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利用血红素-石墨烯纳米复合材料进行 DNA 损伤的比色检测。

Colorimetric detection of DNA damage by using hemin-graphene nanocomposites.

机构信息

Key Laboratory of Environmental Medicine Engineering, Ministry of Education, School of Chemistry and Chemical Engineering, Southeast University, Nanjing 211189, Jiangsu Province, PR China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2013 Apr;106:163-9. doi: 10.1016/j.saa.2012.12.091. Epub 2013 Jan 10.

Abstract

A colorimetric method for detection of DNA damage was developed by using hemin-graphene nanosheets (H-GNs). H-GNs were skillfully synthesized by adsorping of hemin on graphene through π-π interactions. The as-prepared H-GNs possessed both the ability of graphene to differentiate the damage DNA from intact DNA and the catalytic action of hemin. The damaged DNA made H-GNs coagulated to different degrees from the intact DNA because there were different amount of negative charge exposed on their surface, which made a great impact on the solubility of H-GNs. As a result, the corresponding centrifugal supernatant of H-GNs solution showed different color in the presence of 3,3',5,5'-tetramethylbenzidine (TMB) and H2O2, which could be discriminated by naked eyes or by ultraviolet (UV)-visible spectrometer. Based on this, the damaged effects of styrene oxide (SO), NaAsO2 and UV radiation on DNA were studied. Results showed that SO exerted most serious damage effect on DNA although all of them damaged DNA seriously. The new method for detection of DNA damage showed good prospect in the evaluation of genotoxicity of new compounds, the maximum limit of pesticide residue, food additives, and so on, which is important in the fields of food science, pharmaceutical science and pesticide science.

摘要

采用纳米片(H-GNs)发展了一种用于检测 DNA 损伤的比色法。H-GNs 是通过π-π 相互作用吸附在石墨烯上巧妙合成的。所制备的 H-GNs 既具有石墨烯从完整 DNA 中区分损伤 DNA 的能力,又具有血红素的催化作用。由于表面上暴露的负电荷数量不同,损伤的 DNA 使 H-GNs 从完整的 DNA 中不同程度地凝聚,这对 H-GNs 的溶解度有很大的影响。因此,在存在 3,3',5,5'-四甲基联苯胺(TMB)和 H2O2 的情况下,H-GNs 溶液的相应离心上清液呈现出不同的颜色,可以通过肉眼或紫外(UV)-可见分光光度计进行区分。基于此,研究了苯并恶唑(SO)、砷酸钠和紫外线辐射对 DNA 的损伤作用。结果表明,尽管它们都严重损伤 DNA,但 SO 对 DNA 的损伤作用最为严重。用于检测 DNA 损伤的新方法在评价新化合物的遗传毒性、农药残留、食品添加剂等方面具有良好的前景,在食品科学、药物科学和农药科学等领域具有重要意义。

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