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In vitro hypoglycemic effects of selected dietary fiber sources

机译:某些膳食纤维来源的体外降血糖作用

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摘要

The physiological functions of dietary fiber and its role in health promotion and risk reduction of some chronic diseases has been well documented. In the present investigation, the effect of three dietary fiber sources, oats (OA), barley (BA) and psyllium husk (PH) on glucose adsorption, diffusion and starch hydrolysis were studied using in vitro techniques by simulating gastrointestinal conditions and compared with the commercial dietary fiber sources wheat bran (WB), acarbose (ACB) and guar gum (GG). The glucose binding capacity of all the samples was higher than WB and ACB at 5 mM concentration. In all the samples, the diffusion of glucose was directly proportional to the time and diffusion rate was significantly lower (p ≤ 0.01) in the system containing various samples compared to control. Glucose dialysis retardation index (GDRI) was 100 for OA, BA and PH at 60 min, at 120 min the maximal GDRI was in PH. Whereas; WB and ACB exhibited maximal GDRI at 180 and 240 min. All of these mechanisms might create a concerted function in lowering the rate of glucose absorption and as a result, decrease the postprandial hyperglycemia.
机译:膳食纤维的生理功能及其在促进健康和降低某些慢性疾病风险中的作用已得到充分证明。在本研究中,通过模拟胃肠道条件,采用体外技术研究了三种膳食纤维来源,燕麦(OA),大麦(BA)和欧车前壳(PH)对葡萄糖吸附,扩散和淀粉水解的影响,并将其与商业膳食纤维来源麦麸(WB),阿卡波糖(ACB)和瓜尔豆胶(GG)。在5mM浓度下,所有样品的葡萄糖结合能力均高于WB和ACB。在所有样品中,与对照相比,在包含各种样品的系统中,葡萄糖的扩散与时间成正比,并且扩散速率显着降低(p≤0.01)。 OA,BA和PH在60分钟时的葡萄糖透析延迟指数(GDRI)为100,在120分钟时最大GDRI在PH中。鉴于; WB和ACB在180和240min处显示最大GDRI。所有这些机制都可能在降低葡萄糖吸收速率方面产生协同作用,从而降低餐后高血糖。

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