Omanische Heilpflanze im Fokus der Phytochemie IPB-Wissenschaftler und Partner aus Dhofar haben jüngst die omanische Heilpflanze Terminalia dhofarica unter die phytochemische Lupe genommen. Die Pflanze ist reich an…
Geschmack ist vorhersagbar: Mit FlavorMiner. FlavorMiner heißt das Tool, das IPB-Chemiker und Partner aus Kolumbien jüngst entwickelt haben. Das Programm kann, basierend auf maschinellem Lernen (KI), anhand der…
Farag, M. A.; Wessjohann, L. A.;Volatiles Profiling in Medicinal Licorice Roots Using Steam Distillation and Solid-Phase Microextraction (SPME) Coupled to ChemometricsJ. Food Sci.77C1179-C1184(2012)DOI: 10.1111/j.1750-3841.2012.02927.x
Abstract: Licorice (Glycyrrhiza glabra L.) is a plant of considerable commercial importance in traditional medicine and for the flavor and sweets industry. Although Glycyrrhiza species are very competitive targets for phytochemical studies, very little is known about the volatiles composition within that genus, although such knowledge can be suspected to be relevant for understanding the olfactory and taste properties. To provide insight into Glycyrrhiza species aroma composition and for its use in food and pharmaceutical industry, volatile constituents from G. glabra, G. inflata, and G. echinata roots were profiled using steam distillation and solid‐phase microextraction. Two phenols, thymol and carvacrol, were found exclusively in essential oil and headspace samples of G. glabra, and with highest amounts for samples that originated from Egypt. In G. echinata oil, (2E, 4E)‐decadienal (21%) and β‐caryophyllene oxide (24%) were found as main constituents, whereas 1α, 10α‐epoxyamorpha‐4‐ene (13%) and β‐dihydroionone (8%) predominated G. inflata. Principal component and hierarchical cluster analyses clearly separated G. echinata and G. inflata from G. glabra; with phenolics and aliphatic aldehydes contributing mostly for species segregation.Practical Application: Licorice (Glycyrrhiza glabra) has large economic, nutritional, and medicinal values. The data presented in this article help in licorice quality control analysis to identify G. glabra from its closely allied species. The presence of thymol and carvacrol exclusively in G. glabra suggests that these volatiles could serve as chemotaxonomic markers and also might be considered as potentially relevant for taste.
Publikation
Ali, N. A. A.; Crouch, R. A.; Al-Fatimi, M. A.; Arnold, N.; Teichert, A.; Setzer, W. N.; Wessjohann, L.;Chemical Composition, Antimicrobial, Antiradical and Anticholinesterase activity of the Essential Oil of Pulicaria stephanocarpa from SoqotraNat. Prod. Commun.7113-116(2012)DOI: 10.1177/1934578X1200700137
The chemical composition of the hydrodistilled leaf essential oil from Pulicaria stephanocarpa Balf Fil was determined by GC-MS analysis, and its antimicrobial, antioxidant and anticholinesterase (AChE) activities were evaluated. Eighty-three compounds were identified representing 97.2% of the total oil. (E)-Caryophyllene 13.4%, (E)-nerolidol 8.5%, caryophyllene oxide 8.5%, α-cadinol 8.2% spathulenol 6.8% and τ-cadinol 4.7%, were the main components. Antimicrobial activity of the oil, evaluated using the disc diffusion and broth dilution methods, demonstrated the highest susceptibility on Gram-positive bacteria and Candida albicans. The free radical scavenging ability of the oil was assessed by the DPPH assay to show antiradical activity with IC50 of 330 μg/mL. Moreover, the oil revealed an AChE inhibitory activity of 47% at a concentration of 200 μg/mL using Ellman's method.
Publikation
Ali, N. A. A.; Wurster, M.; Denkert, A.; Arnold, N.; Fadail, I.; Al-Didamony, G.; Lindequist, U.; Wessjohann, L.; Setzer, W. N.;Chemical Composition, Antimicrobial, Antioxidant and Cytotoxic Activity of Essential Oils of Plectranthus cylindraceus and Meriandra benghalensis from YemenNat. Prod. Commun.71099-1102(2012)DOI: 10.1177/1934578X1200700834
The chemical composition, antimicrobial, antioxidant and cytotoxic activities of the essential oils isolated from the leaves of Plectranthus cylindraceus Hoechst. ex. Benth. (EOPC) and Meriandra benghalensis (Roxb.) Benth. (EOMB) were investigated. Sixteen compounds were identified in P. cylindraceus oil representing 94.5% of the oil content with thymol (68.5%), terpinolene (5.3%), β-selinene (4.7%), β-caryophyllene (4.0%), δ-cadinol (2.1%), and ar-curcumene (1.7%) as the major compounds. In M. benghalensis oil, 12 compounds were identified, which made up 82.0% of the total oil. The most abundant constituents were camphor (43.6%), 1,8-cineole (10.7%), α-eudesmol (5.8%), caryophyllene oxide (5.8%), camphene (5.3%) and borneol (3.4%). The antimicrobial activities of both oils were evaluated against five microorganisms with the disc diffusion test, the broth micro-dilution method and a semiquantitative bioautographic test. The most sensitive microorganisms for P. cylindraceus oil were S. aureus, B. subtilis, and C. albicans with inhibition zones of 38, 42, and 43 mm and MIC values of 0.39, 0.18, and, 0.18 μL/mL, respectively. M. benghalensis oil showed weak to moderate activity against the tested microorganisms. 2,2-Diphenyl-1-picrylhydrazyl (DPPH) assay was employed to study the potential antioxidant activities of both oils. The antioxidant activity of P. cylindraceus oil (IC50 34.5 μg/mL) appeared to be higher than that of M. benghalensis oil (IC50 935 μg/mL). At a concentration of 100 μg/mL, EOMB showed a stronger cytotoxic activity, with growth inhibition of 71% against HT29 tumor cells, than EOPC (18%).
Publikation
Ali, N. A. A.; Sharopov, F. S.; Alhaj, M.; Hill, G. M.; Porzel, A.; Arnold, N.; Setzer, W. N.; Schmidt, J.; Wessjohann, L.;Chemical Composition and Biological Activity of Essential Oil from Pulicaria undulata from YemenNat. Prod. Commun.7257-260(2012)DOI: 10.1177/1934578X1200700238
The chemical composition of the essential oil obtained from the leaves of Pulicaria undulata Gamal Ed Din (syn P. oriental sensu Schwartz and P. jaubertii Gamal Ed Din) was analyzed by GC-MS. Major compounds of P. undulata oil were the oxygenated monoterpenenes, carvotanacetone (91.4%) and 2,5-dimethoxy-p-cymene (2.6.%). The antimicrobial activity of the essential oil was evaluated against six microorganisms, Escherichia coli Pseudomonas aeruginosa, Staphylococcus aureus, methicillin-resistant S. aureus, Bacillus subtilis, and Candida albicans, using disc diffusion and broth microdilution methods. The oil showed the strongest bactericidal activity against Staphylococcus aureus and methicillin-resistant S. aureus, as well as Candida albicans. The essential oil showed moderate cytotoxic activity against MCF-7 breast tumor cells, with an IC50 of 64.6 ±13.7 μg/mL. Bioautographic assays were used to evaluate the acetylcholinesterase inhibitory effect as well as antifungal activity of the oil against Cladosporium cucumerinum.