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首页> 外文期刊>Separation and Purification Technology >Pilot-scale aqueous two-phase floatation for direct recovery of lipase derived from Burkholderia cepacia strain ST8
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Pilot-scale aqueous two-phase floatation for direct recovery of lipase derived from Burkholderia cepacia strain ST8

机译:中试水两相浮选法直接回收洋葱伯克霍尔德菌菌株ST8衍生的脂肪酶

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摘要

The efficient and economical pilot-scale production of lipase is necessary for meeting the growing demand of lipase especially in bioprocessing industry. Aqueous two-phase flotation (ATPF) is a purification technique that can be applied in the recovery and purification of biomolecules. ATPF is based on a combination of aqueous two-phase systems (ATPS) and solvent sublation (SS). In this report lipase was recovered and purified from the fermentation broth of Burkholderia cepacia (B. cepacia) using an alcohol/salt ATPF system on a pilot scale. The working parameters of ATPF, including concentration of crude lipase feedstock, types of alcohol and salt, concentrations of alcohol and salt, volumes of buffer solution and alcohol, were investigated for their effects on the partitioning behavior of lipase in ATPF. ATPF comprised of 1-propanol and ammonium sulphate was successfully established for feasible and cost effective separation of B. cepacia ST8 lipase from liquid fermentation broth. The alcohol/salt ATPF system showed a purification factor of 12.2, a separation efficiency of 93% and a selectivity of 40. Furthermore, a comparison has been made between small-scale and large-scale ATPF production. Our results showed that this novel pilot-scale ATPF has the potential to be applied at industrial scale. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了满足脂肪酶的增长需求,尤其是在生物加工行业中,高效而经济的脂肪酶中试规模生产是必要的。水两相浮选(ATPF)是一种纯化技术,可用于生物分子的回收和纯化。 ATPF基于水相两相系统(ATPS)和溶剂升华(SS)的组合。在该报告中,使用酒精/盐ATPF系统以中试规模从洋葱伯克霍尔德氏菌(洋葱伯克霍尔德氏菌)的发酵液中回收并纯化了脂肪酶。研究了ATPF的工作参数,包括粗脂肪酶原料的浓度,酒精和盐的类型,酒精和盐的浓度,缓冲溶液和酒精的体积,它们对脂肪酶在ATPF中的分配行为的影响。成功建立了由1-丙醇和硫酸铵组成的ATPF,用于从液体发酵液中分离出洋葱伯克霍尔德菌ST8脂肪酶的可行性和成本效益。醇/盐ATPF系统显示出12.2的纯化因子,93%的分离效率和40的选择性。此外,在小规模和大规模ATPF生产之间进行了比较。我们的结果表明,这种新型的中试规模ATPF具有在工业规模上应用的潜力。 (C)2016 Elsevier B.V.保留所有权利。

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