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首页> 外文期刊>Journal of Bioscience and Bioengineering >Using response surface methodology to optimize process parameters and cross-linking agents for production of combined-cross-linked bovine serum albumin gels
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Using response surface methodology to optimize process parameters and cross-linking agents for production of combined-cross-linked bovine serum albumin gels

机译:使用响应表面方法优化工艺参数和交联剂,以生产结合交联的牛血清白蛋白凝胶

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D-optimal design was employed to optimize the mixture of cross-linking agents formulation: microbial transglutaminase (MTGase) and ribose, and the processing parameters (i.e. incubation and heating time) in the mixture in order to obtain combined-cross-linked bovine serum albumin gels that have high gel strength, pH close to neutral and yet medium in browning. Analysis of variance (ANOVA) showed that the contribution of quadratic term to the model over the linear was significant for pH and L* value, whereas linear model was significant for gel strength. Optimization study using response surface methodology (RSM) was performed to the mixture components and process variables and the optimum conditions obtained were: MTGase of 1.34-1.43 g/100 mL, ribose of 1.07-1.16 g/100 mL, incubation time of 5 h at 40°C and heating time of 3 h at 90°C.
机译:D-最优设计用于优化交联剂配方的混合物:微生物转谷氨酰胺酶(MTGase)和核糖,以及混合物中的加工参数(即温育和加热时间),以获得组合交联的牛血清白蛋白凝胶,具有很高的凝胶强度,pH值接近中性,但褐变中等。方差分析(ANOVA)表明,二次项对模型的贡献超过线性对pH和L *值均显着,而线性模型对凝胶强度具有重要意义。使用响应表面方法(RSM)对混合物成分和工艺变量进行了优化研究,获得的最佳条件为:MTGase为1.34-1.43 g / 100 mL,核糖为1.07-1.16 g / 100 mL,孵育时间为5 h在40°C下加热,在90°C下加热3小时。

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