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GC-MS 和手性 GC-MS 分析尼泊尔东部 物种的精油成分,以及一些主要化合物的抗菌活性。

Essential Oil Composition Analysis of Species from Eastern Nepal by GC-MS and Chiral GC-MS, and Antimicrobial Activity of Some Major Compounds.

机构信息

Analytica Research Center, Kirtipur, Kathmandu 446088, Nepal.

Aromatic Plant Research Center, 230 N 1200 E, Suite 102, Lehi, UT 84043, USA.

出版信息

Molecules. 2023 Jan 5;28(2):543. doi: 10.3390/molecules28020543.

Abstract

Cymbopogon species essential oil (EO) carries significant importance in pharmaceuticals, aromatherapy, food, etc. The chemical compositions of Cymbopogon spp. Viz. Cymbopogon winterianus (citronella) Cymbopogon citratus (lemongrass), and Cymbopogon martini (palmarosa) were analyzed by gas chromatography−mass spectrometry (GC-MS), enantiomeric distribution by chiral GC-MS, and antimicrobial activities of some selected pure major compound and root and leaves EOs of citronella. The EO of leaves of Cymbopogon spp. showed comparatively higher yield than roots or other parts. Contrary to citral (neral and geranial) being a predominant compound of Cymbopogon spp., α-elemol (53.1%), α-elemol (29.5%), geraniol (37.1%), and citral (90.4%) were detected as major compounds of the root, root hair with stalk, leaf, and root stalk with shoot of citronella EO, respectively. Palmarosa leaves’ EO contains neral (36.1%) and geranial (53.1) as the major compounds. In the roots of palmarosa EO, the prime components were α-elemol (31.5%), geranial (25.0%), and neral (16.6%). Similarly, lemongrass leaves’ EO contains geraniol (76.6%) and geranyl acetate (15.2%) as major compounds, while the root EO contains a higher amount of geraniol (87.9%) and lower amount of geranyl acetate (4.4%). This study reports for the first time chiral terpenoids from Cymbopogon spp. EOs. Chiral GC-MS gave specific enantiomeric distributions of nine, six, and five chiral terpenoids in the root, root stalk with a shoot, and leaves of citronella EOs, respectively. Likewise, four and three chiral terpenoids in the root and leaves of lemongrass oil followed by two chiral terpenoids in the leaves and root of palmarosa EOs each. Additionally, the root and leaves’ EOs of citronella exhibit noticeable activity on bacteria such as Staphylococcus aureus, Staphylococcus epidermidis, and Streptococcus pyogenes and fungus such as Candida albicans, Microsporum canis, and Trichophyton mentagrophytes. So, geranial-, neral-, geraniol-, and citronellal-rich EOs can be used as an alternative antimicrobial agent.

摘要

香茅属植物精油(EO)在制药、香薰、食品等领域具有重要意义。通过气相色谱-质谱联用(GC-MS)分析了香茅属植物的化学成分,如香茅(柠檬草)、香茅(柠檬草)和马丁尼香茅(玫瑰草)。用手性 GC-MS 分析了某些选定的纯主要化合物和香茅根和叶 EO 的对映体分布,以及香茅属植物根和叶 EO 的抗菌活性。香茅属植物的叶 EO 产率明显高于根或其他部位。与柠檬醛(橙花醛和香叶醛)是香茅属植物的主要化合物相反,根、根毛与茎、叶和香茅 EO 的根茎与茎分别检测到主要化合物为α-依莫醇(53.1%)、α-依莫醇(29.5%)、香叶醇(37.1%)和柠檬醛(90.4%)。玫瑰草叶 EO 含有橙花醛(36.1%)和香叶醛(53.1%)作为主要化合物。在玫瑰草 EO 的根中,主要成分是α-依莫醇(31.5%)、香叶醛(25.0%)和橙花醛(16.6%)。同样,柠檬草叶 EO 含有香叶醇(76.6%)和乙酸香叶酯(15.2%)作为主要化合物,而根 EO 含有较高量的香叶醇(87.9%)和较低量的乙酸香叶酯(4.4%)。本研究首次报道了香茅属植物 EO 中的手性萜类化合物。手性 GC-MS 分别给出了香茅属植物根、根茎与茎和叶 EO 中 9、6 和 5 种手性萜类化合物的特定对映体分布。同样,在柠檬草油的根和叶中分别有 4 种和 3 种手性萜类化合物,然后在玫瑰草油的叶和根中各有 2 种手性萜类化合物。此外,香茅的根和叶 EO 对金黄色葡萄球菌、表皮葡萄球菌和化脓性链球菌等细菌以及白色念珠菌、犬小孢子菌和毛癣菌等真菌表现出显著的活性。因此,富含香叶醛、橙花醛、香叶醇和香茅醛的 EO 可用作替代抗菌剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0ca/9863348/01eabe6f1b04/molecules-28-00543-g001.jpg

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