Enhanced Efficiency of the Removal of Cytostatic Anthracycline Drugs Using Immobilized Mycelium of <i>Bjerkandera adusta</i> CCBAS 930

The aim of this study was to evaluate the bioremoval of anthracycline antibiotics (daunomycin-DNR, doxorubicin–DOX, and mitoxantrone-MTX) by immobilized mycelium of <i>B. adusta</i> CCBAS 930. The activity of oxidoreductases: versatile peroxidases (VP), superoxide dismutase (SOD), catala...

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Autor principal: Kamila Rybczyńska-Tkaczyk
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Publicado: MDPI AG 2021
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spelling oai:doaj.org-article:d3564db42805457abee4c551eae680e82021-11-25T18:27:40ZEnhanced Efficiency of the Removal of Cytostatic Anthracycline Drugs Using Immobilized Mycelium of <i>Bjerkandera adusta</i> CCBAS 93010.3390/molecules262268421420-3049https://doaj.org/article/d3564db42805457abee4c551eae680e82021-11-01T00:00:00Zhttps://www.mdpi.com/1420-3049/26/22/6842https://doaj.org/toc/1420-3049The aim of this study was to evaluate the bioremoval of anthracycline antibiotics (daunomycin-DNR, doxorubicin–DOX, and mitoxantrone-MTX) by immobilized mycelium of <i>B. adusta</i> CCBAS 930. The activity of oxidoreductases: versatile peroxidases (VP), superoxide dismutase (SOD), catalase (CAT), and glucose oxidase (GOX), and the levels of phenolic compounds (PhC) and free radicals (SOR) were determined during the biotransformation of anthracyclines by <i>B. adusta</i> strain CCBAS 930. Moreover, the phytotoxicity (<i>Lepidium sativum</i> L.), biotoxicity (MARA assay), and genotoxicity of anthracyclines were evaluated after biological treatment. After 120 h, more than 90% of anthracyclines were removed by the immobilized mycelium of <i>B. adusta</i> CCBAS 930. The effective biotransformation of anthracyclines was correlated with detoxification and reduced genotoxicity.Kamila Rybczyńska-TkaczykMDPI AGarticledaunomycindoxorubicinmitoxantroneversatile peroxidasesgenotoxicitybiotoxicityOrganic chemistryQD241-441ENMolecules, Vol 26, Iss 6842, p 6842 (2021)
institution DOAJ
collection DOAJ
language EN
topic daunomycin
doxorubicin
mitoxantrone
versatile peroxidases
genotoxicity
biotoxicity
Organic chemistry
QD241-441
spellingShingle daunomycin
doxorubicin
mitoxantrone
versatile peroxidases
genotoxicity
biotoxicity
Organic chemistry
QD241-441
Kamila Rybczyńska-Tkaczyk
Enhanced Efficiency of the Removal of Cytostatic Anthracycline Drugs Using Immobilized Mycelium of <i>Bjerkandera adusta</i> CCBAS 930
description The aim of this study was to evaluate the bioremoval of anthracycline antibiotics (daunomycin-DNR, doxorubicin–DOX, and mitoxantrone-MTX) by immobilized mycelium of <i>B. adusta</i> CCBAS 930. The activity of oxidoreductases: versatile peroxidases (VP), superoxide dismutase (SOD), catalase (CAT), and glucose oxidase (GOX), and the levels of phenolic compounds (PhC) and free radicals (SOR) were determined during the biotransformation of anthracyclines by <i>B. adusta</i> strain CCBAS 930. Moreover, the phytotoxicity (<i>Lepidium sativum</i> L.), biotoxicity (MARA assay), and genotoxicity of anthracyclines were evaluated after biological treatment. After 120 h, more than 90% of anthracyclines were removed by the immobilized mycelium of <i>B. adusta</i> CCBAS 930. The effective biotransformation of anthracyclines was correlated with detoxification and reduced genotoxicity.
format article
author Kamila Rybczyńska-Tkaczyk
author_facet Kamila Rybczyńska-Tkaczyk
author_sort Kamila Rybczyńska-Tkaczyk
title Enhanced Efficiency of the Removal of Cytostatic Anthracycline Drugs Using Immobilized Mycelium of <i>Bjerkandera adusta</i> CCBAS 930
title_short Enhanced Efficiency of the Removal of Cytostatic Anthracycline Drugs Using Immobilized Mycelium of <i>Bjerkandera adusta</i> CCBAS 930
title_full Enhanced Efficiency of the Removal of Cytostatic Anthracycline Drugs Using Immobilized Mycelium of <i>Bjerkandera adusta</i> CCBAS 930
title_fullStr Enhanced Efficiency of the Removal of Cytostatic Anthracycline Drugs Using Immobilized Mycelium of <i>Bjerkandera adusta</i> CCBAS 930
title_full_unstemmed Enhanced Efficiency of the Removal of Cytostatic Anthracycline Drugs Using Immobilized Mycelium of <i>Bjerkandera adusta</i> CCBAS 930
title_sort enhanced efficiency of the removal of cytostatic anthracycline drugs using immobilized mycelium of <i>bjerkandera adusta</i> ccbas 930
publisher MDPI AG
publishDate 2021
url https://doaj.org/article/d3564db42805457abee4c551eae680e8
work_keys_str_mv AT kamilarybczynskatkaczyk enhancedefficiencyoftheremovalofcytostaticanthracyclinedrugsusingimmobilizedmyceliumofibjerkanderaadustaiccbas930
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