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Combination of pH-controlled fermentation in mild acidic conditions and enzymatic hydrolysis by Savinase to improve metabolic health-promoting properties of lentil

机译:pH控制发酵在温和酸性条件下的组合和培养基酶的酶促水解,提高扁豆的代谢健康促进性能

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摘要

This work evaluated the feasibility of pH-controlled fermentation by Lactobacillus plantarum CECT 748 combined with Savinase-hydrolysis (LPHS) for producing multifunctional lentil ingredients targeted for metabolic syndrome (MetS) relieving. LPHS process was compared with L. plantarum-fermentation (LP) and Savinase-hydrolysis (HS), applied separately. LPHS soluble fraction exhibited higher peptides, p-hydroxybenzoic acid, flavonols, antioxidant (400.74 mM TE/g), angiotensin I-converting enzyme (ACE) (95.43%) and alpha-glucosidase-inhibitory activities (40.55 and 25.03% for maltase and sacarase activities, respectively) than LP and HS. L. plantarum was responsible for the phenolic profile changes and sucrase inhibitory activity of LPHS while Savinase contributed to peptides release and ACE and maltase inhibitory and antioxidant activities. The most active LPHS fraction contained 3 peptides with potential biological activity and flavonoids and phenolic acids. LPHS simulated gastrointestinal digestion enhanced its peptides, phenolics, ACE-inhibitory and antioxidant activities. This study opens new opportunities regarding the production of lentil-multifunctional ingredients for MetS management.
机译:该作品评估了Lactobacillus Plantarum Cect 748与培养酶 - 水解(LPH)结合生产的甲氨酶 - 水解(LPH)的可行性,用于生产靶向代谢综合征(METS)缓解的多功能扁豆成分。将LPHS工艺与L.Plastarum-发酵(LP)和盐氨基酶水解(HS)进行比较。 LPHS可溶性馏分表现出更高的肽,对羟基苯甲酸,黄酮,抗氧化剂(400.74mm TE / g),血管紧张素I-转化酶(ACE)(95.43%)和α-葡糖苷酶抑制活性(40.55和25.03%,并且Sacarase的活动分别超过LP和HS。 L.Purerarum负责酚醛曲线的变化和LPHs的蔗糖酶抑制活性,而培养基酶导致肽释放和ACE和畸形酶抑制和抗氧化活性。最活跃的LPHS分数含有3种具有潜在的生物活性和黄酮类化合物和酚酸的肽。 LPHS模拟胃肠生物消化增强了其肽,酚类,ACE抑制和抗氧化活性。本研究开辟了有关METS管理扁豆多官能成分的新机会。

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