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Protease technology for obtaining a soy pulp extract enriched in bioactive compounds: isoflavones and peptides

机译:蛋白酶技术用于获得富含生物活性化合物的大豆果肉提取物:异黄酮和肽

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摘要

This work presents a new bioprocess process for the extraction of bioactive components from soy pulp by-product (okara) using an enzymatic technology that was compared to a conventional water extraction. Okara is rich in fiber, fat, protein, and bioactive compounds such as isoflavones but its low solubility hampers the use in food and fertilizer industry. After the enzymatic attack with endoproteases half of the original insoluble proteins were converted into soluble peptides. Linked to this process occured the solubilization of isoflavones trapped in the insoluble protein matrix. We were able to extract up to 62.5% of the total isoflavones content, specially aglycones, the more bioactive isoflavone forms, whose values rose 9.12 times. This was probably due to the increased solubilization and interconversion from the original isoflavones. In conclusion, our process resulted in the formulation of a new functional product rich in aglycones and bioactive peptides with higher antioxidant potency than the original source. Therefore, we propose that the enzymatic extraction of okara bioactive compounds is an advantageous tool to replace conventional extraction.
机译:这项工作提出了一种新的生物过程工艺,该工艺使用酶技术从大豆纸浆副产物(豆渣)中提取生物活性成分,该工艺与常规水提取相比。豆渣富含纤维,脂肪,蛋白质和生物活性化合物,例如异黄酮,但其低溶解度妨碍了在食品和化肥行业的使用。在用内切蛋白酶进行酶攻击之后,一半的原始不溶蛋白被转化为可溶性肽。与这一过程有关的是被困在不溶性蛋白质基质中的异黄酮的溶解。我们能够提取出总异黄酮含量的62.5%,特别是糖苷配基,其具有更高的生物活性,异黄酮的含量上升了9.12倍。这可能是由于原始异黄酮的增溶作用和相互转化所致。总之,我们的过程导致了一种新的功能性产品的配方,该产品富含糖苷配基和生物活性肽,具有比原始来源更高的抗氧化能力。因此,我们建议酶法提取豆渣生物活性化合物是代替常规提取的有利工具。

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