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Biomass Extraction Using Non-Chlorinated Solvents for Biocompatibility Improvement of Polyhydroxyalkanoates

机译:使用非氯化溶剂提取生物质以改善聚羟基链烷酸酯的生物相容性

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摘要

An economically viable method to extract polyhydroxyalkanoates (PHAs) from cells is desirable for this biodegradable polymer of potential biomedical applications. In this work, two non-chlorinated solvents, cyclohexanone and γ-butyrolactone, were examined for extracting PHA produced by the bacterial strain Cupriavidus necator H16 cultivated on vegetable oil as a sole carbon source. The PHA produced was determined as a poly(3-hydroxybutyrate) (PHB) homopolyester. The extraction kinetics of the two solvents was determined using gel permeation chromatography (GPC). When cyclohexanone was used as the extraction solvent at 120 °C in 3 min, 95% of the PHB was recovered from the cells with a similar purity to that extracted using chloroform. With a decrease in temperature, the recovery yield decreased. At the same temperatures, the recovery yield of γ-butyrolactone was significantly lower. The effect of the two solvents on the quality of the extracted PHB was also examined using GPC and elemental analysis. The molar mass and dispersity of the obtained polymer were similar to that extracted using chloroform, while the nitrogen content of the PHB extracted using the two new solvents was slightly higher. In a nutshell, cyclohexanone in particular was identified as an expedient candidate to efficiently drive novel, sustainable PHA extraction processes.
机译:对于这种具有潜在生物医学应用的可生物降解的聚合物,需要一种从细胞中提取聚羟基链烷酸酯(PHA)的经济可行的方法。在这项工作中,检查了两种非氯化溶剂,环己酮和γ-丁内酯,以提取由种植在植物油中作为唯一碳源的细菌铜杯菌(Cupriavidus necator)H16产生的PHA。测定产生的PHA为聚(3-羟基丁酸酯)(PHB)均聚酯。使用凝胶渗透色谱法(GPC)确定两种溶剂的萃取动力学。当在120°C下于3分钟内将环己酮用作提取溶剂时,从细胞中回收到95%的PHB,其纯度与使用氯仿提取的PHB相似。随着温度降低,回收率降低。在相同温度下,γ-丁内酯的回收率明显降低。还使用GPC和元素分析检查了这两种溶剂对提取的PHB品质的影响。所得聚合物的摩尔质量和分散度与使用氯仿萃取的摩尔质量和分散度相似,而使用两种新溶剂萃取的PHB的氮含量略高。简而言之,特别是环己酮被认为是有效驱动新型,可持续的PHA提取过程的权宜之选。

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