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首页> 外文期刊>Beilstein journal of organic chemistry. >The effect of cyclodextrin complexation on the solubility and photostability of nerolidol as pure compound and as main constituent of cabreuva essential oil
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The effect of cyclodextrin complexation on the solubility and photostability of nerolidol as pure compound and as main constituent of cabreuva essential oil

机译:环糊精络合对神经节苷脂纯化合物和卡布鲁瓦精油主要成分的溶解度和光稳定性的影响

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摘要

Nerolidol (Ner), a major component of many plant essential oils, is known for its various biological properties. However, the low solubility of Ner in water and its susceptibility to degradation limit its application. The aim of our study was to improve the solubility and photostability of Ner through its encapsulation in different cyclodextrins (CDs). The formation constants of cis -, trans -Ner and their commercial mixture with various CDs (α-CD, β-CD, γ-CD, HP-β-CD, RAMEB, CRYSMEB and SBE-β-CD) were determined by phase solubility studies and confirmed by the spectral displacement UV-visible method. The solubility of cabreuva essential oil (EO) rich in trans -Ner was also evaluated by total organic carbon (TOC) analysis. The encapsulation efficiency (EE %) of Ner in HP-β-CD solid complexes was assessed by HPLC. The structural characterization of CD/ trans -Ner inclusion complex was then conducted by NMR spectroscopy followed by molecular modelling studies. The effect of encapsulation on the Ner photostability was also carried out over time under UVB irradiation. AL-type phase-solubility diagrams were obtained, suggesting the formation of 1:1 CD/Ner inclusion complexes. The solubility of Ner was enhanced by approximately 70-fold in the presence of 10 mM HP-β-CD. Moreover, high EE % values were obtained for 5:1 and 10:1 HP-β-CD:Ner molar ratios. NMR and molecular modelling studies revealed the most stable structure for trans -Ner inside the CD cavity with the OH group oriented towards the wider rim of the CD. Finally, CD encapsulation of Ner as pure compound or as main component of the cabreuva EO, protected it from degradation. This effect was more pronounced as the concentration of CD increased. These findings suggested that CDs are promising encapsulating carriers for Ner by enhancing its solubility and stability and thereby its application in food industry.
机译:Nerolidol(Ner)是许多植物精油的主要成分,以其多种生物学特性而闻名。然而,Ner在水中的低溶解度及其对降解的敏感性限制了其应用。我们研究的目的是通过将Ner包封在不同的环糊精(CD)中来提高其溶解度和光稳定性。分阶段确定顺式,反式-Ner及其与各种CD(α-CD,β-CD,γ-CD,HP-β-CD,RAMEB,CRYSMEB和SBE-β-CD)的商业混合物的形成常数溶解度的研究,并通过光谱位移紫外可见法得到证实。还通过总有机碳(TOC)分析评估了富含反式Ner的Cabreuva精油(EO)的溶解度。通过HPLC评估Ner在HP-β-CD固体复合物中的包封效率(EE%)。 CD /反式-Ner包合物的结构表征随后通过NMR光谱进行,随后进行分子模型研究。包封对Ner光稳定性的影响也在UVB照射下随时间进行。获得了A L 型相溶解图,表明形成了1:1 CD / Ner包合物。在10 mMHP-β-CD的存在下,Ner的溶解度提高了约70倍。此外,对于5:1和10:1的HP-β-CD:Ner摩尔比,获得了高EE%值。 NMR和分子模型研究显示CD腔内反式Ner的最稳定结构,OH基团朝向CD的较宽边缘。最后,将CD包封Ner作为纯化合物或Cabreuva EO的主要成分,可防止其降解。随着CD浓度的增加,这种作用更加明显。这些发现表明,CD通过增强其溶解性和稳定性并因此在食品工业中的应用,有望为Ner封装载体。

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