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评估草酸青霉在摇瓶和台式生物反应器规模下对双氯芬酸的生物降解。

Evaluation of diclofenac biodegradation by the ascomycete fungus Penicillium oxalicum at flask and bench bioreactor scales.

机构信息

Institute of Water Research, University of Granada, Ramón y Cajal, 4, Fray Luis Bldg, ZIP 18071 Granada, Spain.

Institute of Water Research, University of Granada, Ramón y Cajal, 4, Fray Luis Bldg, ZIP 18071 Granada, Spain; Department of Microbiology, University of Granada, 18071 Granada, Spain.

出版信息

Sci Total Environ. 2019 Apr 20;662:607-614. doi: 10.1016/j.scitotenv.2019.01.248. Epub 2019 Jan 22.

DOI:10.1016/j.scitotenv.2019.01.248
PMID:30699381
Abstract

Diclofenac (DFC) is a common anti-inflammatory drug, and has attracted the significant attention due to its massive use around the world and its environmental impact. In this work, we describe for the first time the use of Penicillium oxalicum, an ascomycetes fungus, for the biotransformation of DFC at flask and bench bioreactor scales. We present a complete study of the role of enzymes, metabolic pathway, acute toxicity assays and comparison between free and immobilised biomass. Pellets of P. oxalicum degraded 100 μM of DFC within 24 h, and the activity of CYP450 enzymes was key for the elimination of the drug. The scaling-up to bench bioreactor was optimised by the reduction of nutrients, and characterising the actions of free pellets, polyurethane foam- and plastic K1-immobilised biomass revealed free pellets to be the most efficient DFC removal system (total elimination occurred in 36 h). Hydroxylated metabolites were detected during the process, suggesting that a mixture of biological and physical processes were involved in the elimination of DFC. The use of P. oxalicum reduced the acute toxicity of the medium supplemented with diclofenac and represents a novel and attractive alternative for the elimination of pharmaceutical compounds.

摘要

双氯芬酸(DFC)是一种常见的抗炎药,由于其在全球范围内的大量使用及其对环境的影响,引起了人们的极大关注。在这项工作中,我们首次描述了曲霉菌Penicillium oxalicum 在瓶和台式生物反应器规模上对 DFC 的生物转化。我们对酶的作用、代谢途径、急性毒性测定以及游离和固定化生物量之间的比较进行了全面研究。在 24 小时内,P. oxalicum 菌球降解了 100µM 的 DFC,细胞色素 P450 酶的活性对于药物的消除至关重要。通过减少营养物质来优化放大到台式生物反应器,并且对游离菌球、聚氨酯泡沫和塑料 K1 固定化生物量的作用进行了表征,发现游离菌球是最有效的 DFC 去除系统(36 小时内完全消除)。在该过程中检测到了羟基化代谢产物,这表明在 DFC 的消除过程中涉及到生物和物理过程的混合物。使用 P. oxalicum 降低了补充有双氯芬酸的培养基的急性毒性,为消除药物化合物提供了一种新颖且有吸引力的替代方法。

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