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Enrichment of Artemia nauplii in vitamin A, vitamin C and methionine using liposomes

机译:使用脂质体丰富卤虫无节幼体中的维生素A,维生素C和蛋氨酸

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Several types of liposomes were used to enrich Artemia nauplii in vitamin A, vitamin C and free methionine. In a first experiment, unilamellar liposomes formulated with krill phospholipid extract and retinyl palmitate demonstrated their capability to enhance the retinol content of Artemia nauplii. Furthermore, the increase in retinol was related to the amount of retinyl palmitate included in the liposomes as vitamin A source. These findings yield the possibility of using such vesicles to bioencapsulate simultaneously both vitamin A and essential fatty acids present in the krill phospholipid extract. A second enrichment was carried out with unilamellar liposomes composed of soybean phosphatidylcholine and loaded with sodium ascorbate as vitamin C source. Our results did not show that vitamin C content in the nauplii could be increased using unilamellar liposomes. This was most likely due to the degradation of the vitamin C during enrichment as well as the ascorbate leakage. Finally, a third experiment assessed enrichment in free methionine using liposomes of different lamellarity (unilamellar or multilamellar) and composed of either soybean phosphatidylcholine or dipalmitoyl phosphatidylcholine, both combined with cholesterol as a membrane stabilizer. Results indicated that multilamellar liposomes represent a useful tool to deliver methionine to Artemia nauplii. Enhanced protection given by their multiple bilayers in comparison to unilamellar liposomes could account for the higher ability displayed by multilamellar vesicles for free methionine bioencapsulation..
机译:几种类型的脂质体用于丰富无节幼体的维生素A,维生素C和游离蛋氨酸。在第一个实验中,用磷虾磷脂提取物和棕榈酸视黄酯配制的单层脂质体显示出它们能够增强无节幼体的视黄醇含量的能力。此外,视黄醇的增加与脂质体中作为维生素A来源的棕榈酸视黄酯的含量有关。这些发现产生了使用这样的囊泡同时将磷虾磷脂提取物中存在的维生素A和必需脂肪酸生物包囊的可能性。用由大豆磷脂酰胆碱组成并负载有抗坏血酸钠作为维生素C源的单层脂质体进行第二次富集。我们的结果并未显示使用单层脂质体可以增加无节幼体中的维生素C含量。这很可能是由于浓缩过程中维生素C的降解以及抗坏血酸的泄漏。最后,第三个实验评估了使用不同层状(单层或多层)脂质体(由大豆磷脂酰胆碱或二棕榈酰磷脂酰胆碱组成,并结合胆固醇作为膜稳定剂)对游离蛋氨酸的富集。结果表明,多层脂质体代表了将蛋氨酸递送至无节幼体的有用工具。与单层脂质体相比,由其多层双层提供的增强保护作用可解释多层囊泡对游离甲硫氨酸生物包封表现出的更高能力。

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