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使用低剪切充气搅拌生物反应器,通过 2,5-二甲氧基苯诱导云芝培养生产两种特定漆酶:工艺开发和经济分析。

Using low-shear aerated and agitated bioreactor for producing two specific laccases by trametes versicolor cultures induced by 2,5-xylidine: Process development and economic analysis.

机构信息

Departamento de Biotecnologia, Escola de Engenharia de Lorena, University of Sao Paulo, Lorena, SP, Brazil.

Departamento de Biotecnologia, Escola de Engenharia de Lorena, University of Sao Paulo, Lorena, SP, Brazil.

出版信息

Bioresour Technol. 2024 Jun;401:130737. doi: 10.1016/j.biortech.2024.130737. Epub 2024 Apr 25.

Abstract

Laccase isoforms from basidiomycetes exhibit a superior redox potential compared to commercially available laccases obtained from ascomycete fungi, rendering them more reactive toward mono-substituted phenols and polyphenolic compounds. However, basidiomycetes present limitations for large-scale culture in liquid media, restraining the current availability of laccases from this fungal class. To advance laccase production from basidiomycetes, a newly designed 14-L low-shear aerated and agitated bioreactor provided enzyme titers up to 23.5 IU/mL from Trametes versicolor cultures. Produced enzymes underwent ultrafiltration and LC/MS-MS characterization, revealing the predominant production of only two out of the ten laccases predicted in the T. versicolor genome. Process simulation and economic analysis using SuperPro designer® suggested that T. versicolor laccase could be produced at US$ 3.60/kIU in a 200-L/batch enterprise with attractive economic parameters and a payback period of 1.7 years. The study indicates that new bioreactors with plain design help to produce low-cost enzymes from basidiomycetes.

摘要

担子菌来源的漆酶同工酶的氧化还原电位优于市售的曲霉来源的漆酶,使其对单取代酚和多酚化合物更具反应性。然而,担子菌在液体培养基中的大规模培养存在限制,限制了该真菌类别的漆酶的现有可用性。为了提高担子菌来源的漆酶的产量,一种新设计的 14 升低剪切充气搅拌生物反应器从糙皮侧耳培养物中提供了高达 23.5 IU/mL 的酶效价。所产生的酶经过超滤和 LC/MS-MS 表征,结果表明在糙皮侧耳基因组中预测的十种漆酶中,仅主要生产出两种。使用 SuperPro Designer®进行的过程模拟和经济分析表明,在具有吸引力的经济参数和 1.7 年投资回收期的 200 升/批企业中,每 kIU 成本为 3.60 美元的 T. versicolor 漆酶可以生产。该研究表明,具有简单设计的新型生物反应器有助于从担子菌生产低成本的酶。

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