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利用脉冲电场从螺旋藻中提取 C-藻蓝蛋白。

C-phycocyanin extraction assisted by pulsed electric field from Artrosphira platensis.

机构信息

Tecnología de los Alimentos, Facultad de Veterinaria, Universidad de Zaragoza, C/Miguel Servet, 177, 50013, Spain.

Tecnología de los Alimentos, Facultad de Veterinaria, Universidad de Zaragoza, C/Miguel Servet, 177, 50013, Spain.

出版信息

Food Res Int. 2017 Sep;99(Pt 3):1042-1047. doi: 10.1016/j.foodres.2016.09.029. Epub 2016 Sep 28.

DOI:10.1016/j.foodres.2016.09.029
PMID:28865615
Abstract

This paper assesses the application of pulsed electric fields (PEF) to the fresh biomass of Artrhospira platensis in order to enhance the extraction of C-phycocyanin into aqueous media. Electroporation of A. platensis depended on both electric field strength and treatment duration. The minimum electric field intensity for detecting C-phycocyanin in the extraction medium was 15kV/cm after the application of a treatment time 150μs (50 pulses of 3μs). However higher electric field strength were required when shorter treatment times were applied. Response surface methodology was used in order to investigate the influence of electric field strength (15-25kV/cm), treatment time (60-150μs), and temperature of application of PEF (10-40°C) on C-phycocyanin extraction yield (PEY). The increment of the temperature PEF treatment reduced the electric field strength and the treatment time required to obtain a given PEY and, consequently decreased the total specific energy delivered by the treatment. For example, the increment of temperature from 10°C to 40°C permitted to reduce the electric field strength required to extract 100mg/g d of C-phycocyanin from 25 to 18kV/cm, and the specific energy input from 106.7 to 67.5kJ/Kg. Results obtained in this investigation demonstrated PEF's potential for selectively extraction C-phycocyanin from fresh A. platensis biomass. The purity of the C-phycocyanin extract obtained from the electroporated cells was higher than that obtained using other techniques based on the cell complete destruction.

摘要

本文评估了脉冲电场 (PEF) 在新鲜鱼腥藻生物质中的应用,以增强 C-藻蓝蛋白向水介质中的提取。鱼腥藻的电穿孔依赖于电场强度和处理时间。在应用 150μs(50 个 3μs 脉冲)的处理时间后,检测到提取介质中 C-藻蓝蛋白的最小电场强度为 15kV/cm。然而,当应用较短的处理时间时,需要更高的电场强度。为了研究电场强度(15-25kV/cm)、处理时间(60-150μs)和脉冲电场处理温度(10-40°C)对 C-藻蓝蛋白提取产率(PEY)的影响,采用了响应面法。PEF 处理温度的升高降低了获得给定 PEY 所需的电场强度和处理时间,从而降低了处理的总比能。例如,温度从 10°C 升高到 40°C,允许将提取 100mg/g d 的 C-藻蓝蛋白所需的电场强度从 25kV/cm 降低到 18kV/cm,比能输入从 106.7kJ/Kg 降低到 67.5kJ/Kg。本研究结果表明,PEF 具有从新鲜鱼腥藻生物质中选择性提取 C-藻蓝蛋白的潜力。与基于细胞完全破坏的其他技术相比,从电穿孔细胞中获得的 C-藻蓝蛋白提取物的纯度更高。

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