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Blood-pressure lowering efficacy of winged bean seed hydrolysate in spontaneously hypertensive rats, peptide characterization and a toxicity study in Sprague-Dawley rats

机译:翅膀豆种子水解液在自发性高血压大鼠中的血压降低疗效,肽表征和Sprague-Dawley大鼠的毒性研究

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摘要

Winged bean seed (WBS) is an underutilized tropical crop. The current study evaluates its potential to reduce blood pressure (BP) in spontaneously hypertensive rats and finds that it reduces BP significantly, in a dose-dependent manner. Five peptides with the sequences, RGVFPCLK, TQLDLPTQ, EPALVP, MRSVVT and DMKP, have been characterized in terms of their stability against ACE via in vitro and in silico modelling. All peptides exhibited IC50 values between 0.019 and 6.885 mM and various inhibitory modes, including substrate, prodrug and true inhibitor modes. The toxicity status of non-Current Good Manufacturing Practice (non-CGMP) peptides is evaluated and the results show that such peptides are toxic, and thus are not suitable to be tested in animals, particularly in repeated-dose studies. In short, WBS hydrolysate demonstrated in vitro ACE inhibitory properties and in vivo blood pressure lowering efficacy in rat models, fostering its potential as a functional food ingredient. Non-CGMP grade peptides are toxic and unfit for testing in animal models.
机译:翅豆种子(WBS)是未充分利用的热带作物。目前的研究评估了其在自发性高血压大鼠中降低血压(BP)的可能性,并以剂量​​依赖的方式发现它显着降低了BP。五种肽,具有序列,RGVFPCLK,TQLDLPTQ,EPALVP,MRSVVT和DMKP,其特征在于通过体外和硅模型对抗ACE的稳定性来表征。所有肽在0.019和6.885mm之间表现出IC 50值和各种抑制模式,包括底物,前药和真正的抑制剂模式。评估非电流良好制造实践(非CGMP)肽的毒性状态,结果表明这种肽有毒,因此不适合于在动物中进行测试,特别是在重复的剂量研究中。简而言之,WBS水解产物在体外抑制性质和体内血压降低大鼠模型的疗效,促进其作为功能性食品成分的潜力。非CGMP级肽是毒性和在动物模型中进行测试的。

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    《Food & Function》 |2018年第3期|共15页
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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 食品工业;
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