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首页> 外文期刊>Pharmacognosy magazine >Culture Conditions for Production of Biomass, Adenosine, and Cordycepin from Cordyceps sinensis CS1197: Optimization by Desirability Function Method
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Culture Conditions for Production of Biomass, Adenosine, and Cordycepin from Cordyceps sinensis CS1197: Optimization by Desirability Function Method

机译:冬虫夏草CS1197生产生物质,腺苷和虫草素的培养条件:理想功能法的优化

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摘要

Background: Cordyceps sinensis (CS) is a traditional Chinese medicine contains potent active metabolites such as nucleosides and polysaccharides. The submerged cultivation technique is studied for the large scale production of CS for biomass and metabolites production. Objective: To optimize culture conditions for large-scale production of CS1197 biomass and metabolites production. Materials and Methods: The CS1197 strain of CS was isolated from dead larvae of natural CS and the authenticity was assured by the presence of two major markers adenosine and cordycepin by high performance liquid chromatography and mass spectrometry. A three-level Box-Behnken design was employed to optimize process parameters culturing temperature, pH, and inoculum volume for the biomass yield, adenosine and cordycepin. The experimental results were regressed to a second-order polynomial equation by a multiple regression analysis for the prediction of biomass yield, adenosine and cordycepin production. Multiple responses were optimized based on desirability function method. Results: The desirability function suggested the process conditions temperature 28°C, pH 7 and inoculum volume 10% for optimal production of nutraceuticals in the biomass. The water extracts from dried CS1197 mycelia showed good inhibition for 2 diphenyl-1-picrylhydrazyl and 2,2-azinobis-(3-ethyl-benzo-thiazoline-6-sulfonic acid-free radicals. Conclusion: The result suggests that response surface methodology-desirability function coupled approach can successfully optimize the culture conditions for CS1197. SUMMARY Authentication of CS1197 strain by the presence of adenosine and cordycepin and culturing period was determined to be for 14 days Content of nucleosides in natural CS was found higher than in cultured CS1197 mycelium Box-Behnken design to optimize critical cultural conditions: temperature, pH and inoculum volume Water extract showed better antioxidant activity proving credible source of natural antioxidants.
机译:背景:冬虫夏草(CS)是一种中药,含有有效的活性代谢产物,如核苷和多糖。研究了用于生物质和代谢产物的CS大规模生产的深层栽培技术。目的:优化大规模生产CS1197生物质和代谢产物的培养条件。材料与方法:从天然CS的死幼虫中分离CS的CS1197菌株,并通过高效液相色谱和质谱分析两种主要标志物腺苷和虫草素的存在来确保其真实性。采用三级Box-Behnken设计来优化工艺参数,以培养温度,pH值和接种量,以达到生物量,腺苷和虫草素的产量。通过多元回归分析将实验结果回归到二阶多项式方程,以预测生物量产量,腺苷和虫草素的产生。基于期望函数法优化了多个响应。结果:理想功能表明工艺条件温度为28°C,pH为7,接种量为10%,以在生物质中最佳生产保健食品。干燥的CS1197菌丝体的水提取物对2个二苯基-1-吡啶并肼基和2,2-氮杂双-(3-乙基-苯并噻唑啉-6-磺酸-游离基)具有良好的抑制作用。函数合宜的方法可以成功地优化CS1197的培养条件总结通过腺苷和虫草素的存在对CS1197菌株的鉴定以及培养期确定为14天,发现天然CS中的核苷含量高于培养的CS1197菌丝体Box-Behnken设计可优化关键的培养条件:温度,pH和接种量水提取物显示出更好的抗氧化活性,证明了天然抗氧化剂的可靠来源。

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