含有红棕榈油的纳米结构脂质载体的特性和储存稳定性

Z. Efendi, A. Ardhi, U. Santoso, Supriyadi, M. Ulfah, S. Raharjo
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引用次数: 0

摘要

红棕榈油(RPO)是一种潜在的类胡萝卜素来源,主要含有β-胡萝卜素。红棕榈油的不稳定性需要一种输送系统,如纳米结构脂质载体(NLC)。本研究旨在开发一种 NLC 输送系统,并研究 NLCRPO 的特性。本研究采用熔融-乳化-超声法制备 NLC-RPO,脂质含量为 6%(重量比),固体脂质与 RPO 的比例(SRR)分别为 6:4、7:3 和 8:2。吐温 80(24% w/w)与脂质的比例为 4:1,蒸馏水为 70%(w/w)。本次研究采用的固体脂质是棕榈硬脂(PS)和棕榈仁硬脂(PKS),而液态脂质是 RPO。通过β-胡萝卜素截留率(EE)、离心、冷却、加热试验、颜色和pH值,对NLC-RPO贮存90天的稳定性进行了评估。对 NLC-RPO 在 90 天前后的粒度、多分散指数(PDI)、ZETA 电位和粘度进行了表征。当固体脂质与 RPO 的比例(SRR)为 6:4 时,NLC-RPO 作为 RPO 中β-胡萝卜素的载体,β-胡萝卜素在 NLC-RPO 中的封装效率最高,而使用的固体脂质类型(PS 和 PKS)没有显著差异。一般来说,在室温下存放 90 天的 NLC-RPO 经过离心、冷却和加热试验后显示出良好的稳定性,呈黄绿色(-a*;+b*),pH 值为 6.38-6.54。粒度(38-87 nm)、PDI(0.01-0.54)和 zeta 电位(-10.17--22.67 mV)在 90 天的储存过程中没有显著变化,而粘度(8.36-9.11cP)则有显著差异。SRR 为 6:4 的 NLC-RPO 的 β-胡萝卜素捕获效率最高,在室温下贮藏 90 天后仍保持稳定。
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Characteristic and storage stability of nanostructured lipid carriers containing red palm oil
Red palm oil (RPO) is a potential carotenoid source mostly containing β-carotene. RPO instability requires a delivery system such as nanostructured lipid carriers (NLC). This research aimed to develop an NLC delivery system and study the characteristics of NLCRPO. The melting-emulsification-ultrasonication method was employed to produce the NLC-RPO based on 6% (w/w) lipids, with solid lipid to RPO ratio (SRR) varied 6:4, 7:3, and 8:2. Tween 80 (24% w/w) to lipids ratio of 4:1, and distilled water 70% (w/w). The solid lipids employed in this investigation were palm stearin (PS), and palm kernel stearin (PKS), while the liquid lipid was RPO. The stability of NLC-RPO was evaluated using βcarotene entrapment efficiency (EE), centrifugation, cooling, heating test, color, and pH for 90 days of storage. The NLC-RPO was characterized by particle size, polydispersity index (PDI), zeta potential, and viscosity before and after 90 days. Regression analysis was performed to evaluate the relationships between the storage and stability parameters. The highest encapsulation efficiency of β-carotene in NLC-RPO as a carrier β-carotene from the RPO was achieved when solid lipid to RPO ratio (SRR) of 6:4 and there was no significant difference in the type of solid lipid (PS and PKS) used. Generally, NLC-RPO stored for 90 days at room temperature showed good stability after centrifugation, cooling and heating tests with greenish-yellow color (-a*;+b*), and pH of 6.38-6.54. The particle size (38-87 nm), PDI (0.01-0.54), and zeta potential (-10.17 to -22.67 mV) did not significantly change over 90 days of storage, while the viscosity (8.36-9.11cP) was significantly different. The NLC-RPO with SRR of 6:4 had the highest β-carotene entrapment efficiency and remained stable after 90 days of storage at room temperature.
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