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双分子层囊泡作为饮料中生物活性化合物的载体:应用于橙花叔醇,一种活性倍半萜醇。

Bicelles as a carrier for bioactive compounds in beverages: application to nerolidol, an active sesquiterpene alcohol.

作者信息

Ephrem Elissa, Najjar Amal, Charcosset Catherine, Greige-Gerges Hélène

机构信息

Bioactive Molecules Research Laboratory, Faculty of Sciences, Section II, Lebanese University, Jdaidet El-Matn, B.P. 90656, Beirut, Lebanon.

LAGEP UMR 5007, CNRS, Univ Lyon, Université Claude Bernard Lyon 1, 43 Boulevard du 11 novembre 1918, 69100 Villeurbanne, France.

出版信息

J Food Sci Technol. 2022 Mar;59(3):1030-1039. doi: 10.1007/s13197-021-05107-3. Epub 2021 May 5.

Abstract

ABSTRACT

Nerolidol is a natural sesquiterpene alcohol with promising but limited application in food and pharmaceutical fields due to several factors including low photostability and low aqueous solubility. Recently, several carriers loading nerolidol were prepared and tested in fresh orange juice. Lipid vesicles loading nerolidol did not exhibit satisfactory organoleptic properties in this beverage. Hence, DMPC/DHPC bicelles were prepared as a new phospholipid-based carrier for nerolidol at different molar ratios. The bicelle suspensions were characterized in terms of homogeneity, particles size, and morphology. The optimal formulation (phospholipid:nerolidol molar ratio 100:1) was selected based on transparent appearance, homogeneity, and particle size (~ 45 nm). Besides, it showed a high encapsulation efficiency of nerolidol and a high incorporation rate of phospholipids. Transmission electron microscopy analysis demonstrated the formation of bicelles. The bicelles membrane fluidity was assessed by 1,6-diphenyl-1,3,5-hexatriene fluorescence anisotropy and differential scanning calorimetry analysis. The membrane fluidity of bicelles appeared to increase in the presence of nerolidol in a concentration dependent manner. To our knowledge this is the first study dealing with the encapsulation of an essential oil component in bicelles.

摘要

摘要

橙花叔醇是一种天然倍半萜醇,由于包括光稳定性低和水溶性低等多种因素,其在食品和制药领域的应用前景广阔但受到限制。最近,制备了几种负载橙花叔醇的载体并在鲜橙汁中进行了测试。负载橙花叔醇的脂质囊泡在这种饮料中没有表现出令人满意的感官特性。因此,制备了不同摩尔比的DMPC/DHPC双分子层作为橙花叔醇的新型磷脂基载体。对双分子层悬浮液的均匀性、粒径和形态进行了表征。基于透明外观、均匀性和粒径(约45nm)选择了最佳配方(磷脂:橙花叔醇摩尔比100:1)。此外,它显示出橙花叔醇的高包封率和磷脂的高掺入率。透射电子显微镜分析证明了双分子层的形成。通过1,6-二苯基-1,3,5-己三烯荧光各向异性和差示扫描量热法分析评估双分子层膜的流动性。在橙花叔醇存在下,双分子层的膜流动性似乎以浓度依赖的方式增加。据我们所知,这是第一项关于双分子层中精油成分包封的研究。

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