首页> 外文期刊>American Journal of Food Science and Technology >Insoluble Vegetable Fiber as a Potential Functional Ingredient: Invitro Studies on Hypoglycemic and Hypocholesterolemic Effect
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Insoluble Vegetable Fiber as a Potential Functional Ingredient: Invitro Studies on Hypoglycemic and Hypocholesterolemic Effect

机译:不溶性植物纤维作为潜在的功能成分:降血糖和降胆固醇作用的体外研究

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摘要

Vegetable and fruit derived fibre plays a crucial role in promoting good health. Soluble and insoluble fiber has different physiological roles in human body. Insoluble fiber is known for having several beneficial effects like anti-constipating, hypoglycemic, hypocholesterolemic. In the present study, insoluble dietary fiber from vegetables viz., Nelumbo nucifera, Murraya koenigii, Abelmoschus esculentus and Brassica oleracea were investigated in vitro for their hypoglycemic and hypocholesterolemic effect. The hypoglycemic effect was studied by measuring glucose adsorption, glucose diffusion and amylase inhibitory activity whereas hypocholesterolemic effect was observed by bile salt (Sodium cholate) adsorption study. Results indicate that N. nucifera exerts significanteffect on glucose adsorption (7.40 ± 0.14 mmol/g) and amylase inhibitory activity (13.19 ± 0.66 %). Similarly glucose diffusion studies showed low diffusion values in case of N. nucifera as compared to others up to an hour. Also, N. nucifera showed highest sodium cholate binding capacity (10.11 ± 0.20 %) compared to other fibres when cellulose was used as a control. Thus, this study suggests that insoluble fibre from N. nucifera can be used for fortification of functional food products aimed at controlling glucose and cholesterol level.
机译:蔬菜和水果衍生的纤维在促进健康中起着至关重要的作用。可溶性和不溶性纤维在人体中具有不同的生理作用。众所周知,不溶性纤维具有多种有益作用,例如抗便秘,降血糖,降胆固醇。在本研究中,对来自蔬菜,Nelumbo nucifera,Murraya koenigii,Abelmoschus esculentus和芸苔的不溶性膳食纤维的降血糖和降胆固醇作用进行了体外研究。通过测量葡萄糖吸附,葡萄糖扩散和淀粉酶抑制活性来研究降血糖作用,而通过胆盐(胆酸钠)吸附研究则观察到降胆固醇作用。结果表明,N。nucifera对葡萄糖吸附(7.40±0.14 mmol / g)和淀粉酶抑制活性(13.19±0.66%)有显着影响。同样,葡萄糖扩散研究显示,与其他长达一个小时的相比,在N. nucifera的情况下扩散值较低。同样,当使用纤维素作为对照时,与其他纤维相比,N。nucifera表现出最高的胆酸钠结合能力(10.11±0.20%)。因此,这项研究表明,来自N. nucifera的不溶性纤维可用于强化旨在控制葡萄糖和胆固醇水平的功能性食品。

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