Chen Mianhong, Li Ruyi, Lu Xuli, Dai Yaping, Chen Tinghui, Xing Yuhang, Xue Lu, Duan Zhihao, Zhou Wei, Li Jihua
Key Laboratory of Tropical Crop Products Processing of Ministry of Agriculture and Rural Affairs, Agricultural Products Processing Research Institute, Chinese Academy of Tropical Agricultural Sciences, Zhanjiang, Guangdong 524001, China.
Key Laboratory of Tropical Crop Products Processing of Ministry of Agriculture and Rural Affairs, Agricultural Products Processing Research Institute, Chinese Academy of Tropical Agricultural Sciences, Zhanjiang, Guangdong 524001, China.
Food Chem. 2023 Jan 1;398:133953. doi: 10.1016/j.foodchem.2022.133953. Epub 2022 Aug 18.
The aim of this study was to evaluate the influence of l-ascorbyl palmitate (LAP) as an additive to liposome formulations by self-assembling with soy lecithin to form hybrid liposomes, in order to enhance the physical stability and bioactivator-loaded retention ratio of the LAP incorporated liposomes (LAP-LP). The addition of LAP significantly increased its surface negative charge and strong hydrophobic interactions occurred between the hydrophobic tails of LAP and phospholipids resulting in more compactly ordered, rigid and hydrophobic phospholipid bilayers as indicated by surface tension, fluorescence probes and DSC. These changes enhanced the stability of hydrophobic polyphenol loaded LAP-LP during storage. Particularly, after four weeks storage at 37 °C for naringenin loaded liposomes, the retention ratio of pure liposome decreased dramatically to 12.5 %, while the LAP-LP remained above 74.5 %. This study opens up the potential for the LAP-LP to be developed as a food-grade multifunctional formulation for encapsulating and delivering bioactivators.
本研究的目的是评估棕榈酸维生素C酯(LAP)作为添加剂与大豆卵磷脂自组装形成混合脂质体对脂质体制剂的影响,以提高载有LAP的脂质体(LAP-LP)的物理稳定性和生物活性剂负载保留率。LAP的添加显著增加了其表面负电荷,并且LAP的疏水尾部与磷脂之间发生了强烈的疏水相互作用,导致磷脂双层更紧密有序、更刚性且更疏水,这通过表面张力、荧光探针和差示扫描量热法得以证明。这些变化增强了负载疏水多酚的LAP-LP在储存期间的稳定性。特别是,对于负载柚皮苷的脂质体在37℃储存四周后,纯脂质体的保留率急剧下降至12.5%,而LAP-LP仍保持在74.5%以上。本研究为LAP-LP作为用于封装和递送生物活性剂的食品级多功能制剂的开发开辟了潜力。