Rybczyńska-Tkaczyk Kamila
Department of Environmental Microbiology, Faculty of Agrobioengineering, The University of Life Sciences, Leszczyńskiego Street 7, 20-069 Lublin, Poland.
Biology (Basel). 2022 Oct 23;11(11):1553. doi: 10.3390/biology11111553.
The aim of this study was to evaluate the biodecolorization and detoxification of the anticancer drug mitoxantron (MTX) by immobilized crude versatile peroxidase of CCBAS 930 (icVP/Ba). The concentrated crude VP was obtained from CCBAS 930 culture on medium with MTX (µg/mL) addition, immobilized with 4% sodium alginate. MTX removal degree (decolorization), levels of phenolic compounds and free radicals were determined during MTX biotransformation. Moreover, the phytotoxicity ( L.), biotoxicity (multi-species microbial assay, MARA), and genotoxicity (SOS Chromotest) of MTX were evaluated before and after the biological treatment. The use of icVP/Ba (95 U/mL) significantly shortened the bioremoval of 10 µg/mL MTX (95.57% after 72 h). MTX removal by icVP/Ba was correlated with an 85% and 90% decrease in the levels of phenolic compounds and free radicals, respectively. In addition, the use of icVP/Ba contributed to a decrease in the phyto-, bio-, and genotoxicity of MTX. This is the first study to describe the possibility of removing MTX using immobilized crude fungal peroxidase.
本研究的目的是评估固定化的CCBAS 930粗制通用过氧化物酶(icVP/Ba)对抗癌药物米托蒽醌(MTX)的生物脱色和解毒作用。浓缩的粗制VP是从添加了MTX(μg/mL)的培养基上的CCBAS 930培养物中获得的,用4%的海藻酸钠固定。在MTX生物转化过程中测定MTX的去除程度(脱色)、酚类化合物和自由基水平。此外,还评估了生物处理前后MTX的植物毒性(生菜)、生物毒性(多物种微生物测定,MARA)和遗传毒性(SOS色变试验)。使用icVP/Ba(95 U/mL)显著缩短了10 μg/mL MTX的生物去除时间(72小时后为95.57%)。icVP/Ba对MTX的去除分别与酚类化合物和自由基水平降低85%和90%相关。此外,使用icVP/Ba有助于降低MTX的植物毒性、生物毒性和遗传毒性。这是第一项描述使用固定化粗制真菌过氧化物酶去除MTX可能性的研究。