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首页> 外文期刊>Indian journal of chemical technology >Immobilization of fungal cellulase on chitosan beads and its optimization implementing response surface methodology
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Immobilization of fungal cellulase on chitosan beads and its optimization implementing response surface methodology

机译:对壳聚糖珠粒进行真菌纤维素酶的固定及其优化实施响应面方法

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The present study deals with the immobilization of cellulase produced from our isolated fungus Aspergillus niger ISSFR-019 on different matrices of which chitosan beads has been found to be the most suitable one. The optimization of the amount of cellulase, amount of beads, temperature and amount of glutaraldehyde used as a cross-linking agent for the procurement of maximum immobilization efficiency has been done on the basis of statistical approach BBD (Box-Behnken Design). Cellulase is found to be successfully immobilized on the chitosan bead surface, with 94.2% efficiency and immobilization yield is found to be 54.1% after statistical optimization. Significant enzymatic activity is recorded after 12 cycles of reuse of the beads. The kinetic study revealed that the Michael’s Menten constant (K m ) is found to be 1.3 mM and 2 mM for free enzyme and immobilized enzyme respectively, the higher Km value for immobilized enzyme indicated conformational change in the enzyme that altered the accessibility of substrate towards the active site of the enzyme. The V max is found to be 2.7 and 4.4 U/mg-1 respectively for the immobilized and free enzyme. Fourier Transform Infrared Spectroscopy studies revealed the change in absorbance of functional groups when the enzyme is bound to chitosan beads.
机译:本研究涉及从我们的孤立的真菌曲霉患者产生的纤维素酶的固定,在不同的基质上被发现是最合适的壳聚糖珠粒的不同基质。在统计方法BBD(Box-Behnken Design)的基础上进行了用作用于采购最大固定效率的交联试剂的纤维素酶,珠子,温度和量的纤维素量的量。发现纤维素酶在壳聚糖珠表面上成功地固定,94.2%的效率和固定产率在统计优化后发现为54.1%。在12个循环的珠子的重用后记录了显着的酶活性。动力学研究表明,对于游离酶和固定化酶,发现迈克尔的静脉恒定(K m)为1.3mm和2mm,其固定化酶的高km值表明酶的构象变化,可改变基材的可达性朝向酶的活性位点。对于固定化和游离酶,v max分别发现为2.7和4.4u / mg-1。傅里叶变换红外光谱研究揭示了当酶与壳聚糖珠结合时官能团的吸光度变化。

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