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Digestion kinetics of native and modified cardaba banana starch: A biphasic approach

机译:天然和改性Cardaba香蕉淀粉的消化动力学:双相方法

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To understand the mechanism through which cardaba banana starch is hydrolysed, the starch digestion kinetics of native and modified cardaba banana starch samples of Nigeria origin were investigated using an in vitro procedure. The digestion kinetics of the starch samples revealed the samples exhibited a biphasic digestogram. A second-order polynomial with an average coefficient of determinant (r(2)) of 0.7732 (p < 0.005) was used to segment the biphasic digestogram into two monophasic digestograms. The digestion kinetics parameters (average) obtained using a modified first-order model suggested the accuracy of the model in describing the digestogram. The values obtained for the initial and final digestion rate constant (initial, k(i) = 3-4 x 10(-2) min(-1); final k(f) = 6-8.3 x 10(-2) min(-1)) revealed that the final monophasic segment had a faster rate of digestion after the initial resistant to digestion had been overcome. The logistic model approach in which the digestogram was carried out in a single process also accurately predicted the biphasic behaviours of the cardaba banana (average r(2) = 0.9736, p < 0.05; root mean square of error, RMSE = 1.588). Weibull model was used for the first time to describe the biphasic approach of cardaba banana starch and according to the digestogram parameters obtained (average r(2) = 0.9954, p < 0.05; root mean square of error, RMSE = 0.578), the model accurately predicts the biphasic digestogram. In comparison among the models, the Weibull model best described the biphasic digestogram of the cardaba banana starch. The maximum starch digestion obtained in each of the digestion approaches was less than 100% which is an indication of the presence of resistant starch. (C) 2020 Elsevier B.V. All rights reserved.
机译:为了了解Cardaba香蕉淀粉的机制水解,使用体外程序研究了尼日利亚原产地原产的淀粉消化动力学,尼日利亚原产地的淀粉样品。淀粉样品的消化动力学显示出样品表现出双相消化图。使用0.7732(P <0.005)的平均决定簇(R(2))的二阶多项式(R(2))将双相消化图分段为两种单选式消化图。使用修改的一阶模型获得的消化动力学参数(平均值)建议模型在描述消化图中的准确性。用于初始和最终消化率常数的值(初始,K(i)= 3-4×10(-2)min(-1);最终K(f)= 6-8.3×10(-2)min (-1))揭示了最终的单选区段在克服初始抗性后的消化率更快。其中digestogram是在单一工艺中进行的逻辑模型方法也准确地预测所述cardaba香蕉的双相行为(平均r(2)= 0.9736,P <0.05;误差的根均方,RMSE = 1.588)。 Weibull模型首次用于描述Cardaba香蕉淀粉的双相方法,并根据所获得的消化图参数(平均R(2)= 0.9954,P <0.05;误差的均值平方,RMSE = 0.578),模型准确预测双相消化图。相比之下,Weibull模型最能描述Cardaba香蕉淀粉的双相消化图。在每个消化方法中获得的最大淀粉消化小于100%,这是存在抗性淀粉的存在。 (c)2020 Elsevier B.v.保留所有权利。

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