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聚合物纳米胶囊的自组装制备:以载姜黄素纳米乳液模板。

Fabrication of polymeric nanocapsules from curcumin-loaded nanoemulsion templates by self-assembly.

机构信息

State Key Laboratory of Food Science & Technology, School of Food Science & Technology, Jiangnan University, Wuxi 214122, Jiangsu, China.

Department of Chemistry, COMSATS Institute of Information Technology, Abbotabad 22060, Pakistan.

出版信息

Ultrason Sonochem. 2015 Mar;23:81-92. doi: 10.1016/j.ultsonch.2014.10.006. Epub 2014 Oct 12.

Abstract

In this study, biodegradable polymeric nanocapsules were prepared by sequential deposition of food-grade polyelectrolytes through the self-assembling process onto the oil (medium chain triglycerides) droplets enriched with curcumin (lipophilic bioactive compound). Optimum conditions were used to prepare ultrasound-assisted nanoemulsions stabilized by octenyl-succinic-anhydride (OSA)-modified starch. Negatively charged droplets (-39.4 ± 1.84 mV) of these nanoemulsions, having a diameter of 142.7 ± 0.85 nm were used as templates for the fabrication of nanocapsules. Concentrations of layer-forming cationic (chitosan) and anionic (carboxymethylcellulose) biopolymers were optimized based on the mean droplet/particle diameter (MDD/MPD), polydispersity index (PDI) and net charge on the droplets/capsules. Prepared core-shell structures or nanocapsules, having MPD of 159.85 ± 0.92 nm, were characterized by laser diffraction (DLS), ζ-potential (ZP), atomic force microscopy (AFM), transmission electron microscopy (TEM) and confocal laser scanning microscopy (CLSM). Furthermore, physical stability of curcumin-loaded nanocapsules in suspension was determined and compared at different storage temperatures. This study may provide information regarding the formation of ultrasound-assisted polymeric nanocapsules from the nanoemulsion templates which could be helpful in the development of delivery systems for lipophilic food bioactives.

摘要

在这项研究中,通过自组装过程将食品级聚电解质顺序沉积到富含姜黄素(亲脂性生物活性化合物)的油(中链甘油三酯)滴上,制备了可生物降解的聚合物纳米胶囊。使用最佳条件制备了由辛烯基琥珀酸酐(OSA)改性淀粉稳定的超声辅助纳米乳液。这些纳米乳液的带负电荷的液滴(-39.4 ± 1.84 mV),直径为 142.7 ± 0.85 nm,用作纳米胶囊制造的模板。基于平均液滴/颗粒直径(MDD / MPD)、多分散指数(PDI)和液滴/胶囊的净电荷,优化了层形成阳离子(壳聚糖)和阴离子(羧甲基纤维素)生物聚合物的浓度。制备的核壳结构或纳米胶囊的 MPD 为 159.85 ± 0.92 nm,通过激光衍射(DLS)、ζ-电位(ZP)、原子力显微镜(AFM)、透射电子显微镜(TEM)和共焦激光扫描显微镜(CLSM)进行了表征。此外,还确定并比较了悬浮液中负载姜黄素的纳米胶囊在不同储存温度下的物理稳定性。这项研究可能提供有关从纳米乳液模板形成超声辅助聚合物纳米胶囊的信息,这有助于开发亲脂性食品生物活性物质的递送系统。

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