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Effect of physical and physicochemical characteristics of chitosan on fat-binding capacities under in vitro gastrointestinal conditions

机译:壳聚糖的理化特性对体外胃肠道条件下脂肪结合能力的影响

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The correlation of physical and physicochemical characteristics of five different chitosan on their fat binding capacities was studied using in vitro model of gastrointestinal conditions. Increasing molecular weight (Mw) and tap density of chitosan could significantly increase their fat-binding ability. Higher Mw chitosan (2100 and 890 kDa) show significantly higher fat binding capacity than 30 kDa. When tested at chitosan to fat 1:40, the ratio often used as dietary supplement, higher tap density chitosan showed an improved fat-binding capacity at around 2-fold increase. Interestingly, 2100 kDa high density (HD1P) could maintain the highest oil entrapment, ranging between 0.77 and 27.50 g oil/g chitosan depending on the interaction ratios. In addition, HD1P already maximized its fat-binding capacity since 30 min under in vitro gastric condition. In vitro cholesterol- and bile acids-binding experiments were also performed with HD1P and found to bind cholesterol at 820.9 +/- 21.43 mg/g chitosan, deoxycholic acid at 17.50 +/- 0.18 mg/g chitosan, and cholic acid at 5.28 +/- 0.57 mg/g chitosan. Therefore, this study shows that the ability of HD1P for binding high amount of fat at short dissolution time might be due to the combination characteristics of having high Mw and being in a high density form. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用胃肠道条件的体外模型研究了五种不同壳聚糖的理化特性与其脂肪结合能力的相关性。壳聚糖的分子量(Mw)和振实密度的增加可以显着提高其脂肪结合能力。较高的Mw壳聚糖(2100和890 kDa)显示出比30 kDa更高的脂肪结合能力。当以壳聚糖与脂肪的比例为1:40(通常用作膳食补充剂的比例)进行测试时,较高的敲击密度壳聚糖显示出改善的脂肪结合能力,增加了约2倍。有趣的是,根据相互作用比,2100 kDa高密度(HD1P)可以保持最高的油截留率,范围在0.77至27.50 g油/ g壳聚糖之间。此外,自从在体外胃部条件下30分钟以来,HD1P已经使其脂肪结合能力最大化。还使用HD1P进行了胆固醇和胆汁酸的体外结合实验,结果发现壳聚糖的胆固醇含量为820.9 +/- 21.43 mg / g,壳聚糖的胆固醇含量为17.50 +/- 0.18 mg / g,胆酸含量为5.28 + /-0.57 mg / g壳聚糖。因此,这项研究表明,HD1P在短的溶解时间内结合大量脂肪的能力可能是由于具有高Mw和高密度形式的组合特性。 (C)2016 Elsevier Ltd.保留所有权利。

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