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Preparation of low-molecular-weight and high-sulfate-content chitosans under microwave radiation and their potential antioxidant activity in vitro

机译:微波辐射下低分子量高硫酸盐壳聚糖的制备及其体外抗氧化活性

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In the present paper microwave radiation has been used to introduce N-sulfo and O-sulfo groups into chitosan with a high degree of substitution and low-molecular weight.The sulfation of chitosan was performed in microwave ovens.It was found that microwave heating is a convenient way to obtain a wide range of products of different degrees of substitution and molecular weight only by changing reaction time or/and radiation power.Moreover,microwave radiation accelerated the degradation of sul-fated chitosan,and the molecular weight of sulfated chitosan was considerably lower than that obtained by traditional heating.There are no differences in the chemical structure of sulfated chitosan obtained by microwave and by conventional technology.FTIR and ~(13)C NMR spectral analyses demonstrated that a significantly shorter time is required to obtain a satisfactory degree of substitution and molecular weight by microwave radiation than by conventional technology.In this present paper,we also determined antioxidant activity of low-molecular-weight and high-sulfate-content chitosans(LCTS).The results showed LCTS could scavenge superoxide and hydroxyl radical.Its IC_(50)is 0.025 and 1.32mg/mL,respectively.It is a potential antioxidant in vitro.
机译:本文利用微波辐射将N-磺基和O-磺基引入取代度高,分子量低的壳聚糖中,在微波炉中进行壳聚糖的硫酸化,发现微波加热是仅通过改变反应时间或/和辐射功率即可获得各种取代度和分子量不同的产物的简便方法。此外,微波辐射加速了磺化壳聚糖的降解,硫酸化壳聚糖的分子量为微波和常规技术制得的硫酸壳聚糖的化学结构没有差异.FTIR和〜(13)C NMR光谱分析表明,获得令人满意的硫酸盐所需的时间明显缩短。微波辐射的取代度和分子量要比传统技术高。在本文中,我们还研究了降低了低分子量和高硫酸盐含量的壳聚糖的抗氧化活性。结果表明,LCTS可以清除超氧化物和羟基自由基,其IC_(50)分别为0.025和1.32mg / mL。体外抗氧化剂。

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