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Optimization of flask culture medium and conditions for hyaluronic acid production by a Streptococcus equisimilis mutant nc2168

机译:等温链球菌突变体nc2168的培养瓶培养基和玻尿酸生产条件的优化

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摘要

A mutant designated NC2168, which was selected from wild-type Streptococcus equisimilis CVCC55116 by ultraviolet ray combined with60Co-γ ray treatment and does not produce streptolysin, was employed to produce hyaluronic acid (HA). In order to increase the output of HA in a flask, the culture medium and conditions for NC2168 were optimized in this study. The influence of culture medium ingredients including carbon sources, nitrogen sources and metal ions on HA production was evaluated using factional factorial design. The mathematical model, which represented the effect of each medium component and their interaction on the yield of HA, was established by the quadratic rotary combination design and response surface method. The model estimated that, a maximal yield of HA could be obtained when the concentrations of yeast extract, peptone, glucose, and MgSO4 were set at 3 g/100 mL, 2 g/100 mL, 0.5 g/100 mL and 0.15 g/100 mL, respectively. Compared with the values obtained by other runs in the experimental design, the optimized medium resulted in a remarkable increase in the output of HA and the maximum of the predicted HA production was 174.76 mg/L. The model developed was accurate and reliable for predicting the production of HA by NC2168.Cultivation conditions were optimized by an orthogonal experimental design and the optimal conditions were as follows: temperature 33°C, pH 7.8, agitation speed 200 rpm, medium volume 20 mL.
机译:通过紫外线结合 60 Co-γ射线处理从野生型马链球菌CVCC55116中选出的命名为NC2168的突变体不产生链球菌溶血素,用于生产透明质酸(HA)。为了增加烧瓶中HA的产量,本研究对NC2168的培养基和条件进行了优化。使用派系因子设计评估了培养基成分(包括碳源,氮源和金属离子)对HA产生的影响。通过二次旋转组合设计和响应面法建立了代表每种培养基成分及其相互作用对HA产量的影响的数学模型。该模型估计,将酵母提取物,蛋白one,葡萄糖和MgSO4的浓度分别设置为3 g / 100 mL,2 g / 100 mL,0.5 g / 100 mL和0.15 g / g时,可以获得最大的HA产量。分别为100 mL。与实验设计中其他运行获得的值相比,优化的培养基导致HA产量显着增加,预计的HA产量最大值为174.76 mg / L。通过NC2168预测HA的产生,该模型准确,可靠。通过正交实验设计优化了培养条件,最佳条件如下:温度33°C,pH 7.8,搅拌速度200 rpm,培养基体积20 mL 。

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