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Optimal immobilization of β-glucosidase into chitosan beads using response surface methodology

机译:使用响应面方法将β-葡萄糖苷酶最佳固定在壳聚糖珠中

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Background: β-Glucosidase is known as an effective catalyst for the hydrolysis of various glycosides and immobilization is one of the most efficient strategies to improve its activity recovery and properties.Results: Crosslinking-adsorption-crosslinking method was employed to immobilize β-glucosidase into chitosan beads and response surface methodology (RSM) was used to optimize the immobilized conditions of the maximum activity recovery. Enzyme concentration and adsorption time were found to be significant influence factors, and the maximum activity recovery (50.75%) obtained from response surface methodology was in excellent agreement with experimental value (50.81%). Furthermore, various characteristics of immobilized β-glucosidase were evaluated. Compared to the free β-glucosidase, the immobilized enzyme exhibited broader pH and temperature ranges, enhanced thermal stability, better storage stability and reusability and higher accessibility of the substrate to the immobilized β-glucosidase.Conclusion: Response surface methodology (RSM) was proved to be much economical for optimum immobilization of β-glucosidase into chitosan beads.
机译:背景:β-葡萄糖苷酶被认为是一种有效的各种糖苷水解催化剂,固定化是提高其活性回收率和性能的最有效策略之一。结果:采用交联-吸附-交联法将β-葡萄糖苷酶固定化为壳聚糖珠和响应表面方法(RSM)用于优化最大活性回收率的固定条件。发现酶的浓度和吸附时间是重要的影响因素,响应面法获得的最大活性回收率(50.75%)与实验值(50.81%)非常吻合。此外,评价了固定化的β-葡萄糖苷酶的各种特性。与游离的β-葡糖苷酶相比,固定化的酶具有更宽的pH和温度范围,更高的热稳定性,更好的储存稳定性和可重复使用性以及底物对固定化的β-葡糖苷酶的可及性。对于将β-葡萄糖苷酶最佳固定在壳聚糖珠粒上来说是非常经济的。

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