School of Pharmacy, University of Camerino, Via Gentile III da Varano, Camerino (MC) 62032, Italy.
Department of Biomolecular Sciences, University of Urbino Carlo Bo, Piazza del Rinascimento n° 6, Urbino (PU) 61029, Italy.
Eur J Pharm Biopharm. 2018 Mar;124:55-62. doi: 10.1016/j.ejpb.2017.12.008. Epub 2017 Dec 16.
Sugar fatty acid esters are an interesting class of non-ionic, biocompatible and biodegradable sugar-based surfactants, recently emerged as a valid alternative to the traditional commonly employed (e.g. polysorbates and polyethylene glycol derivatives). By varying the polar head (carbohydrate moiety) and the hydrophobic tail (fatty acid), surfactants with different physico-chemical characteristics can be easily prepared. While many research papers have focused on sucrose derivatives, relatively few studies have been carried out on lactose-based surfactants. In this work, we present the synthesis and the physico-chemical characterization of lactose oleate. The new derivative was obtained by enzymatic mono-esterification of lactose with oleic acid. Thermal, surface, and aggregation properties of the surfactant were studied in detail and the cytotoxicity profile was investigated by MTS and LDH assays on intestinal Caco-2 monolayers. Transepithelial electrical resistance (TEER) measurements on Caco-2 cells showed a transient and reversible effect on the tight junctions opening, which correlates with the increased permeability of 4 kDa fluorescein-labelled dextran (as model for macromolecular drugs) in a concentration dependent manner. Moreover, lactose oleate displayed a satisfactory antimicrobial activity over a range of Gram-positive and Gram-negative bacteria. Overall, the obtained results are promising for a further development of lactose oleate as an intestinal absorption enhancer and/or an alternative biodegradable preservative for pharmaceutical and food applications.
糖脂肪酸酯是一类有趣的非离子型、生物相容和可生物降解的基于糖的表面活性剂,最近作为传统常用的(如聚山梨酯和聚乙二醇衍生物)的有效替代品出现。通过改变极性头(糖部分)和疏水性尾(脂肪酸),可以很容易地制备具有不同物理化学特性的表面活性剂。虽然许多研究论文都集中在蔗糖衍生物上,但对基于乳糖的表面活性剂的研究相对较少。在这项工作中,我们介绍了油酸乳糖的合成和物理化学特性。新衍生物是通过油酸对乳糖的酶促单酯化获得的。详细研究了表面活性剂的热、表面和聚集性质,并通过 MTS 和 LDH 测定法在肠道 Caco-2 单层上研究了细胞毒性概况。Caco-2 细胞上的跨上皮电阻 (TEER) 测量显示对紧密连接的开放具有瞬时和可逆的影响,这与 4 kDa 荧光素标记的葡聚糖(作为大分子药物的模型)的渗透性增加呈浓度依赖性相关。此外,乳糖油酸对一系列革兰氏阳性和革兰氏阴性细菌表现出令人满意的抗菌活性。总的来说,获得的结果为进一步开发乳糖油酸作为肠道吸收增强剂和/或用于药物和食品应用的替代可生物降解防腐剂提供了希望。