Sun Yongmei, Cheng Jingying, Cheng Shu, Langrish Timothy A G
Drying and Process Technology Group, School of Chemical and Biomolecular Engineering, Building J01, The University of Sydney, Camperdown, NSW 2006, Australia.
Foods. 2025 Feb 10;14(4):580. doi: 10.3390/foods14040580.
Multifilm mass transfer theory has been used in conjunction with developing a new in vitro starch digestion model and applied to assessing starch digestion kinetics. One significance of this research is that this in vitro model has similar dynamics, such as similar Reynolds numbers for both in vivo and in vitro systems. In the in vitro intestine model, when the flow rate changes from 5.9 × 10 m s to 1.0 × 10 m s inside the intestine wall (inside the sausage casing), the number changes from 362 to 615. An oral digestion model, a stomach model, and an intestine model have been built to quantitatively understand reaction rate kinetics and two-film (or multifilm) mass transfer for carbohydrate digestion. This in vitro digestion system represents the oral mastication process to reduce the length scale of the test food, amylase inhibition in the stomach, and glucose generation and transport through the intestine wall according to the various emptying rates from stomach. Another dimensionless group, the Damköhler number (), has been calculated based on glucose measurements from this in vitro model, which show similar glycemic responses of the hydrolysis for banana and carrot with in vivo results. Another significance of this research is to distinguish a low GI food from a high GI one in this in vitro system and the possibility to estimate the GI value based on the glucose measurements.
多膜传质理论已与开发一种新的体外淀粉消化模型相结合,并应用于评估淀粉消化动力学。这项研究的一个意义在于,这种体外模型具有相似的动力学,例如体内和体外系统的雷诺数相似。在体外肠道模型中,当肠壁(香肠肠衣内部)内的流速从5.9×10米/秒变化到1.0×10米/秒时,该数值从362变为615。已经建立了口腔消化模型、胃模型和肠道模型,以定量了解碳水化合物消化的反应速率动力学和双膜(或多膜)传质。这种体外消化系统代表了口腔咀嚼过程,以减小测试食物的长度尺度、胃中的淀粉酶抑制作用,以及根据胃的各种排空速率通过肠壁产生和运输葡萄糖。基于该体外模型的葡萄糖测量值计算了另一个无量纲组,即达姆科勒数(),其显示香蕉和胡萝卜水解的血糖反应与体内结果相似。这项研究的另一个意义在于,在这种体外系统中区分低GI食物和高GI食物,以及根据葡萄糖测量值估计GI值的可能性。