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New methodologies for the extraction and fractionation of bioactive carbohydrates from mulberry (morus alba) leaves

机译:从桑叶中提取和分离生物活性碳水化合物的新方法

摘要

Pressurized liquid extraction (PLE) was applied for the first time to extract bioactive low molecular weight carbohydrates (iminosugars and inositols) from mulberry (Morus alba) leaves. Under optimized conditions, PLE provided a similar yield to the conventional process used to extract these bioactives, but in less time (5 vs 90 min). To remove carbohydrates that interfere with the bioactivity of iminosugars from PLE extracts, two fractionation treatments were evaluated: yeast (Saccharomyces cerevisiae) incubation and cation-exchange chromatography (CEC). Both methods allowed complete removal of major soluble carbohydrates (fructose, glucose, galactose, and sucrose), without affecting the content of mulberry bioactives. As an advantage over CEC, the yeast treatment preserves bioactive inositols, and it is an affordable methodology that employs food grade solvents. This work found PLE followed by yeast treatment to be an easily scalable and automatable procedure that can be implemented in the food industry.
机译:首次采用加压液体萃取(PLE)来从桑叶(Morus alba)叶片中提取具有生物活性的低分子量碳水化合物(亚氨基糖和肌醇)。在优化的条件下,PLE提供了与用于提取这些生物活性物质的常规方法相似的收率,但所需的时间却更少(5分钟对90分钟)。为了从PLE提取物中去除干扰亚氨基糖生物活性的碳水化合物,对两种分离处理进行了评估:酵母(Saccharomyces cerevisiae)孵育和阳离子交换色谱(CEC)。两种方法都可以完全去除主要可溶性碳水化合物(果糖,葡萄糖,半乳糖和蔗糖),而不会影响桑树生物活性物质的含量。作为与CEC相比的一项优势,酵母菌处理可保留生物活性肌醇,并且它是采用食品级溶剂的经济实惠的方法。这项工作发现,在酵母处理后进行PLE是一种易于扩展且可自动化的过程,可以在食品工业中实施。

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