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评估氯化消毒副产物微囊藻毒素-LR 的生成机制及生物毒性。

Evaluation on the generative mechanism and biological toxicity of microcystin-LR disinfection by-products formed by chlorination.

机构信息

College of Population, Resources and Environment, Shandong Normal University, 88# East Wenhua Road, Jinan 250014, PR China.

出版信息

J Hazard Mater. 2013 May 15;252-253:293-9. doi: 10.1016/j.jhazmat.2013.03.010. Epub 2013 Mar 15.

Abstract

To control the environmental risk of microcystin-LR disinfection by-products (MCLR-DBPs), we evaluated their generative mechanisms and biological toxicity by mass spectrometry technology and protein phosphatase inhibition assay. Subject to chlorination, MCLR was totally transformed within 45 min and generated 5 types of MCLR-DBPs with the chemical formulas of C34H54N10O12, C49H76N10O14Cl2, C49H77N10O15Cl, C49H75N10O13Cl, and C49H76N10O14. Isomers for each MCLR-DBP type were identified and separated (products 1-9), indicating that the conjugated diene in Adda residue was a major target site of disinfection. Though, subsequent toxicity test showed the toxicity of MCLR-DBPs on protein phosphatase 1 decreased with the extending of disinfection by and large, these DBPs still possessed certain biological toxicity (especially for product 5). Combined with quantitative analysis, we thought the secondary pollution of MCLR-DBPs in drinking water also deserved further attention. This study offers valid technique support for MCLR-DBPs identification, contributes to a comprehensive cognition on their hazard, and thus has great significance to prevent and control the environmental risk induced by microcystins and their DBPs.

摘要

为了控制微囊藻毒素-LR 消毒副产物(MCLR-DBPs)的环境风险,我们利用质谱技术和蛋白磷酸酶抑制测定法评估了它们的生成机制和生物毒性。在氯化作用下,MCLR 在 45 分钟内完全转化,并生成了 5 种具有化学式 C34H54N10O12、C49H76N10O14Cl2、C49H77N10O15Cl、C49H75N10O13Cl 和 C49H76N10O14 的 MCLR-DBPs。鉴定并分离出每种 MCLR-DBP 类型的异构体(产物 1-9),表明 Adda 残基中的共轭二烯是消毒的主要靶位。然而,随后的毒性试验表明,MCLR-DBPs 对蛋白磷酸酶 1 的毒性随着消毒时间的延长而总体降低,但这些 DBPs 仍具有一定的生物毒性(特别是产物 5)。结合定量分析,我们认为饮用水中 MCLR-DBPs 的二次污染也值得进一步关注。本研究为 MCLR-DBPs 的鉴定提供了有效的技术支持,有助于全面认识其危害,对预防和控制微囊藻毒素及其 DBPs 引起的环境风险具有重要意义。

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