Improving Oxidative Stability of Polyphenolic Fraction of Apple Pomace by Encapsulation Using Naturally Occurring Polymers

S. Ibrahim, S. Bowra
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引用次数: 3

Abstract

Polyphenolic compounds with relatively high antioxidant activity obtained from subcritical water extraction of apple pomace were assessed for encapsulation by spray drying technique, making use of polymeric substances co-extracted with the polyphenolic compounds. Comparative assessments were carried out of the directly encapsulated subcritical water extract (SWE) products with particles formed when encapsulated with the addition of hydroxyl propyl-β-Cyclodextrin (SWE + HPβ-CD). The powders were characterized for their physico-chemical properties such as, moisture content, density, particle size, hygroscopicity to assess their suitability within cosmetic formulations. The SWE and SWE + HPβ-CD encapsulated products resulted in different physical properties. Although the particle size was less than 4 μm for both products, the direct encapsulation (SWE) was highly hygroscopic and this property was significantly reduced with addition of HPβ-Cyclodextrin (SWE + HPβ-CD). Scanning electron microscopy (SEM) and Fourier Transform Infrared (FT-IR) spectroscopic were em-ployed to analyse the micronised powders to support evidence of encapsulation. Both techniques revealed the interaction between compounds in extract and the carrier HPβ-Cyclodextrin suggesting successful encapsulation. The effect of storage conditions on retention of antioxidant activity of the subcritical water extract was evaluated within 35 days for extracts with and without the carrier HPβ-Cyclodextrin. Hydroxyl propyl-β-Cyclodextrin offered protection against degradation of antioxidant compounds thereby potentially extending the shelf-life and making the encapsulated powder suitable for incorporation in cosmetic and pharmaceutical applications.
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天然聚合物包封提高苹果渣多酚组分氧化稳定性
利用与多酚类化合物共提取的聚合物,采用喷雾干燥技术对苹果渣亚临界水提取得到的抗氧化活性较高的多酚类化合物进行了包封评价。对添加羟丙基-β-环糊精(SWE+HPβ-CD)包封时形成颗粒的直接包封亚临界水提取物(SWE)产品进行了比较评估。对粉末的物理化学性质进行了表征,如水分含量、密度、粒度、吸湿性,以评估其在化妆品配方中的适用性。SWE和SWE+HPβ-CD包封产物的物理性质不同。尽管两种产品的粒径都小于4μm,但直接包封(SWE)具有高度吸湿性,并且随着HPβ-环糊精(SWE+HPβ-CD)的加入,这种性质显著降低。采用扫描电子显微镜(SEM)和傅立叶变换红外光谱(FT-IR)对微粉化粉末进行分析,以支持包封的证据。这两种技术都揭示了提取物中的化合物与载体HPβ-环糊精之间的相互作用,表明其成功封装。对于含有和不含有载体HPβ-环糊精的提取物,在35天内评估了储存条件对亚临界水提取物抗氧化活性保留的影响。羟丙基-β-环糊精可防止抗氧化化合物降解,从而有可能延长保质期,使胶囊粉末适合用于化妆品和制药应用。
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来源期刊
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