H'/> Response surface methodology optimization of partitioning of xylanase form <ce:italic>Aspergillus Niger</ce:italic> by metal affinity polymer-salt aqueous two-phase systems
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Response surface methodology optimization of partitioning of xylanase form Aspergillus Niger by metal affinity polymer-salt aqueous two-phase systems

机译:响应表面方法优化木聚糖酶形式的分配 Aspergillus niger 通过金属亲和聚合物 - 盐水性两相系统

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Highlights ? Purification of xylanase from fermentation broths of Aspergillus Niger by metal affinity partitioning in ATPS. ? Systematic study of the effects of operating parameters on purification behavior. ? Develop a greater understanding of the interaction of the factors and the responses through the partitioning of xylanase in ATPS and optimize the separation system. Abstract Aqueous two phase affinity partitioning system using metal ligands was applied for partitioning and purification of xylanase produced by Aspergillus Niger. To minimization the number of experiments for the design parameters and develop predictive models for optimization of the purification process, response surface methodology (RSM) with a face-centered central composite design (CCF) has been used. Polyethylene glycol (PEG) 6000 was activated using epichlorohydrin, covalently linked to iminodiacetic acid (IDA), and the specific metal ligand Cu was attached to the polyethylene glycol-iminodiacetic acid (PEG-IDA). The influence of some experimental variables such as PEG (10–18%w/w), sodium sulfate (8–12%), PEG-IDA-Cu2+ concentration (0–50% w/w of total PEG), pH of system (4–8) and crude enzyme loading (6–18%w/w) on xylanase and total protein partitioning coefficient, enzyme yield and enzyme specific activity were systematically evaluated. Two optimal point with high enzyme partitioning factor 10.97 and yield 79.95 (including 10% PEG, 12% Na2SO4, 50% ligand, pH 8 and 6% crude enzyme loading) and high specific activity in top phase 42.21 (including 14.73% PEG, 8.02% Na2SO4, 28.43% ligand, pH 7.7 and 6.08% crude enzyme loading) were attained. The adequacy of the RSM models was verified by a good agreement between experimental and predicted results. ]]>
机译:<![cdata [ 突出显示 系统研究操作参数对净化的影响行为。 通过在ATPS中的木聚糖酶分配并优化分离系统来发展对因素的相互作用和响应的更大了解。 抽象 使用金属配体的两相亲和分隔系统用于通过。为了最小化设计参数的实验次数,以及开发用于优化净化过程的预测模型,已经使用了具有面居中的中央复合设计(CCF)的响应面方法(RSM)。使用环氯醇激活聚乙二醇(PEG)6000,与亚单乙酸(IDA)共价连接,并将特定金属配体Cu连接到聚乙二醇 - 亚单乙酸(PEG-IDA)上。一些实验变量如PEG(10-18%w / w),硫酸钠(8-12%),PEG-Ida-Cu:sup =“post”> 2 + 浓度(0-50%W / W总PEG),系统(4-8)的pH和木聚糖酶和总蛋白质分配系数的粗酶负载(6-18%w / w),酶产率和酶比活性系统地评估。具有高酶分配因子10.97的两个最佳点,产量79.95(包括10%PEG,12%NA 2 SO 4 ,50%配体,pH8和6%粗酶负载)和顶部42.21中的高比活性(包括14.73%PEG,8.02%Na 2 SO 4 ,28.43%配体,pH 7.7和6.08%粗酶负载。通过实验和预测结果之间的良好一致性验证了RSM模型的充分性。 ]]>

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