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基于藻酸盐涂层的葡萄皮渣提取物冻干微胶囊化:酚类化合物的释放动力学及体外生物可及性评估

Microencapsulation of Grape Pomace Extracts with Alginate-Based Coatings by Freeze-Drying: Release Kinetics and In Vitro Bioaccessibility Assessment of Phenolic Compounds.

作者信息

Martinović Josipa, Ambrus Rita, Planinić Mirela, Šelo Gordana, Klarić Ana-Marija, Perković Gabriela, Bucić-Kojić Ana

机构信息

Faculty of Food Technology Osijek, Josip Juraj Strossmayer University of Osijek, HR-31 000 Osijek, Croatia.

Faculty of Pharmacy, Institute of Pharmaceutical Technology and Regulatory Affairs, University of Szeged, H-6720 Szeged, Hungary.

出版信息

Gels. 2024 May 21;10(6):353. doi: 10.3390/gels10060353.

Abstract

The phenols from grape pomace have remarkable beneficial effects on health prevention due to their biological activity, but these are often limited by their bioaccessibility in the gastrointestinal tract. Encapsulation could protect the phenolics during digestion and influence the controlled release in such an intestine where their potential absorption occurs. The influence of freeze-drying encapsulation with sodium alginate (SA) and its combination with gum Arabic (SA-GA) and gelatin (SA-GEL) on the encapsulation efficiency () of phenol-rich grape pomace extract and the bioaccessibility index () of phenolics during simulated digestion in vitro was investigated. The addition of a second coating to SA improved the , and the highest was obtained with SA-GEL (97.02-98.30%). The release of phenolics followed Fick's law of diffusion and the Korsmeyer-Peppas model best fitted the experimental data. The highest was found for the total phenolics (66.2-123.2%) and individual phenolics (epicatechin gallate 958.9%, gallocatechin gallate 987.3%) using the SA-GEL coating were used. This study shows that freeze-dried encapsulated extracts have the potential to be used for the preparation of various formulations containing natural phenolic compounds with the aim of increasing their bioaccessibility compared to formulations containing non-encapsulated extracts.

摘要

葡萄渣中的酚类物质因其生物活性对健康预防具有显著的有益作用,但这些作用往往受到其在胃肠道中生物可及性的限制。包囊可以在消化过程中保护酚类物质,并影响其在潜在吸收发生的肠道中的控释。研究了用海藻酸钠(SA)冷冻干燥包囊及其与阿拉伯胶(SA-GA)和明胶(SA-GEL)的组合对富含酚类的葡萄渣提取物的包封效率( )以及体外模拟消化过程中酚类物质的生物可及性指数( )的影响。在SA上添加第二种包衣提高了 ,SA-GEL获得了最高的 (97.02-98.30%)。酚类物质的释放遵循菲克扩散定律,Korsmeyer-Peppas模型最符合实验数据。使用SA-GEL包衣时,总酚类物质(66.2-123.2%)和个别酚类物质(表儿茶素没食子酸酯958.9%,没食子儿茶素没食子酸酯987.3%)的 最高。这项研究表明,冷冻干燥的包囊提取物有潜力用于制备各种含有天然酚类化合物的制剂,目的是与含有未包囊提取物的制剂相比提高其生物可及性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e01/11203361/ad354c030340/gels-10-00353-g001.jpg

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