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β-Xylosidase Recovery by Reversed Micelles: Use of Cationic Surfactant

机译:反向胶束回收β-木糖苷酶:使用阳离子表面活性剂

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β-Xylosidase, an enzyme produced by Penicillium janthinellum fungus, was prepurified by fractionated precipitation with ethanol and extracted by reversed micelles of N-benzyl-N-dodecyl-N-bis(2-hydroxyethyl) ammonium chloride (BDBAC) cationic surfactant. A 2~(5-1) fractional factorial design was employed to evaluate the influence of the following factors on the enzyme extraction: pH (A), conductivity (B), surfactant concentration (C), cosolvent concentration (D) and temperature (E). A statistical analysis of the results revealed that, of the five variables studied, pH, surfactant concentration, and temperature had significant main effects (p < 0.05) on the recovery of β-xylosidase (Y). However, the interactions between pH and temperature, conductivity and cosolvent concentration, conductivity and temperature, BDBAC concentration and temperature also had significant influences. A first-order model (R~2 = 0.98) expressed by the equation Y = 7.73 - 5.55A - 0.67B + 3.49C - 0.41D + 5.26E + 2.05AB - 3.26AC + 0.96AD - 7.07AE - 3.93BD - 2.19BE + 0.99CD + 0.78CE was proposed to represent the enzyme recovery as a function of the effects that were really significant. This model predicts a recovery value of about 40%, which is similar to that obtained experimentally (39.5%).
机译:β-木糖苷酶(一种由黄连青霉菌真菌产生的酶)通过用乙醇分级沉淀进行预纯化,然后用N-苄基-N-十二烷基-N-双(2-羟乙基)氯化铵(BDBAC)阳离子表面活性剂的反胶束萃取。采用2〜(5-1)分数阶乘设计来评估以下因素对酶提取的影响:pH(A),电导率(B),表面活性剂浓度(C),助溶剂浓度(D)和温度( E)。对结果的统计分析表明,在所研究的五个变量中,pH,表面活性剂浓度和温度对β-木糖苷酶(Y)的回收率具有重要的主要影响(p <0.05)。但是,pH和温度,电导率和助溶剂浓度,电导率和温度,BDBAC浓度和温度之间的相互作用也有显着影响。由公式Y = 7.73-5.55A-0.67B + 3.49C-0.41D + 5.26E + 2.05AB-3.26AC + 0.96AD-7.07AE-3.93BD-表示的一阶模型(R〜2 = 0.98)提出了2.19BE + 0.99CD + 0.78CE来表示酶回收率与实际作用的关系。该模型预测回收率约为40%,与实验获得的回收率相似(39.5%)。

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