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首页> 外文期刊>Industrial Crops and Products >Lavandula x intermedia essential oil and hydrolate: Evaluation of chemical composition and antibacterial activity before and after formulation in nanoemulsion
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Lavandula x intermedia essential oil and hydrolate: Evaluation of chemical composition and antibacterial activity before and after formulation in nanoemulsion

机译:Lavandula X介质精油和水解:在纳米乳液中配制前后的化学成分和抗菌活性的评估

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摘要

In this work, nanotechnology was applied to the development of nanoformulations of essential oil (EO) and hydrolate from Lavandula x intermedia the formulations were appropriately designed to enhance properties and effectiveness of EO and hydrolate in order to widen their application in pharmaceutical, cosmetics or food fields. In particular, nanoemulsions were investigated to evaluate the impact of the formulation process on the chemical composition and antibacterial activity of the encapsulated EO and hydrolate. The solvent displacement method was used for the fabrication of nanoemulsions. It involves a solvent evaporation step, which may lead to volatilisation and/or degradation of EO or hydrolate components, thus influencing their final composition and functional properties. For this reason, a chemical characterization of Lavandula x intermedia essential oil (LEO) and hydrolate (LHY) before and after nanoencapsulation was carried out by Headspace-Gas Chromatography/ Mass Spectrometry (HS-GC/MS) to check for any qualitative and/or quantitative changes in its chemical profile. LEO and LHY chemical composition was substantially preserved when formulated as nanoemulsions. The formulations were then evaluated in terms of physical-chemical properties and antibacterial activity performance against Gram positive (G(+)) and Gram negative (G(-)) bacteria. LEO in nanoemulsion showed activity against E. coli (G(-)) and B. cereus (G(+)) higher than the crude form. MIC values of formulated LEO were 0.37 (v/v%) for E. coli and 0.01 (v/v%) for B. cereus, whereas MIC of pure LEO resulted 1.87 (v/v%) for E. coli and 0.94 (v/v%) for B. cereus. On the other hand, only formulated LHY exhibited activity against the two bacteria strains with MIC values of 0.75 (v/v%) for E. coli and 0.06 (v/v%) for B. cereus, whereas pure LHY was inactive on both bacteria strains. To the best of our knowledge, this is the first report showing potential antibacterial use of the generally discarded hydrolate, due to the formulation as nanoemulsion that could be considered a valid green strategy in recycling.
机译:在这项工作中,将纳米技术应用于纳米族种质(EO)的开发,并从Lavandula X含水层的含水剂适当设计,以提高EO和水解的性能和有效性,以扩大其在药物,化妆品或食品中的应用字段。特别地,研究了纳米乳液,以评估配方方法对包封的EO和水解的化学成分和抗菌活性的影响。溶剂位移方法用于制备纳米乳液。它涉及溶剂蒸发步骤,其可能导致EO或水解组分的挥发和/或降解,从而影响其最终组成和功能性。出于这个原因,通过顶空 - 气相色谱/质谱(HS-GC / MS)进行纳米涂料之前和纳米封装之前和水解(LHY)的化学表征以检查任何定性和/或化学型材的定量变化。当配制为纳米乳液时,基本上保存了Leo和Lhy化学成分。然后根据物理化学性质和抗菌活性性能对革兰氏阳性(G(+))和革兰氏阴性(G( - ))细菌进行评估制剂。纳米乳剂的Leo显示出对大肠杆菌(G( - ))和B.癌症(G(+))的活性高于粗产物。对于B.Ceri的大肠杆菌和0.01(v / v%)的化学LEO的MIC值为0.37(v / v%),而纯Leo的MIC为大肠杆菌和0.94导致1.87(v / v%)为1.87(v / v%)( B. Cereus的v / v%)。另一方面,仅针对两种细菌菌株的麦克斯菌株为2.75(v / v%)的20.75(v / v%)的制定的LHY表达活性,B.培养物为0.06(v / v%),而纯LHY在两者上无活性细菌菌株。据我们所知,这是第一个显示潜在的抗菌用过的抗菌用水,由于纳米乳液的配方,可被认为是一种有效的再循环策略。

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