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利用超声辅助的三相分离技术从[具体来源未给出]中提取微藻蛋白。

Microalgal Protein Extraction From Using Triphasic Partitioning Technique With Sonication.

作者信息

Chia Shir Reen, Chew Kit Wayne, Zaid Hayyiratul Fatimah Mohd, Chu Dinh-Toi, Tao Yang, Show Pau Loke

机构信息

Department of Chemical and Environmental Engineering, Faculty of Science and Engineering, University of Nottingham Malaysia, Semenyih, Malaysia.

Faculty of Science and Engineering, School of Mathematical Sciences, University of Nottingham Malaysia, Semenyih, Malaysia.

出版信息

Front Bioeng Biotechnol. 2019 Dec 6;7:396. doi: 10.3389/fbioe.2019.00396. eCollection 2019.

Abstract

Green microalgae containing various bioactive compounds and macronutrients such as lipids, carbohydrates, and proteins, have attracted much attention from the global community. Microalgae has the potential to be applied in food industries due to its high protein content, rapid growth rate, and ability to survive in harsh conditions. This study presents a simple yet efficient technique of sonication-assisted triphasic partitioning process, also known as ultrasonic-assisted three phase partitioning (UATPP), for the extraction of proteins from FSP-E. Comparison studies between three phase partitioning (TPP) and UATPP was conducted to investigate the feasibility of the enhanced technique on proteins extraction. Types of salt, ratio of slurry to t-butanol, salt saturation, sonication frequency, power, irradiation time, and duty cycle as well as biomass loading were studied. UATPP was found to be an improved technique compared to TPP. An optimum separation efficiency and yield of 74.59 ± 0.45 and 56.57 ± 3.70% was obtained, respectively, with the optimized conditions: salt saturation (50%), slurry to t-butanol ratio (1:2), sonication power (100%), irradiation time (10 min), frequency (35 kHz), duty cycle (80%) and biomass loading (0.75 wt%). A scaled-up study was performed to validate the reliability of UATPP for protein extraction. The outcome of the study revealed that UATPP is an attractive approach for downstream processing of microalgae.

摘要

含有各种生物活性化合物以及脂质、碳水化合物和蛋白质等大量营养素的绿色微藻,已引起全球各界的广泛关注。微藻因其蛋白质含量高、生长速度快以及能在恶劣条件下生存的能力,具有应用于食品工业的潜力。本研究提出了一种简单而有效的超声辅助三相分配法,也称为超声辅助三相分离法(UATPP),用于从FSP - E中提取蛋白质。进行了三相分离法(TPP)和UATPP之间的比较研究,以探讨这种强化技术在蛋白质提取方面的可行性。研究了盐的类型、浆料与叔丁醇的比例、盐饱和度、超声频率、功率、辐照时间、占空比以及生物质负载量。结果发现,与TPP相比,UATPP是一种改进的技术。在优化条件下:盐饱和度(50%)、浆料与叔丁醇比例(1:2)、超声功率(100%)、辐照时间(10分钟)、频率(35千赫兹)、占空比(80%)和生物质负载量(0.75重量%),分别获得了74.59±0.45和56.57±3.70%的最佳分离效率和产率。进行了放大研究以验证UATPP用于蛋白质提取的可靠性。研究结果表明,UATPP是微藻下游加工的一种有吸引力的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/100a/6908848/4e415938ac1b/fbioe-07-00396-g0001.jpg

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