2011AFRICAN JOURNAL OF BIOTECHNOLOGYOpen access

Preparation and properties of resistant starch from corn starch with enzymes

Qunyu Gao, Suling Li, Jian Hua-li, Liang Shi-zhong

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Abstract

Corn starch was subjected to enzymatic biotechnology with thermostable α-amylase and pullulanase and followed by retrogradation, to prepare resistant starch. The properties of selected resistant starch (RS) samples were also investigated. The result showed that, appropriate amount (0.5 U/g) of thermostable α-amylase was good for resistant starch formation. The optimal condition for pullulanase hydrolysis was carried out with 0.8 PUN/g (dry starch) pullulanase in pH 5.5 starch gel at 60°C for 12 h. The highest yield of resistant starch could be obtained (19.02%) under optimal condition. The effect of pullulanase on resistant starch formation was the most significant. Compared with native starch, amylose content was increased by 17.0 to 28.1% and it did not increased with enhancement of resistant starch content. The native starch showed A-type X-ray diffraction pattern, whereas RS products exhibited B-type pattern with strong intensity at the peak of 17.2°C 2θ and two board peak at 20.1 and 23.9°C 2θ. The transformation enthalpy of the second peak increased gradually with increasing RS content and the transformation peak temperature and Tc-T0 was also similar to this trend.

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What this paper is about

Corn starch was subjected to enzymatic biotechnology with thermostable α-amylase and pullulanase and followed by retrogradation, to prepare resistant starch. The properties of selected resistant starch (RS) samples were also investigated. The result showed that, appropriate amount (0.5 U/g) of thermostable α-amylase was good for resistant starch formation. The optimal condition for pullulanase hydrolysis was carried out with 0.8 PUN/g (dry starch) pullulanase in pH 5.5 starch gel at 60°C for 12 h. The highest yield of resistant starch could be obtained (19.02%) under optimal condition. The effect of pullulanase on resistant starch formation was the most significant. Compared with native starch, amylose content was increased by 17.0 to 28.1% and it did not increased with enhancement of resistant starch content. The native starch showed A-type X-ray diffraction pattern, whereas RS products exhibited B-type pattern with strong intensity at the peak of 17.2°C 2θ and two board peak at 20.1 and 23.9°C 2θ. The transformation enthalpy of the second peak increased gradually with increasing RS content and the transformation peak temperature and Tc-T0 was also similar to this trend.

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Available abstract

Corn starch was subjected to enzymatic biotechnology with thermostable α-amylase and pullulanase and followed by retrogradation, to prepare resistant starch. The properties of selected resistant starch (RS) samples were also investigated. The result showed that, appropriate amount (0.5 U/g) of thermostable α-amylase was good for resistant starch formation. The optimal condition for pullulanase hydrolysis was carried out with 0.8 PUN/g (dry starch) pullulanase in pH 5.5 starch gel at 60°C for 12 h. The highest yield of resistant starch could be obtained (19.02%) under optimal condition. The effect of pullulanase on resistant starch formation was the most significant. Compared with native starch, amylose content was increased by 17.0 to 28.1% and it did not increased with enhancement of resistant starch content. The native starch showed A-type X-ray diffraction pattern, whereas RS products exhibited B-type pattern with strong intensity at the peak of 17.2°C 2θ and two board peak at 20.1 and 23.9°C 2θ. The transformation enthalpy of the second peak increased gradually with increasing RS content and the transformation peak temperature and Tc-T0 was also similar to this trend.

Key concepts: Pullulanase, Starch, Amylose, Retrogradation (starch), Food science, Amylase, Resistant starch, Hydrolysis

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