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电化学渗透辅助双液相浮选体系从角毛藻中提取岩藻黄质。

Extraction of fucoxanthin from Chaetoceros calcitrans by electropermeabilization-assisted liquid biphasic flotation system.

机构信息

Faculty of Applied Sciences, UCSI University, UCSI Heights, 56000 Cheras, Kuala Lumpur, Malaysia; Department of Chemical and Environmental Engineering, Faculty of Science and Engineering, University of Nottingham Malaysia, Jalan Broga, Semenyih 43500, Selangor Darul Ehsan, Malaysia.

Chemical Engineering Discipline and Advanced Engineering Platform, School of Engineering, Monash University Malaysia, Jalan Lagoon Selatan, Bandar Sunway 47500, Selangor Darul Ehsan, Malaysia.

出版信息

J Chromatogr A. 2022 Apr 12;1668:462915. doi: 10.1016/j.chroma.2022.462915. Epub 2022 Feb 20.

Abstract

Electropermeabilization-assisted liquid biphasic flotation (LBF) system is an emerging extraction system facilitated by the adsorptive bubble separation and the electroporation in an aqueous two-phase medium. This integrative extraction system is well suited for the direct recovery of intracellular biocompounds from cells without the needs of discrete steps of mid- or down-stream bioprocessing. The potential of electropermeabilization-assisted LBF system in bioseparation was demonstrated in this study by using the diatom Chaetoceros calcitrans (C. calcitrans) as the source of fucoxanthin, which is a promising antioxidant highly demanded by food and pharmaceutical industries. The extraction performances of LBF and electropermeabilization-assisted LBF system were comprehensively evaluated under the optimal operating conditions. Comparatively, the optimized LBF and electropermeabilization-assisted LBF systems achieved the satisfactory yields of fucoxanthin, i.e., 14.78 mg/g and 16.09 mg/g, respectively. The good recovery of fucoxanthin using electropermeabilization-assisted LBF system could be attributed to the higher release of fucoxanthin from the electrotreated C. calcitrans, allowing a higher partition of fucoxanthin to the top phase of LBF system (236.72 as compared to 152.15 from LBF system). In addition, the fucoxanthin extracted suing both methods exhibit satisfactory antioxidant activities. The application of electropermeabilization-assisted LBF system in the extraction of fucoxanthin is a greener and highly efficient bioprocessing route which can be prospectively extended to other biocompound extraction from microalgal sources.

摘要

电穿孔辅助双液相浮选(LBF)系统是一种新兴的萃取系统,它利用吸附性气泡分离和在水相双介质中的电穿孔来实现。这种综合萃取系统非常适合直接从细胞中回收细胞内生物化合物,而不需要中间或下游生物加工的离散步骤。本研究以硅藻(Chaetoceros calcitrans)(C. calcitrans)为原料,通过电穿孔辅助 LBF 系统在生物分离中的应用潜力,展示了这种萃取系统的应用潜力。褐藻黄素是一种很有前途的抗氧化剂,食品和制药行业对其需求量很大。在最佳操作条件下,全面评估了 LBF 和电穿孔辅助 LBF 系统的萃取性能。相比之下,优化后的 LBF 和电穿孔辅助 LBF 系统分别实现了褐藻黄素 14.78mg/g 和 16.09mg/g 的满意收率。电穿孔辅助 LBF 系统能较好地回收褐藻黄素,这可归因于电处理后的 C. calcitrans 中褐藻黄素的更高释放,从而使褐藻黄素更倾向于分配到 LBF 系统的上层相(236.72 比 LBF 系统的 152.15)。此外,两种方法提取的褐藻黄素均表现出满意的抗氧化活性。电穿孔辅助 LBF 系统在褐藻黄素提取中的应用是一种更环保、高效的生物加工方法,有望扩展到从微藻源提取其他生物化合物。

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