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首页> 外文期刊>LWT-Food Science & Technology >Preparation and characterization of chitosan-coated nanostructured lipid carriers (CH-NLC) containing cinnamon essential oil for enriching milk and anti-oxidant activity
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Preparation and characterization of chitosan-coated nanostructured lipid carriers (CH-NLC) containing cinnamon essential oil for enriching milk and anti-oxidant activity

机译:壳聚糖涂覆纳米结构脂质载体(CH-NLC)的制备与表征含肉桂精油,用于富集牛奶和抗氧化活性

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The cinnamon essential oil (CEO) was loaded in nanostructured lipid carriers (NLC) and NLC surfaces were coated with chitosan (CH-NLC). The particle size increased significantly from 99.98 nm, in the control NLC to 107.1, 112.2, and 119.4 nm in the CH-NLC coated with 0.05%, 0.1%, and 0.15% chitosan solution, respectively. After 40-day storage the mean size of all formulations slightly increased, however, the CH-NLC indicated less growing than NLC. The PDI value of NLC was lower than the CH-NLC (0.252 in comparison to 0.325). In addition, the negative zeta potential of NLC ( -17.56) was changed to + 21.4 for CH-NLC. The entrapment efficiency (EE%) of CH-NLC (93.68%) was significantly (P < 0.05) higher than NLC (88.14%) which could be attributed to the higher particle size of CH-NLC system. The encapsulation stability (ES%) of CH-NLC (84.6%) was significantly higher than NLC (78.12%). Furthermore, the FTIR spectrum showed no creation of new peaks after coating the NLC however the intensity of the peaks was shifted. The endothermic peaks of NLC illustrated low melting point (38.50 degrees C) and less ordered crystalline structure. The stability of milk fortified with this system against oxidation during the storage time was proved by thiobarbituric acid test and peroxide value.
机译:肉桂精油(CEO)装载在纳米结构脂质载体(NLC)中,用壳聚糖(CH-NLC)涂覆NLC表面。粒度显着从99.98nm显着增加,在对照NLC至107.1,112.2和119.4nm中,CH-NLC分别涂覆0.05%,0.1%和0.15%壳聚糖溶液。 40天的储存后,所有制剂的平均尺寸略微增加,然而,CH-NLC表明比NLC更少。 NLC的PDI值低于CH-NLC(与0.325相比,0.252)。另外,对于CH-NLC,NLC(-17.56)的负Zeta电位变为+ 21.4。 CH-NLC(93.68%)的夹带效率(EE%)显着(P <0.05)高于NLC(88.14%),其可归因于CH-NLC系统的较高粒径。 CH-NLC(84.6%)的包封稳定性(ES%)明显高于NLC(78.12%)。此外,FTIR光谱显示在涂覆NLC后没有产生新的峰,但是峰的强度被移位。 NLC的吸热峰表示低熔点(38.50℃)和较少的晶体结构。通过硫酸脲酸试验和过氧化物值证明了在储存时间内抵抗该系统的牛奶的稳定性抵抗氧化。

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