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通过与层状双氢氧化物的动态相互作用增强脱氧胆酸盐的乳化能力

Enhanced Emulsifying Ability of Deoxycholate through Dynamic Interaction with Layered Double Hydroxide.

作者信息

Xie Jing, Lee Kyounghyoun, Park Hyeonjin, Jung Hyun, Oh Jae-Min

机构信息

Department of Energy and Materials Engineering, Dongguk University, Seoul 04620, Republic of Korea.

Department of Chemistry, Dongguk University, Seoul 04620, Republic of Korea.

出版信息

Nanomaterials (Basel). 2023 Jan 30;13(3):567. doi: 10.3390/nano13030567.

Abstract

The emulsifying ability of the naturally occurring surfactant deoxycholic acid (DCA) was improved by dynamic interaction with nanometric layered particles, layered double hydroxide (LDH). As DCA molecules are rigid due to the facial configuration of hydrophobic-hydrophilic groups, they tend to form molecular aggregation in an acidic condition or imbalanced water-lipid ratios. In this study, the homogeneous hybrids of DCA and LDH were obtained by the in situ growth of LDH at a DCA molecule. The DCA-LDH hybrid successfully prevented the molecular aggregation of DCA at an acidic pH and imbalanced water-to-oil ratio. The dynamic light scattering showed that the hydrodynamic radius of micelle in the emulsion made with DCA-LDH maintained its small size (<500 nm), while upon pH change and dilution with water, that made with DCA only uncontrollably increased up to ~3000 nm. The polydispersity index value of the DCA-LDH emulsion remained constant (<0.3) after the pH change and dilution with water, indicating the high stability of the formulation. Furthermore, time-dependent turbidity monitoring revealed that the DCA-only formulation suffered from serious coalescence and creaming compared with the DCA-LDH formulation. It is suggested that the dynamic interaction between LDH layers and DCA prevented molecular aggregation under unfavorable conditions for the oil-in-water emulsion.

摘要

天然存在的表面活性剂脱氧胆酸(DCA)与纳米层状颗粒层状双氢氧化物(LDH)的动态相互作用提高了其乳化能力。由于DCA分子因疏水-亲水基团的面构型而呈刚性,它们在酸性条件或水-脂比例失衡时倾向于形成分子聚集体。在本研究中,通过在DCA分子处原位生长LDH获得了DCA与LDH的均匀杂化物。DCA-LDH杂化物成功地防止了DCA在酸性pH值和水油比失衡时的分子聚集。动态光散射表明,用DCA-LDH制成的乳液中胶束的流体动力学半径保持较小尺寸(<500 nm),而在pH值变化和用水稀释时,仅用DCA制成的乳液中胶束的流体动力学半径不可控地增加到约3000 nm。pH值变化和用水稀释后,DCA-LDH乳液的多分散指数值保持恒定(<0.3),表明该制剂具有高稳定性。此外,随时间变化的浊度监测显示,与DCA-LDH制剂相比,仅含DCA的制剂存在严重的聚结和分层现象。提示LDH层与DCA之间的动态相互作用在水包油乳液的不利条件下防止了分子聚集。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69ce/9920619/8f571a76d434/nanomaterials-13-00567-g001.jpg

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