首页> 外文期刊>Applied Biochemistry and Biotechnology >Response Surface Methodology as an Approach to Determine Optimal Activities of Lipase Entrapped in Sol–Gel Matrix Using Different Vegetable Oils
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Response Surface Methodology as an Approach to Determine Optimal Activities of Lipase Entrapped in Sol–Gel Matrix Using Different Vegetable Oils

机译:响应面法作为确定使用不同植物油的溶胶-凝胶基质中截留的脂肪酶最佳活性的方法

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摘要

The conditions for maximization of the enzymatic activity of lipase entrapped in sol–gel matrix were determined for different vegetable oils using an experimental design. The effects of pH, temperature, and biocatalyst loading on lipase activity were verified using a central composite experimental design leading to a set of 13 assays and the surface response analysis. For canola oil and entrapped lipase, statistical analyses showed significant effects for pH and temperature and also the interactions between pH and temperature and temperature and biocatalyst loading. For the olive oil and entrapped lipase, it was verified that the pH was the only variable statistically significant. This study demonstrated that response surface analysis is a methodology appropriate for the maximization of the percentage of hydrolysis, as a function of pH, temperature, and lipase loading.
机译:使用实验设计确定了对于不同植物油而言,最大程度提高了溶胶-凝胶基质中截留的脂肪酶的酶促活性的条件。使用中央复合实验设计验证了pH,温度和生物催化剂负载量对脂肪酶活性的影响,该设计可进行13组测定和表面响应分析。对于低芥酸菜子油和截留的脂肪酶,统计分析显示出对pH和温度的显着影响,以及pH和温度,温度与生物催化剂负载之间的相互作用。对于橄榄油和残留的脂肪酶,已证实pH值是唯一具有统计学意义的变量。这项研究表明,响应表面分析是一种适用于最大化水解百分比(取决于pH,温度和脂肪酶负荷)的方法。

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