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  • Use of Amylomaltase to Steer the Functional and Nutritional Properties of Wheat Starch.

Use of Amylomaltase to Steer the Functional and Nutritional Properties of Wheat Starch.

Foods (Basel, Switzerland) (2021-02-06)
Konstantinos Korompokis, Lomme J Deleu, Niels De Brier, Jan A Delcour
摘要

The fine molecular structure of starch governs its functionality and digestibility, and enzymatic approaches can be utilized to tailor its properties. The aim of this study was to investigate the in situ modification of starch by amylomaltase (AMM) from Thermus thermophilus in model starch systems subjected to hydrothermal treatments under standardized conditions and the relationship between molecular structure, rheological properties and in vitro digestibility. When low dosages of AMM were added to a wheat starch suspension prior to submitting it to a temperature-time profile in a Rapid Visco Analyzer, the increased peak viscosity observed was attributed to partial depolymerization of amylose, which facilitated starch swelling and viscosity development. At higher dosages, the effect was smaller. The low cold paste viscosity as a result of the activity of AMM reflected substantial amylose depolymerization. At the same time, amylopectin chains were substantially elongated. The longer amylopectin chains were positively correlated (R2 = 0.96) with the melting enthalpies of retrograded starches, which, in turn, were negatively correlated with the extent (R2 = 0.92) and rate (R2 = 0.79) of in vitro digestion. It was concluded that AMM has the potential to be used to deliver novel starch functionalities and enhance its nutritional properties.

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Sigma-Aldrich
胃蛋白酶 来源于猪胃粘膜, lyophilized powder, ≥3,200 units/mg protein
Sigma-Aldrich
胰脂肪酶 来源于猪胰腺, ≥3 × USP specifications
Sigma-Aldrich
异淀粉酶 来源于假单胞菌 属, ammonium sulfate suspension, ≥10,000,000 units/mg protein