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Microencapsulation of Corn Wastewater (Nejayote) Phytochemicals by Spray Drying and Their Release Under Simulated Gastrointestinal Digestion

机译:玉米干(Nejayote)植物化学物质的喷雾干燥微胶囊化及其在模拟消化道中的释放

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摘要

Corn lime cooking generates a large amount of wastewater known as nejayote that is composed of suspended solids and solubilized phytochemicals. Spray drying can be an alternative to recover bioactive molecules, such as ferulic acid, from nejayote. Besides the yield, the physicochemical properties (solubility, water activity, pH, moisture, hygroscopicity, total phenolic content, and distribution of free and bound hydroxycinnamic acids) of spray-dried nejayote powders were analyzed. The powders were obtained at 200 ℃/100 ℃ or 150 ℃/75 ℃ (inlet/oudet) air temperatures with the addition of maltodextrin (MD) or 2-hydroxypropyl-beta-cyclodextrin (HBCD) as encapsulating agents. Even when no carrier agent was used, a spray-dried nejayote powder was produced. The use of MD or HBCD as carrier increased the yield from 60.26% to 68.09% or 71.83%, respectively. As expected, a high inlet temperature (200 ℃) allowed a satisfactory yield (>70%) and a low powder moisture (2.5%) desired by the industry. Water activity was reduced from 0.586 to 0.307 when HBCD was used in combination with a drying inlet temperature of 150 ℃; and from 0.488 to 0.280 when the inlet temperature was set at 200 ℃. Around 100% bioaccessibility of the compounds was observed after in vitro digestion. The addition of HBCD increased the release time (P < 0.05). Under simulated physiological conditions, there was no reduction of total phenolics, suggesting a good stability. This paper showed the feasibility to engage the spray drying technology to the corn industry to minimize their residues and reuse their by-products.
机译:玉米石灰蒸煮会产生大量的废水,被称为Nejayote,它由悬浮的固体和可溶解的植物化学物质组成。喷雾干燥可以是从nejayote中回收生物活性分子(例如阿魏酸)的替代方法。除了产量之外,还分析了喷雾干燥的奈考特粉末的理化性质(溶解度,水活度,pH,水分,吸湿性,总酚含量以及游离和结合的羟基肉桂酸的分布)。粉末是在200℃/ 100℃或150℃/ 75℃(进样/进样)空气温度下添加麦芽糖糊精(MD)或2-羟丙基-β-环糊精(HBCD)制成的封装剂。即使不使用载体剂,也可以制造喷雾干燥的奈考特粉末。使用MD或HBCD作为载体,收率分别从60.26%提高到68.09%或71.83%。正如预期的那样,较高的入口温度(200℃)可使行业获得令人满意的产率(> 70%)和较低的粉末水分(2.5%)。当六溴环十二烷与150℃干燥入口温度结合使用时,水活度从0.586降低到0.307;入口温度设定为200℃时为0.488〜0.280。在体外消化后,观察到化合物的生物可接近性达到100%。六溴环十二烷的添加增加了释放时间(P <0.05)。在模拟的生理条件下,总酚含量没有降低,表明具有良好的稳定性。本文显示了将喷雾干燥技术应用于玉米行业以减少其残留物并再利用其副产品的可行性。

著录项

  • 来源
    《Journal of Food Science》 |2017年第9期|1726-1734|共9页
  • 作者单位

    Tecnologico de Monterrey, Centro de Biotecnologia-FEMSA, School of Engineering and Science, Av. Eugenio Garza Sada 2501, Monterrey, N.L., CP. 64849, Mexico.;

    Tecnologico de Monterrey, Centro de Biotecnologia-FEMSA, School of Engineering and Science, Av. Eugenio Garza Sada 2501, Monterrey, N.L., CP. 64849, Mexico.;

    Tecnologico de Monterrey, Centro de Biotecnologia-FEMSA, School of Engineering and Science, Av. Eugenio Garza Sada 2501, Monterrey, N.L., CP. 64849, Mexico.;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ferulic acid; in vitro digestion; microencapsulation; nejayote; spray drying;

    机译:阿魏酸体外消化微囊化ja喷雾干燥;

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