies. The metabolite of α-bisabolol was converted in high amount (94%) by Penicillium neocrassum, which was purified, and elucidated by chromatographic-spectroscopic techniques as new compound 2-(5-methyl-5-(6-methyl-7-oxabicyclo[4.1.0]heptan-3-yl)tetrahydrofuran-2-yl)propan-2-ol was named as "bisafuranol" for the first time as a new natural product. Among the five metabolites produced by microbial transformation of α-bisabolol, two were identified as α-bisabolol oxide A, and three as α-bisabolol oxide B. From the mixture of farnesene isomers, catalyzed by microorganisms, α-bisabolol oxide B, α-bisabolone oxide A, and two other metabolites were identified as α-bisabolol oxide A. In addition, in vitro antimicrobial (microdilution method), antioxidant (DPPH radical scavenging) effects of obtained biotransformation metabolite mixtures were evaluated for their bioactivities by cyclooxygenase-1 (COX-1), 5-lipoxygenase (5-LOX) enzyme inhibition experiments using micro-UV-spectrophometric methods, comparatively with substrates, where in silico toxicity was also considered. According to the toxicity prediction results, the new compound "bisafuranol" was found as orally non-toxic, which can be classified as partially safe.
Author
Zeynep Fırat
How to Cite
Zeynep Fırat (Doctorate thesis). Microbial transformation of matricaria recutita L. essential oil and its components, 2023, Anadolu University.
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