Department of Food Science and Engineering, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai 200240, PR China.
School of Food and Tourism, Shanghai Urban Construction Vocational College, Shanghai 201415, PR China.
Food Res Int. 2024 Dec;197(Pt 1):115187. doi: 10.1016/j.foodres.2024.115187. Epub 2024 Oct 4.
Nuciferine exhibits properties such as reducing blood sugar and fat, however, it is hindered by its poor water solubility and low bioavailability. Pickering emulsions can efficiently encapsulate, protect and deliver active ingredients. In recent years, the use of biologically derived natural materials as emulsifiers to construct Pickering emulsions has become a research hotspot. This research utilized an enzymatic hydrolysis technique to produce short amylose. Subsequently, a ternary composite of short amylose (DBS), zein, and pectin (PEC) was formulated to stabilize Pickering emulsion, with the incorporation of nuciferine aiming to enhance the performance of lotus leaves in terms of both stability and bioavailability. The study revealed that varying amounts of DBS addition had a significant impact on the micromorphological structure and functional properties of DBS-Zein-PEC ternary composite particles. Specifically, the addition of 0.4 g of DBS led to a notable reduction in particle size to 735.2 nm and Zeta potential to -29.6 mV, creating a three-dimensional network with a closely packed lamellar structure. Optimal process conditions for preparing Pickering emulsion included a 3-minute homogenization time, rotation speed of 15000 rpm, and 5 % ternary composite particle addition. Under these conditions, O/W Pickering emulsion was successfully prepared, achieving a 90.5 % encapsulation rate for nuciferine. The resulting emulsion exhibited a minimum particle size of 4.09 μm, displayed good storage stability, resistance to salt ions and pH variations, viscous fluid characteristics, tolerance to oral and gastric environments, and slow release of nuciferine in the small intestine, thereby enhancing its bioavailability. These findings offer insights into the loading and delivery of nuciferine and serve as a technical guide for developing highly stable emulsion gel systems.
荷叶堿具有降血糖、降血脂等功效,但由于其水溶性差、生物利用度低,应用受到限制。Pickering 乳液可以高效包埋、保护和递送活性成分。近年来,利用生物衍生的天然材料作为乳化剂构建 Pickering 乳液已成为研究热点。本研究采用酶解技术制备短直链淀粉。随后,将短直链淀粉(DBS)、玉米醇溶蛋白和果胶(PEC)三元复合,稳定 Pickering 乳液,包载荷叶堿,以期提高荷叶堿的稳定性和生物利用度。结果表明,DBS 添加量对 DBS-玉米醇溶蛋白-果胶三元复合粒子的微观形态结构和功能性质有显著影响。具体而言,添加 0.4 g DBS 可使粒径显著减小至 735.2 nm,Zeta 电位降低至-29.6 mV,形成具有紧密堆积层状结构的三维网络。制备 Pickering 乳液的最佳工艺条件为:均质时间 3 min,转速 15000 rpm,添加 5%三元复合粒子。在此条件下,成功制备了 O/W Pickering 乳液,对荷叶堿的包封率达到 90.5%。所得乳液粒径最小为 4.09 μm,具有良好的储存稳定性,耐盐和 pH 变化,表现出粘性流体特征,耐受口腔和胃环境,在小肠中缓慢释放荷叶堿,从而提高了其生物利用度。这些发现为荷叶堿的载药和递药提供了新的思路,并为开发高稳定的乳液凝胶系统提供了技术指导。