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Feijoa Fruit Peel: Micro-morphological Features Evaluation of Phytochemical Profile and Biological Properties of Its Essential Oil

机译:Feijoa果皮:微观形态特征植物化学特征的评估及其精油的生物学特性

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摘要

Acca sellowiana (O. Berg) Burret (Feijoa) is an evergreen shrub, belonging to the Mirtaceae family. The aim of this study was to investigate the micromorphological features of the feijoa fruit peel and to evaluate the phytochemical profile, as well as the antioxidant, cytoprotective, and antimicrobial properties of its essential oil (EO), by several in vitro cell-free and cell-based assays. The micromorphological analysis showed several schizogenic secretory cavities, immediately below the epidermal layer. Forty compounds were identified and quantified by GC-FID and GC-MS analyses. Sesquiterpenes were the most abundant ones (76.89%), followed by monoterpene hydrocarbons (3.26%), and oxygenated monoterpenes (0.34%). The main compounds were γ-Selinene (17.39%), α-Cariophyllene (16.74%), β-Cariophyllene (10.37%), and Germacene D (5.32%). The EO showed a strong and dose-dependent antioxidant, and free-radical scavenging activity. Furthermore, it showed cytoprotective activity on the lymphocytes, that have been pre-treated with 100 μM tert-butyl-hydroperoxide (t-BOOH), as well as a decrease in intracellular reactive oxygen species (ROS), induced by t-BOOH on erythrocytes. A preliminary antimicrobial screening against GRAM+ and GRAM− bacteria, as well as on fungi highlighted that EO showed the best activity against S. aureus and C. albicans (MIC 2.7 mg/mL). In light of these results, feijoa fruit EO could find various applications, especially in the food, nutraceutical, and pharmaceutical fields.
机译:Acca sellowiana(O. Berg)Burret(Feijoa)是常绿灌木,属于Mirtaceae科。这项研究的目的是通过几种体外无细胞和无刺激的方法,研究美jo果皮的微观形态特征,并评估其香精油(EO)的植物化学特征,以及其香精油的抗氧化,细胞保护和抗菌特性。基于细胞的测定。微观形态学分析显示在表皮层正下方的几个致裂性分泌腔。通过GC-FID和GC-MS分析鉴定并定量了40种化合物。其中倍半萜最丰富(76.89%),其次是单萜碳氢化合物(3.26%)和氧化单萜(0.34%)。主要化合物为γ-丝氨酸(17.39%),α-Cariophyllene(16.74%),β-Cariophyllene(10.37%)和Germacene D(5.32%)。 EO显示出强大的剂量依赖性抗氧化剂,以及自由基清除活性。此外,它对已用100μM叔丁基氢过氧化氢(t-BOOH)预处理的淋巴细胞显示出细胞保护活性,以及​​由t-BOOH诱导的淋巴细胞内活性氧含量(ROS)降低。红细胞。对GRAM +和GRAM-细菌以及真菌的初步抗菌素筛选结果表明,EO对金黄色葡萄球菌和白色念珠菌具有最佳活性(MIC 2.7 mg / mL)。根据这些结果,非凡果EO可以找到各种应用,特别是在食品,营养保健品和制药领域。

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