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首页> 外文期刊>Chemosphere >Assessment of the cytotoxic, genotoxic and mutagenic effects of the commercial black dye in Allium cepa cells before and after bacterial biodegradation treatment
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Assessment of the cytotoxic, genotoxic and mutagenic effects of the commercial black dye in Allium cepa cells before and after bacterial biodegradation treatment

机译:在细菌生物降解处理之前和之后评估商品黑染料在葱属洋葱细胞中的细胞毒性,遗传毒性和诱变作用

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摘要

The present study evaluated the cytotoxic, genotoxic and mutagenic actions of different concentrations (50 and 200 mu g/L) of BDCP (Black Dye Commercial Product) used by textile industries, before and after bacterial biodegradation, by the conventional staining cytogenetic technique and NOR-banding in Allium cepa cells. Differences in the chromosomal and nuclear aberrations and alterations in the number of nucleoli were observed in cells exposed to BDCP with and without the microbial treatment. The significant frequencies of chromosome and nuclear aberrations noted in the tests with bacterially biodegraded BDCP indicate that the metabolites generated by degradation are more genotoxic than the chemical itself. Losses of genetic material characterize a type of alteration that was mainly associated with the action of the original BDCP, whereas chromosome stickiness, nuclear buds and binucleated cells were the aberrations that were preferentially induced by BDCP metabolites after biodegradation. The significant frequencies of cell death observed in the tests with biodegraded BDCP also show the cytotoxic effects of the BDCP metabolites. The reduction in the total frequency of altered cells after the recovery treatments showed that the test organism A. cepa has the ability to recover from damage induced by BDCP and its metabolites after the exposure conditions are normalized. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本研究通过常规染色细胞遗传学技术和NOR技术评估了细菌工业降解前后纺织工业使用的不同浓度(50和200μg / L)的BDCP(黑染料商业产品)的细胞毒性,遗传毒性和诱变作用。葱属cepa细胞中的条带化。在经过和未经过微生物处理的暴露于BDCP的细胞中,观察到了染色体畸变和核畸变以及核仁数目的变化。在细菌生物降解的BDCP的测试中,染色体和核畸变的显着频率表明,降解产生的代谢物比化学物质本身具有更高的遗传毒性。遗传物质的丢失是一种主要与原始BDCP的作用有关的改变,而染色体的粘性,核芽和双核细胞则是生物降解后BDCP代谢物优先诱导的畸变。在用生物降解的BDCP进行的测试中观察到的明显细胞死亡频率也显示了BDCP代谢产物的细胞毒性作用。恢复处理后改变的细胞总频率的降低表明,在暴露条件正常化后,测试生物A. cepa具有从BDCP及其代谢物诱导的损伤中恢复的能力。 (C)2016 Elsevier Ltd.保留所有权利。

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