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Small Peptides Isolated from Enzymatic Hydrolyzate of Fermented Soybean Meal Promote Endothelium-Independent Vasorelaxation and ACE Inhibition

机译:从发酵大豆酶的酶水解产物中分离的小肽促进无关的内皮血管内血管和ACE抑制作用

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摘要

Fermentation of soybean is a process in which soy proteins are broken down into small peptides to exert various physiological functions beyond their nutritional value and to improve food source bioactive components responsible for health benefits. Enzymatic hydrolysis could speed up the degradation of proteins during fermentation of soybean, thus resulting in higher peptide production. In the present study, fermented soy meal (fermented with Bacillus subtilis from Douchi) was hydrolyzed by thermolysin, and the water extraction was then separated into four fractions using ultrafiltration membranes. Their vasorelaxation activities were screened, and the most potent fraction was further isolated and purified to obtain four peptides. Briefly, three peptides exerted a dose-dependent vasorelaxation (0.01-410 mu M) in the phenylephrine preconstricted thoracic aorta ring of Sprague-Dawley rat (relaxation actions were all endothelium-independent), while one peptide induced vasoconstriction. Furthermore, an independent causal relationship between vasorelaxation and angiotensin converting enzyme (ACE) inhibition activities was found.
机译:大豆发酵是一种过程,其中大豆蛋白分解成小肽,以施加各种生理功能,超出其营养价值,并改善负责健康益处的食物源生物活性成分。酶水解可以加速大豆发酵过程中蛋白质的降解,从而导致肽产生更高。在本研究中,通过散热素水解发酵大豆膳食(从Douchi发酵的枯草芽孢杆菌),然后使用超滤膜将水萃取分为四个级分。筛选它们的血管插入活性,进一步分离出最有效的级分并纯化以获得四种肽。简而言之,三种肽在苯妥肾上肾上腺素预纯度胸部主动脉中施加剂量依赖性血管加速(0.01-410μm),Sprague-dawley大鼠(弛豫动作是无关的),而一种肽诱导的血管收缩。此外,发现,发现了血管肠和血管紧张素转化酶(ACE)抑制活性之间的独立因果关系。

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