首页> 外文期刊>Journal of Food Science and Technology >Improving phenolic bioactive-linked anti-hyperglycemic functions of dark germinated barley sprouts (Hordeum vulgare L.) using seed elicitation strategy
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Improving phenolic bioactive-linked anti-hyperglycemic functions of dark germinated barley sprouts (Hordeum vulgare L.) using seed elicitation strategy

机译:使用种子阐释策略改善深色发芽大麦豆芽(Hordeum Vulgare L.)的酚类生物活性相关的抗高血糖功能

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摘要

Sprouts of cereal grains, such as barley (Hordeum vulgare L.), are a good source of beneficial phenolic bioactives. Such health relevant phenolic bioactives of cereal sprouts can be targeted to manage chronic hyperglycemia and oxidative stress commonly associated with type 2 diabetes (T2D). Therefore improving phenolic bioactives by stimulating plant endogenous defense responses such as protective pentose phosphate pathway (PPP) during sprouting has significant merit. Based on this metabolic rationale, this study aimed to enhance phenolic bioactives and associated antioxidant and anti-hyperglycemic functions in dark germinated barley sprouts using exogenous elicitor treatments. Dark-germinated sprouts of two malting barley cultivars (Pinnacle and Celebration), treated with chitosan oligosaccharide (COS) and marine protein hydrolysate (GP), were evaluated. Total soluble phenolic content (TSP), phenolic acid profiles, total antioxidant activity (TA) and in vitro inhibitory activities of hyperglycemia relevant alpha-amylase and alpha-glucosidase enzymes of the dark germinated barley sprouts were evaluated at day 2, 4, and 6 post elicitor treatments. Overall, TSP content, TA, and alpha-amylase inhibitory activity of dark germinated barley sprouts decreased, while alpha-glucosidase inhibitory activity and gallic acid content increased from day 2 to day 6. Among barley cultivars, high phenolic antioxidant-linked anti-hyperglycemic bioactives were observed in Celebration. Furthermore, GP and COS seed elicitor treatments in selective doses improved T2D relevant phenolic-linked anti-hyperglycemic bioactives of barley spouts at day 6. Therefore, such seed elicitation approach can be strategically used to develop bioactive enriched functional food ingredients from cereal sprouts targeting chronic hyperglycemia and oxidative stress linked to T2D.
机译:谷粒萌芽,如大麦(Hordeum Vulgare L.),是有益酚类生物的良好来源。这种健康相关的谷物芽的相关酚类生物术语可以靶向管理与2型糖尿病(T2D)相关的慢性高血糖和氧化应激。因此,通过刺激植物内源性防御反应,例如在萌芽期间通过刺激植物内源性防御反应来改善酚类生物,具有显着的优点。基于这种代谢理由,本研究旨在利用外源引发剂治疗来增强深色发芽大麦芽中的酚类生物和相关的抗氧化剂和抗高血糖功能。评价用壳聚糖寡糖(COS)和海洋蛋白质水解产物(GP)治疗的两种阳红的大麦品种(Pinnacle和庆祝)的深色发芽豆芽。在第2天,第4天评估总可溶性酚醛含量(TSP),酚醛酸谱,总抗氧化活性(TA)和体外抗氧化剂活性(TA)和体外抗氧化酶和黑色发芽大麦芽的α-葡萄糖苷酶的酶活性进行评估发布阐述后处理。黑色发芽大麦豆芽的总体而言,TSP含量,TA和α-淀粉酶抑制活性降低,而α-葡萄糖苷酶抑制活性和无碱酸含量从第2天增加。在大麦品种,高酚类抗氧化链中的抗高血糖血糖中增加在庆祝中观察到生物。此外,在第6天,选择性剂量中的GP和COS种子Elicitor治疗改善了大麦喷口的T2D相关酚类链接的抗高血糖生物。因此,这些种子诱导方法可以战略性地用于从靶向慢性的谷物芽的生物活性富集的功能食品成分。高血糖和氧化应激与T2D相关联。

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