LC/MS Profiling and Gold Nanoparticle Formulation of Major Metabolites from Origanum majorana as Antibacterial and Antioxidant Potentialities

化学 植物化学 色谱法 牛至 抗菌剂 迷迭香酸 电喷雾电离 乙酸乙酯 抗氧化剂 传统医学 质谱法 有机化学 精油 生物化学 医学
作者
Ahmed H. El‐Ghorab,Fathy A. Behery,Mohamed A. Abdelgawad,Ibrahim Hotan Alsohaimi,Arafa Musa,Ehab M. Mostafa,Hamud A. Altaleb,Ibrahim O. Althobaiti,Mohamed Hamza,Mohammed H. Elkomy,Ahmed A. Hamed,Ahmed M. Sayed,Hossam M. Hassan,Mahmoud A. Aboseada
出处
期刊:Plants [MDPI AG]
卷期号:11 (14): 1871-1871 被引量:3
标识
DOI:10.3390/plants11141871
摘要

Origanum majoranum L. is a Lamiaceae medicinal plant with culinary and ethnomedical applications. Its biological and phytochemical profiles have been extensively researched. Accordingly, this study aimed to investigate the chemical composition and the antibacterial and antioxidant properties of O. majoranum high features, as well as to search for techniques for activity optimization. A metabolomics study of the crude extract of O. majoranum using liquid chromatography-high-resolution electrospray ionization mass spectrometry (LC ± HR ± ESI ± MS) was conducted. Five fractions (petroleum ether, dichloromethane, ethyl acetate, n-butanol, and aqueous) were derived from the total extract of the aerial parts. Different chromatographic methods and NMR analysis were utilized to purify and identify the isolated phenolics (high features). Moreover, the antimicrobial, antibiofilm, and antioxidant activity of phenolics were performed. Results showed that metabolomic profiling of the crude extract of O. majoranum aerial parts revealed the presence of a variety of phytochemicals, predominantly phenolics, resulting in the isolation and identification of seven high-feature compounds comprising two phenolic acids, rosmarinic and caffeic acids, one phenolic diterpene, 7-methoxyepirosmanol, in addition to four flavonoids, quercetin, hesperitin, hesperidin, and luteolin. On the other hand, 7-methoxyepirosmanol (OM1) displayed the most antimicrobial and antioxidant potential. Such a phenolic principal activity improvement seems to be established after loading on gold nanoparticles.

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