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乙基纤维素核、辛烯基琥珀酸淀粉壳电喷雾微胶囊增强负载鱼油的氧化稳定性。

Ethyl Cellulose-Core, OSA Starch-Shell Electrosprayed Microcapsules Enhance the Oxidative Stability of Loaded Fish Oil.

作者信息

Fallahasghari Elnaz Z, Stubbe Peter Reimer, Chronakis Ioannis S, Mendes Ana C

机构信息

DTU-Food, Research Group for Food Production Engineering, Laboratory of Nano-BioScience, Technical University of Denmark, Henrik Dams Allé, B202, 2800 Kongens Lyngby, Denmark.

出版信息

Nanomaterials (Basel). 2024 Mar 12;14(6):510. doi: 10.3390/nano14060510.

Abstract

The encapsulation and the oxidative stability of cod liver fish oil (CLO) within coaxial electrosprayed (ethyl cellulose/CLO) core-(octenyl succinic anhydride, OSA-modified starch) shell, and monoaxial electrosprayed ethyl cellulose/CLO microcapsules were investigated. Core-shell (H-ECLO) and monoaxial (ECLO) electrosprayed microcapsules with an average diameter of 2.8 ± 1.8 µm, and 2.2 ± 1.4 µm, respectively, were produced. Confocal microscopy confirmed not only the core-shell structure of the H-ECLO microcapsules, but also the location of the CLO in the core. However, for the ECLO microcapsules, the CLO was distributed on the microcapsules' surface, as also confirmed by Raman spectroscopy. Atomic force microscopy showed that the average surface adhesion of the H-ECLO microcapsules was significantly lower (5.41 ± 0.31 nN) than ECLO microcapsules (18.18 ± 1.07 nN), while the H-ECLO microcapsules showed a remarkably higher Young's modulus (33.84 ± 4.36 MPa) than the ECLO microcapsules (6.64 ± 0.84 MPa). Differential scanning calorimetry results confirmed that the H-ECLO microcapsules enhanced the oxidative stability of encapsulated CLO by about 15 times, in comparison to non-encapsulated oil, mainly by preventing the presence of the fish oil at the surface of the microcapsules, while ECLO microcapsules enhanced the oxidative stability of CLO about 2.9 times due to the hydrophobic interactions of the oil and ethyl cellulose. Furthermore, the finite element method was also used to evaluate the electric field strength distribution, which was substantially higher in the vicinity of the collector and lower in the proximity of the nozzle when the coaxial electrospray process was employed in comparison to the monoaxial process.

摘要

研究了在同轴电喷雾(乙基纤维素/鳕鱼肝油)核-(辛烯基琥珀酸酐,OSA改性淀粉)壳以及单轴电喷雾乙基纤维素/鳕鱼肝油微胶囊中,鳕鱼肝油(CLO)的包封情况和氧化稳定性。分别制备了平均直径为2.8±1.8 µm的核壳(H-ECLO)和平均直径为2.2±1.4 µm的单轴(ECLO)电喷雾微胶囊。共聚焦显微镜不仅证实了H-ECLO微胶囊的核壳结构,还证实了CLO在核中的位置。然而,对于ECLO微胶囊,CLO分布在微胶囊表面,拉曼光谱也证实了这一点。原子力显微镜显示,H-ECLO微胶囊的平均表面粘附力(5.41±0.31 nN)明显低于ECLO微胶囊(18.18±1.07 nN),而H-ECLO微胶囊的杨氏模量(33.84±4.36 MPa)明显高于ECLO微胶囊(6.64±0.84 MPa)。差示扫描量热法结果证实,与未包封的油相比,H-ECLO微胶囊将包封的CLO的氧化稳定性提高了约15倍,主要是通过防止鱼油出现在微胶囊表面,而ECLO微胶囊由于油与乙基纤维素的疏水相互作用将CLO的氧化稳定性提高了约2.9倍。此外,还使用有限元方法评估了电场强度分布,与单轴过程相比,采用同轴电喷雾过程时,收集器附近的电场强度明显更高,喷嘴附近的电场强度更低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d6e/10974531/963ca631bf0f/nanomaterials-14-00510-g001.jpg

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