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Evaluation of enzymatic degradation based on the quantification of glucose in thermoplastic starch and its characterization by mechanical and morphological properties and NMR measurements

机译:基于热塑性淀粉中葡萄糖的定量及其机械和形态学特征以及NMR测量的表征来评估酶促降解

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摘要

Biodegradable polymers represent a promising solution to the environmental problem of plastic waste disposal. Among the candidate polymers, starch, a low-cost natural polymer, can be processed as a thermoplastic. In this work, thermoplastic starch containing glycerol (20, 30 or 40 wt%) was prepared by extrusion. The mechanical properties of the blends were assessed by tensile stress at break, elongation at break and Young's modulus. Nuclear magnetic resonance (NMR), through proton spin-lattice relaxation (T1H) measurements, was used to understand the molecular dynamic of the samples. The morphology of the films was assessed by electron scanning microscopy (SEM). The susceptibility to enzymatic degradation was assessed in films incubated with alpha-amylase in acetate buffer. The loss of mass was determined after 1, 2, 3, 6, 9, 12 and 24 h of enzymatic digestion. The results obtained showed that all of the mechanical properties were improved by the addition of 20% glycerol, but decreased with higher concentrations of glycerol. The amount of free glucose released into the solution during digestion was quantified using a commercial glucose kit. Starch containing 40% glycerol degraded faster than the other blends, because it facilitated the efficiency of the gelatinization process and also the phase separation, as shown by the proton spin-lattice relaxation time. The amount of glucose released was directly proportional to the glycerol content of the samples. These results suggested a short lifetime for this blend, which is in agreement with the values of the T1H relaxation parameter that suggests a decrease of the average molecular weight. (C) 2008 Elsevier Ltd. All rights reserved.
机译:可生物降解的聚合物代表了解决塑料废物处理环境问题的有希望的解决方案。在候选聚合物中,淀粉(一种低成本的天然聚合物)可以加工为热塑性塑料。在这项工作中,通过挤出制备了含有甘油(20、30或40重量%)的热塑性淀粉。共混物的机械性能通过断裂拉伸应力,断裂伸长率和杨氏模量来评估。通过质子自旋晶格弛豫(T1H)测量的核磁共振(NMR)用于了解样品的分子动力学。膜的形态通过电子扫描显微镜(SEM)评估。在醋酸盐缓冲液中与α-淀粉酶一起孵育的薄膜中评估了酶降解的敏感性。在1、2、3、6、9、12和24小时的酶消化后测定质量损失。所获得的结果表明,通过添加20%的甘油可以改善所有的机械性能,但是当甘油浓度更高时,所有的机械性能都会降低。使用商业化的葡萄糖试剂盒定量消化过程中释放到溶液中的游离葡萄糖的量。含有40%甘油的淀粉降解速度比其他掺合物快,因为它促进了糊化过程的效率以及相分离(质子自旋晶格弛豫时间表明)。释放的葡萄糖量与样品中的甘油含量成正比。这些结果表明该共混物的寿命短,这与表明平均分子量降低的T1H弛豫参数的值一致。 (C)2008 Elsevier Ltd.保留所有权利。

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