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Genotoxic and antibutyrylcholinesterasic activities of acid violet 7 and its biodegradation products

机译:酸性紫7及其生物降解产物的遗传毒性和抗丁酰胆碱酯酶活性

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Acid violet 7, a sulfonated azo dye was degraded by Pseudomonasputida mt-2 in mineral medium at concentrations up to 200mg/L. The genotoxicity of AV7 and its biodegradation extracts was evaluated by using the DNA-strand scission assay. No genotoxicity was observed, even with or without exposition to UV irradiation, for biodegradation under shaking conditions, but increased significantly after biodegradation under static conditions. In addition, the ability of tested compounds to reduce human plasma butyrylcho-linesterase (BuChE) activity was evaluated in vitro. Genotoxicity and anti-BuChE activity generated by the azoreduction products [4'-aminoacetanilid (4'-AA) and 5-acetamido-2-amino-1-hydroxy-3,6-naphtalene disulfonic acid (5-ANDS)] were assessed and compared with that of the parent unsubstituted amines. 4'-AA exhibited a strong genotoxicity, which was imputed to the presence of the acetoxy (COCH3) substituent on the aromatic amine;however, the presence of sulphonic groups in 5-ANDS seems to be responsible for its BuChE inhibition activity. The present study demonstrates that P. putida mt-2, incubated under aerobic conditions, has a catabolism that enables it to degrade AV7 and, especially, to detoxify the dye mixtures.
机译:酸性紫7,磺化的偶氮染料在200毫克/升的矿物培养基中被Pseudomonasputida mt-2降解。通过使用DNA链断裂试验评估了AV7及其生物降解提取物的遗传毒性。即使在摇动条件下进行生物降解,也没有观察到遗传毒性,即使暴露于或未暴露于紫外线照射下,在静态条件下进行生物降解后也没有明显的遗传毒性。另外,在体外评估了测试化合物降低人血浆丁酰胆碱酯酶(BuChE)活性的能力。评估了偶氮还原产物[4'-氨基乙酰苯胺(4'-AA)和5-乙酰氨基-2-氨基-1-羟基-3,6-萘二磺酸(5-ANDS)]产生的遗传毒性和抗BuChE活性。并与母体未取代胺进行比较。 4'-AA表现出很强的遗传毒性,这归因于芳族胺上存在乙酰氧基(COCH3)取代基;但是,5-ANDS中磺酸基的存在似乎是其BuChE抑制活性的原因。本研究表明,在好氧条件下培养的恶臭假单胞菌mt-2具有分解代谢作用,使其能够降解AV7,尤其是使染料混合物解毒。

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