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将豆渣废料转化为营养丰富的多糖/蛋白质提取物,用于共包封β-胡萝卜素和硫酸亚铁,作为解决微量营养素营养不良的一种潜在方法。

Valorizing okara waste into nutritionally rich polysaccharide/protein-extracts for co-encapsulation of β-carotene and ferrous sulphate as a potential approach to tackle micronutrient malnutrition.

作者信息

Kharel Sharad, Gautam Archana, Mahotra Manish, Theniko Nasya Martin, Loo Say Chye Joachim

机构信息

School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore 639798, Singapore.

Singapore Centre on Environmental Life Sciences Engineering (SCELSE), Nanyang Technological University, Singapore 637551, Singapore.

出版信息

J Funct Foods. 2021 Dec;87:104749. doi: 10.1016/j.jff.2021.104749.

Abstract

Colossal amounts of food waste are generated and discarded daily at the expense of financial resources and at a detriment to the environment. One such food waste, okara - a soybean by-product, is valorized in this study by upcycling it into nutritional extracts for micronutrients encapsulation. Micronutrient malnutrition, particularly in the developing world, is a major public health challenge. Herein, okara extracts were obtained through a low-cost extraction process and was subsequently developed as an encapsulant material for micronutrients β-carotene, and ferrous sulphate encapsulation, using zein as an excipient. Spray-drying, as a scalable technique, was employed to produce various formulations which were assessed for release profiles, shelf-life, β-carotene antioxidant activity and cell cytotoxicity. Finally, an optimized dual-micronutrient formulation displayed a sequential release with ferrous sulphate releasing in simulated gastric fluid, and β-carotene releasing predominantly in simulated intestinal fluid. This sequential release profile favors the absorption of both the micronutrients and could potentially enhance their bioavailability.

摘要

每天都会产生并丢弃大量的食物垃圾,这不仅耗费财力,还对环境造成损害。其中一种食物垃圾豆渣——大豆的一种副产品,在本研究中通过将其升级转化为用于微营养素封装的营养提取物而得到了有效利用。微营养素营养不良,尤其是在发展中世界,是一项重大的公共卫生挑战。在此,通过低成本提取工艺获得了豆渣提取物,随后将其开发为微营养素β-胡萝卜素和硫酸亚铁封装的包封材料,使用玉米醇溶蛋白作为辅料。喷雾干燥作为一种可扩展的技术,用于生产各种制剂,并对其释放曲线、保质期、β-胡萝卜素抗氧化活性和细胞毒性进行了评估。最后,一种优化的双微营养素制剂呈现出顺序释放,硫酸亚铁在模拟胃液中释放,而β-胡萝卜素主要在模拟肠液中释放。这种顺序释放曲线有利于两种微营养素的吸收,并有可能提高它们的生物利用度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aaef/8689405/140980d94ad4/gr1.jpg

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