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厄瓜多尔亚马逊地区L.精油对(美国典型培养物保藏中心10231号)抗真菌特性的体外评估

In Vitro Evaluation of the Antifungal Properties of L. Essential Oil from the Ecuadorian Amazon Against (ATCC 10231).

作者信息

Berrú María Belén Cruz, García María Coraima Mora, Re Sandra Luisa Soria, Barreto Jannys Lizeth Rivera, Sánchez Luis Ramón Bravo, Radice Matteo, Manfredini Stefano, Abreu-Naranjo Reinier

机构信息

Carrera de Biología, Facultad de Ciencias de la Vida, Universidad Estatal Amazónica (UEA), Vía Tena km 2½, Puyo 160150, Pastaza, Ecuador.

Facultad de Ciencias de la Tierra, Universidad Estatal Amazónica (UEA), Vía Tena km 2½, Puyo 160150, Pastaza, Ecuador.

出版信息

Life (Basel). 2024 Dec 9;14(12):1628. doi: 10.3390/life14121628.

Abstract

Essential oils are investigated due to their biological activity, and the Amazon rainforest, with its rich biodiversity, is a promising source of therapeutic compounds. The aim of this study was to evaluate the essential oil from the leaves of as an antifungal agent, thus contributing to the search for alternatives that can address the growing resistance to conventional antifungals. leaves were collected in the Ecuadorian Amazon and their essential oil was obtained by steam distillation. Their chemical composition was analysed by Gas Chromatography-Mass Spectrometry (GC-MS) and their antifungal activity against was evaluated using the Kirby-Bauer disc diffusion method (ATCC 10231), with nystatin as a positive control. GC-MS analysis revealed the presence of 60 compounds, the main ones being dihydroedulan (27.5%), β-caryophyllene (10.3%), nerolidol (7.21%), trans-β-bergamotene (5.73%), α-santalene (4.94%) and trans-α-bergamotene (4.26%). The essential oil showed moderate antifungal activity against , producing an inhibition halo of 13 mm in diameter, which is 48% of the inhibition observed with nystatin (27 mm). The presence of sesquiterpenes, such as β-caryophyllene, known for its membrane-disrupting properties, probably contributes to the observed antifungal effects. The study highlights the potential of essential oil as a natural antifungal agent; however, further research is required to evaluate its efficacy against a wider range of pathogenic fungi, its possible synergistic effects with conventional antifungals and its safety and efficacy in vivo.

摘要

由于其生物活性,人们对精油进行了研究,而拥有丰富生物多样性的亚马逊雨林是治疗性化合物的一个有前景的来源。本研究的目的是评估来自[植物名称未给出]叶子的精油作为抗真菌剂的效果,从而有助于寻找能够应对对传统抗真菌药物日益增长的耐药性的替代物。[植物名称未给出]的叶子在厄瓜多尔亚马逊地区采集,其精油通过水蒸气蒸馏获得。通过气相色谱 - 质谱联用仪(GC - MS)分析其化学成分,并使用 Kirby - Bauer 纸片扩散法(ATCC 10231)评估其对[真菌名称未给出]的抗真菌活性,制霉菌素作为阳性对照。GC - MS 分析显示存在 60 种化合物,主要成分是二氢依杜兰(27.5%)、β - 石竹烯(10.3%)、橙花叔醇(7.21%)、反式 - β - 佛手柑烯(5.73%)、α - 檀香烯(4.94%)和反式 - α - 佛手柑烯(4.26%)。该精油对[真菌名称未给出]表现出中等抗真菌活性,产生直径为 13 毫米的抑菌圈,这是制霉菌素(27 毫米)观察到的抑菌圈的 48%。倍半萜类化合物如 β - 石竹烯,以其破坏膜的特性而闻名,其存在可能有助于观察到的抗真菌效果。该研究突出了[植物名称未给出]精油作为天然抗真菌剂的潜力;然而,需要进一步研究以评估其对更广泛的致病真菌的疗效、其与传统抗真菌药物可能的协同作用以及其体内安全性和有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90b0/11677816/692c8a2ce05b/life-14-01628-g001.jpg

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