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用于封装和控制释放迷迭香精油的混合微胶囊

Hybrid Microcapsules for Encapsulation and Controlled Release of Rosemary Essential Oil.

作者信息

Berraaouan Doha, Essifi Kamal, Addi Mohamed, Hano Christophe, Fauconnier Marie-Laure, Tahani Abdesselam

机构信息

Physical Chemistry of Natural Substances and Process Research Team, Laboratory of Applied Chemistry and Environment (LCAE-CPSUNAP), Faculty of Sciences, Université Mohamed Premier, BV Mohammed VI BP 717, Oujda 60000, Morocco.

Laboratoire d'Amélioration des Productions Agricoles, Biotechnologie et Environnement (LAPABE), Faculty of Sciences, Université Mohamed Premier, BV Mohammed VI BP 717, Oujda 60000, Morocco.

出版信息

Polymers (Basel). 2023 Feb 7;15(4):823. doi: 10.3390/polym15040823.

Abstract

The foremost objective of this work is to assess the microcapsules composition (polymer-based and polymer/clay-based) effect, on the release of rosemary essential oil into w/o medium and evaluate their antioxidant activity. Calcium alginate (CA) and calcium alginate/montmorillonite hybrid (CA-MTN) microcapsules were developed following an ionotropic crosslinking gelation and were used as host materials for the encapsulation of rosemary essential oil. The unloaded/loaded CA and hybrid CA-MTN microcapsules were characterized by Fourier transform infra-red (FT-ATR) spectroscopy, thermal analysis (TGA), scanning electron microscopy (SEM) and DPPH assay. The evaluation of the microcapsule's physicochemical properties has shown that the clay filling with montmorillonite improved the microcapsule's properties. The encapsulation efficiency improved significantly in hybrid CA-MTN microcapsules and exhibited higher values ranging from 81 for CA to 83% for hybrid CA-MTN and a loading capacity of 71 for CA and 73% for hybrid CA-MTN, owing to the large adsorption capacity of the sodic clay. Moreover, the hybrid CA-MTN microcapsules showed a time-extended release of rosemary essential oil compared to CA microcapsules. Finally, the DPPH assay displayed a higher reduction of free radicals in hybrid CA-MNT-REO (12.8%) than CA-REO (10%) loaded microcapsules. These results proved that the clay-alginate combination provides microcapsules with enhanced properties compared to the polymer-based microcapsules.

摘要

这项工作的首要目标是评估微胶囊组成(基于聚合物和基于聚合物/粘土)对迷迭香叶精油向油包水介质中释放的影响,并评估其抗氧化活性。海藻酸钙(CA)和海藻酸钙/蒙脱石杂化微胶囊(CA-MTN)通过离子交联凝胶法制备,并用作迷迭香叶精油包封的主体材料。通过傅里叶变换红外光谱(FT-ATR)、热分析(TGA)、扫描电子显微镜(SEM)和DPPH测定对未负载/负载的CA和杂化CA-MTN微胶囊进行了表征。微胶囊物理化学性质的评估表明,蒙脱石填充粘土改善了微胶囊的性质。由于钠基粘土的大吸附容量,杂化CA-MTN微胶囊的包封效率显著提高,显示出较高的值,从CA的81%到杂化CA-MTN的83%,负载量分别为CA的71%和杂化CA-MTN的73%。此外,与CA微胶囊相比,杂化CA-MTN微胶囊显示出迷迭香叶精油的缓释。最后,DPPH测定显示,杂化CA-MNT-REO(12.8%)负载的微胶囊比CA-REO(10%)负载的微胶囊对自由基的还原能力更高。这些结果证明,与基于聚合物的微胶囊相比,粘土-海藻酸盐组合为微胶囊提供了增强的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d60d/9968220/b8fa73458489/polymers-15-00823-g001.jpg

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