The essential oil from Drimys winteri possess activity: Antioxidant, theoretical chemistry reactivity, antimicrobial, antiproliferative and chemical composition

F. Bruna, Katia Fernández, Felipe Urrejola, Jorge Touma, M. Navarro, B. Sepúlveda, M. Larrazabal-Fuentes, A. Paredes, I. Neira, M. Ferrando, Manuel I. Osorio, O. Yáñez, J. Bravo
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Abstract

The Mapuche and their ancestors have used D. winteri in traditional medicine. In the present study, the essential oil extract of D. winteri leaves (DW_EO) were characterized chemically and biologically to evaluate its pharmacological activity. In vitro antioxidant activity was assayed, and antitumor activity was evaluated in non-tumor and tumor-cell culture lines. Caenorhabditis elegans was used as a model to evaluate toxicity, and the chemical composition of the essential oil was analyzed by gas chromatography-mass spectrometry. The chemical oil composition was characterized principally of five major terpenes: 4 sesquiterpenes γ-Eudesmol (39.7%), β-Caryophyllene (33.7%), Elemol (25.9%), α-Eudesmol (0.3%) and 1 diterpene Kaunene (0.4%). By quantum calculations, it was determined that all oils have the ability to capture and yield electrons, which is consistent with the moderate antioxidant activity of DW_EO detected in vitro. Furthermore, by molecular docking is estimated that these oils can bind to proteins involved in the production of oxygen radicals. Of these proteins, CYP2C9 could bind energetically, reaching binding energy between −6.8 and −9.2 kCal/mol for the 5 terpenes studied, highlighting among these β-Caryophyllen and γ-Eudesmol. DW_EO has effect against H. pylori (MIC 32 μg/ml), S. aureus (MIC 8 μg/ml), E. coli (MIC 32 μg/ml) and C. albicans (MIC 64 μg/ml), β-Caryophyllen and γ -Eudesmol (MIC 64 μg/ml) and could selectively inhibit the proliferation of epithelial tumor cell lines but showed low against C. elegans (0.39–1.56 μg mL−1). Therefore, DW_EO may be used as a source of bioactive compounds in novel pharmacological treatments for medical application, agronomics, sanitation, and food.
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冬青挥发油具有抗氧化活性、理论化学反应活性、抗菌活性、抗增殖活性和化学成分活性
马普切人和他们的祖先在传统医学中使用冬葵。本研究对冬青叶挥发油提取物(DW_EO)进行了化学和生物学表征,以评价其药理活性。测定其体外抗氧化活性,并在非肿瘤细胞和肿瘤细胞培养株中评价其抗肿瘤活性。以秀丽隐杆线虫(cenorhabditis elegans)为模型进行毒性评价,采用气相色谱-质谱联用技术对精油的化学成分进行分析。化学油主要由5种萜类化合物组成:4倍半萜类γ-秋苔酚(39.7%)、β-石竹烯(33.7%)、香樟烯(25.9%)、α-秋苔酚(0.3%)和1二萜Kaunene(0.4%)。通过量子计算,确定了所有油都具有捕获和产电子的能力,这与体外检测到的DW_EO的中等抗氧化活性一致。此外,通过分子对接估计,这些油可以与参与产生氧自由基的蛋白质结合。其中,CYP2C9对5种萜类化合物具有较强的结合能力,结合能在−6.8 ~−9.2 kCal/mol之间,其中以β-石竹烯和γ-桉树酚最为突出。DW_EO对幽门螺杆菌(MIC为32 μg/ml)、金黄色葡萄球菌(MIC为8 μg/ml)、大肠杆菌(MIC为32 μg/ml)、白色念珠菌(MIC为64 μg/ml)、β-石竹素和γ -Eudesmol (MIC为64 μg/ml)具有抑制上皮肿瘤细胞增殖的作用,但对秀丽隐杆线虫的抑制作用较弱(0.39 ~ 1.56 μg ml−1)。因此,DW_EO可作为生物活性化合物的来源,用于医学、农学、卫生和食品等新型药理治疗。
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