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使用人淋巴细胞对 4-羧基-2,6-二硝基苯偶氮羟萘进行体外遗传毒性评价。

In vitro genotoxicity evaluation of 4-carboxyl-2,6-dinitrophenylazohydroxynaphthalenes using human lymphocytes.

机构信息

Department of Pharmaceutical Chemistry, Faculty of Pharmacy, University of Ibadan, Nigeria.

出版信息

Food Chem Toxicol. 2012 Mar;50(3-4):936-41. doi: 10.1016/j.fct.2011.11.022. Epub 2011 Nov 25.

Abstract

The genotoxicity of a new monoazo dye series, 4-carboxyl-2,6-dinitrophenylazohydroxynaphthalenes has been evaluated using human lymphocytes by alkaline comet assay. Freshly isolated human lymphocytes were exposed to the dyes (AZ-01, -02, -03 and -04) at concentrations ranging from 0 to 500 μM for 3h at 37 °C. Appropriate negative (culture medium) and positive (100 μM methyl methane sulfonate) controls were set up alongside with the dye-treated cells. Comet assay was performed to assess the extent of DNA damage. The four dyes gave varying results with respect to the parameters of DNA damage studied. AZ-01 showed concentration-dependent DNA damage (% Tail DNA) while lower concentrations (31.25-62.5 μM) did not produce any significant difference in the tail extent moment. AZ-02, the positional isomer of AZ-01, gave non-genotoxic effects at lower concentrations for the two DNA parameters. AZ-03 and AZ-04 (possessing additional C-7 substituents) did not produce significant genotoxic effect at all concentrations relative to the negative control. Two of these monoazo dyes show the potential of being used as edible colorants. The results revealed that genotoxicity of congeneric dyes bear a direct relationship to their chemical structure.

摘要

采用碱性彗星试验,评估了一系列新型单偶氮染料,4-羧基-2,6-二硝基苯基偶氮羟萘的遗传毒性。通过碱性彗星试验,将新鲜分离的人类淋巴细胞暴露于 0 至 500μM 浓度范围内的四种染料(AZ-01、-02、-03 和 -04)37°C 下 3 小时。与染料处理的细胞一起设置了适当的阴性(培养基)和阳性(100μM 甲磺酸甲酯)对照。彗星试验用于评估 DNA 损伤的程度。这四种染料在研究的 DNA 损伤参数方面给出了不同的结果。AZ-01 显示出浓度依赖性的 DNA 损伤(%尾 DNA),而较低浓度(31.25-62.5μM)在尾延伸矩方面没有产生任何显著差异。AZ-02 是 AZ-01 的位置异构体,在较低浓度下对这两个 DNA 参数表现出非遗传毒性作用。AZ-03 和 AZ-04(具有额外的 C-7 取代基)在所有浓度下相对于阴性对照均未产生显著的遗传毒性作用。这两种单偶氮染料具有作为食用色素的潜力。结果表明,同系染料的遗传毒性与其化学结构直接相关。

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