反应介质对假单胞菌糖脂提取过程的影响

G. Midyana, T. Pokynbroda, O. Karpenko, I. Semeniuk, O. Pal’chikova
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引用次数: 0

摘要

微生物合成生物源性表面活性产物的分离工艺优化是现代化学和生物技术的现实问题。研究了金黄色假单胞菌NB-1和荧光假单胞菌8573培养液上清液中表面活性糖脂的提取工艺。在生产生物表面活性剂的过程中,最成问题的阶段是从培养液中分离生物表面活性剂。即使优化了生物合成,生产效率在很大程度上取决于分离目标产物的合理方法。在这方面,越来越需要优化生物表面活性剂的分离工艺。它主要从上清液中分离生物表面活性剂,将其转移到有机溶剂中。然而,生物表面活性剂具有复杂的结构;因此,从金黄色假单胞菌NB-1和荧光假单胞菌8573菌株的培养物中提取糖脂,利用多参数线性能量方程充分表征了有机溶剂的性质。确定了溶剂的碱度是影响两种菌株培养液中糖脂提取过程的主要因素。结果表明,醇和酯是合理的糖脂提取剂,这可以解释为,在酯的情况下,酯基的溶剂化,在醇的情况下,由于氢键的形成。这种效应与醇的烷基链和糖脂分子的β-氧化酸的平行位置有关。研究结果对正确选择最佳提取剂,获得具有新前景的生物技术产品具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE INFLUENCE OF THE REACTION MEDIUM ON THE EXTRACTION PROCESS OF GLYCOLIPIDS OF THE PSEUDOMONAS BACTERIA
Optimization of the technology of isolation of biogenic surface-active products of microbial synthesis is an actual problem of modern chemistry and biotechnology. In this work, the processes of extraction of surface-active glycolipids from the cultural liquid supernatant of bacterial strains Pseudomonas aureofaciens NB-1 and Pseudomonas fluorescens 8573 were investigated. The most problematic stage in the production of biosurfactants is their isolation from the culture liquid. Even with optimized biosynthesis, the production efficiency depends heavily on rational methods of isolation of the target products. In this connection, there is a growing need for the optimization of the processes of isolation of biosurfactants. It main isolate biosurfactants from the supernatant to transfer them the of an organic solvent. However, biosurfactants have a complex structure; therefore, their extraction is important and difficult established, extraction of glycolipids from the cultural of Pseudomonas aureofaciens NB-1 and Pseudomonas fluorescens 8573 strains adequately the properties of organic solvents by means of the multiparameter linear energy equations. the it was established that the basicity of the solvents is the main characteristic, that effects on the process extraction of glycolipids from cultural liquids of both strains. It was shown that alcohols and esters are rational extracting agents for the glycolipids, which can be explained, in the case of esters, by the solvation of the ester group and, in the case of alcohols, due to the formation of hydrogen bonds. This effect is related to the parallel position of the alkyl chains of alcohol and β-oxidecanoic acid of the glycolipid molecule. The obtained results of carried out research have a great importance for the correct selection of the optimal extracting agents for obtaining of new perspective biotechnological products.
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