Department of Food Science and Technology, University of Kashmir, Srinagar, 190006, India.
Department of Food Science and Technology, University of Kashmir, Srinagar, 190006, India.
Int J Biol Macromol. 2018 Jan;106:140-147. doi: 10.1016/j.ijbiomac.2017.08.013. Epub 2017 Aug 4.
Oat starches from three different varieties were treated with combination of β-amylase and transglucosidase and their structural, rheological, thermal, and digestibility through simulated GI tract conditions were investigated. By dual enzyme modification, the granules form a discontinuous compact fibrous structure with many surface cracks. The transformation from A-type to A+V type pattern with decrease in crystallinity was observed in dual enzyme modified starches. The ratio of intensity, 1047/1022cm and 995/1022cm of enzyme modified starches were reduced compared to their native ones as revealed from FTIR spectra. The resistant starch (RS3) content was increased to 35.81-48.88% from 17.14-23.9%. The viscosity of starches decreased on enzymatic treatment, exhibited shear-thinning behavior as reflected from the convex shaped graph. Also, dual enzyme treatment of starches resulted in significant decrease in amount of glucose release for Sabzaar than SKO20 and SKO90. The increase of RS observed in this study is associated with enhanced branch density and RS3 crystallites.
用β-淀粉酶和转葡糖苷酶对三种不同品种的燕麦淀粉进行复合处理,并通过模拟胃肠道条件研究其结构、流变学、热学和消化性。通过双酶修饰,颗粒形成具有许多表面裂纹的不连续致密纤维结构。在双酶修饰淀粉中观察到从 A 型到 A+V 型的转变,结晶度降低。与天然淀粉相比,酶修饰淀粉的 1047/1022cm 和 995/1022cm 强度比降低,表明 FTIR 光谱中存在这种变化。抗性淀粉(RS3)含量从 17.14%-23.9%增加到 35.81%-48.88%。淀粉经酶处理后黏度降低,从凸形图可以看出具有剪切变稀行为。此外,与 SKO20 和 SKO90 相比,双酶处理的萨扎尔淀粉的葡萄糖释放量显著减少。本研究中观察到的 RS 增加与支化密度和 RS3 结晶度的提高有关。