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Synthesis of Benzyl Acetate Catalyzed by Lipase Immobilized in Nontoxic Chitosan-Polyphosphate Beads

机译:脂肪酶固定在无毒壳聚糖 - 多磷酸盐珠粒中催化的乙酸苄酯的合成

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摘要

Enzymes serve as biocatalysts for innumerable important reactions, however, their application has limitations, which can in many cases be overcome by using appropriate immobilization strategies. Here, a new support for immobilizing enzymes is proposed. This hybrid organic-inorganic support is composed of chitosana natural, nontoxic, biodegradable, and edible biopolymerand sodium polyphosphate as the inorganic component. Lipase B from Candida antarctica (CALB) was immobilized on microspheres by encapsulation using these polymers. The characterization of the composites (by infrared spectroscopy, thermogravimetric analysis, and confocal Raman microscopy) confirmed the hybrid nature of the support, whose external part consisted of polyphosphate and core was composed of chitosan. The immobilized enzyme had the following advantages: possibility of enzyme reuse, easy biocatalyst recovery, increased resistance to variations in temperature (activity declined from 60 degrees C and the enzyme was inactivated at 80 degrees C), and increased catalytic activity in the transesterification reactions. The encapsulated enzymes were utilized as biocatalysts for transesterification reactions to produce the compound responsible for the aroma of jasmine.
机译:酶用作无数重要反应的生物催化剂,然而,它们的应用具有局限性,可以在许多情况下通过使用适当的固定策略来克服。在此,提出了一种对固定酶的新支持。该杂种有机无机载体由赤皮素天然,无毒,可生物降解和可食用的生物聚糖和可食用的生物磷酸钠组成,作为无机组分。通过使用这些聚合物包封,通过包封固定来自Candida抗野生菌(CALB)的脂肪酶B通过包封固定在微球上。复合材料的表征(通过红外光谱,热重分析和共聚焦拉曼显微镜)证实了支撑件的杂化性质,其外部部分由多磷酸盐和核心组成由壳聚糖组成。固定化的酶具有以下优点:酶再利用的可能性,易于生物催化恢复,耐温变化的抗性增加(从60℃下降,酶在80℃下灭活),并在酯交换反应中增加催化活性。将包封的酶作为生物催化剂用于酯交换反应,以产生负责茉莉花香气的化合物。

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