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黑蟋蟀(Gryllus assimilis)衍生肽的多功能特性及其体外消化模拟对其生物活性的影响。

Multifunctional properties of peptides derived from black cricket (Gryllus assimilis) and effects of in vitro digestion simulation on their bioactivities.

机构信息

Department of Food Science and Nutrition, School of Food Engineering, University of Campinas, Rua Monteiro Lobato, 80, Campinas, SP, Brazil.

Department of Food Science and Nutrition, School of Food Engineering, University of Campinas, Rua Monteiro Lobato, 80, Campinas, SP, Brazil.

出版信息

Food Res Int. 2024 Nov;196:115134. doi: 10.1016/j.foodres.2024.115134. Epub 2024 Sep 21.

Abstract

Insects are a rich source of proteins and are produced in systems that have lower environmental impact. As an alternative protein source, they can be consumed directly or used as an ingredient in other formulations. Recently, there has been growing interest in utilizing insect proteins as a substrate to obtain bioactive peptides as well as in investigating the maintenance of their biological properties under physiological conditions. This study aimed to evaluate the impact of simulated digestion on the bioactive properties of protein hydrolysates from black crickets (Gryllus assimilis). Following simulated digestion of the hydrolysate obtained through the application of Flavourzyme, the scavenging activities of ABTS and DPPH radicals, and ferric reducing antioxidant power (FRAP) increased by approximately 17 %, 246 %, and 173 %, respectively. For the hydrolysate obtained using the binary combination of Flavourzyme/Neutrase, the inhibitory activities of α-amylase and α-glucosidase after digestion were 47.87 % and 12.73 %, respectively, not significantly (p > 0.05) different from non-digested hydrolysates. The angiotensin-converting enzyme (ACE) inhibitory activity of the sample hydrolyzed with Flavourzyme/Alcalase proteases was 42.22 %, but this property was completely lost after in vitro digestion. Untargeted proteomic analysis allowed the identification of 22 peptides in the <3 kDa fraction of the digested black cricket protein. The LPPLP sequence was considered potentially bioactive for all activities tested in silico.

摘要

昆虫是蛋白质的丰富来源,其生产系统对环境的影响较小。作为替代蛋白质来源,昆虫可以直接食用,也可以作为其他配方的成分使用。最近,人们越来越感兴趣地利用昆虫蛋白作为底物来获得生物活性肽,并研究在生理条件下保持其生物特性。本研究旨在评估模拟消化对黑蟋蟀(Gryllus assimilis)蛋白水解产物生物活性的影响。在用 Flavourzyme 进行水解后,模拟消化会使 ABTS 和 DPPH 自由基清除活性以及铁还原抗氧化能力(FRAP)分别增加约 17%、246%和 173%。对于使用 Flavourzyme/Neutrase 二元组合获得的水解产物,消化后的α-淀粉酶和α-葡萄糖苷酶抑制活性分别为 47.87%和 12.73%,与未消化的水解产物没有显著差异(p>0.05)。用 Flavourzyme/Alcalase 蛋白酶水解的样品的血管紧张素转化酶(ACE)抑制活性为 42.22%,但这种特性在体外消化后完全丧失。非靶向蛋白质组学分析允许鉴定出消化的黑蟋蟀蛋白<3 kDa 部分的 22 种肽。LPPLP 序列被认为对所有测试的活性都具有潜在的生物活性。

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