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The Phenolic Compounds Profile and Cosmeceutical Significance of Two Kazakh Species of Onions: Alliumgalanthum and A. turkestanicum

乙醚 特罗洛克 克鲁斯假丝酵母 光滑假丝酵母 化学 抗菌剂 DPPH 阿布茨 蜡样芽孢杆菌 食品科学 白色念珠菌 植物 生物 生物化学 抗氧化剂 白色体 酵母 色谱法 有机化学 细菌 遗传学
作者
Gulnara Kadyrbayeva,Justyna Zagórska,Agnieszka Grzegorczyk,Katarzyna Gaweł‐Bęben,Marcelina Strzępek-Gomółka,Agnieszka Ludwiczuk,Karolina Czech,Manoj Kumar,Wojciech Koch,Anna Malm,Kazimierz Głowniak,Zuriyadda Sakipova,Wirginia Kukuła-Koch
出处
期刊:Molecules [Multidisciplinary Digital Publishing Institute]
卷期号:26 (18): 5491-5491 被引量:13
标识
DOI:10.3390/molecules26185491
摘要

Numerous species of Allium genus have been used in the traditional medicine based on their vast biological effects, e.g., antimicrobial, digestion stimulant, anti-sclerotic, soothing, antiradical or wound healing properties. In this work, unpolar and polar extracts from two lesser-investigated species of Allium growing in Kazakhstan, Alliumgalanthum Kar. & Kir. (AG) and A. turkestanicum Regel. (AT), were studied for their composition and biological effects. In the HPLC-ESI-QTOF-MS/MS analyses of water and alcoholic extracts simple organic acids, flavonoids and their glycosides were found to be the best represented group of secondary metabolites. On the other hand, in the GC-MS analysis diethyl ether, extracts were found to be rich sources of straight-chain hydrocarbons and their alcohols, fatty acids and sterols. The antimicrobial activity assessment showed a lower activity of polar extracts, however, the diethyl ether extract from AT bulbs and AG chives showed the strongest activity against Bacillus subtilis ATCC 6633, B. cereus ATCC 10876, some species of Staphylococcus (S. aureus ATCC 25923 and S. epidermidis ATCC 12228) and all tested Candida species (Candida albicans ATCC 2091, Candida albicans ATCC 10231, Candida glabrata ATCC 90030, Candida krusei ATCC 14243 and Candida parapsilosis ATCC 22019) with a minimum inhibitory concentration of 0.125-0.5 mg/mL. The highest antiradical capacity exhibited diethyl ether extracts from AG bulbs (IC50 = 19274.78 ± 92.11 mg Trolox eq/g of dried extract) in DPPH assay. In ABTS scavenging assay, the highest value of mg Trolox equivalents, 50.85 ± 2.90 was calculated for diethyl ether extract from AT bulbs. The same extract showed the highest inhibition of mushroom tyrosinase (82.65 ± 1.28% of enzyme activity), whereas AG bulb ether extract was the most efficient murine tyrosinase inhibitor (54% of the enzyme activity). The performed tests confirm possible cosmeceutical applications of these plants.

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