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首页> 外文期刊>International Journal of Radiation Biology: Covering the Physical, Chemical, Biological, and Medical Effects of Ionizing and Non-ionizing Radiations >Synthesis and application of molecular probe for detection of hydroxyl radicals produced by Na(125)I and gamma-rays in aqueous solution.
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Synthesis and application of molecular probe for detection of hydroxyl radicals produced by Na(125)I and gamma-rays in aqueous solution.

机译:分子探针的合成及其在水溶液中检测Na(125)I和γ射线产生的羟基自由基的应用。

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PURPOSE: To synthesize N-(3-(3-aminopropylamino)propyl)-2-oxo-2H-chromene-3-carboxamide (7), a novel DNA-binding, coumarin-based, fluorescent hydroxylradical ((*)OH) indicator and to assess its quantum efficiency compared with that of coumarin-3-carboxylic acid (1) and N1,N12-bis[2-oxo-2H-chromene-3-carbonyl]- 1,12-diamine-4,9-diazadodecane (9). MATERIALS AND METHODS: Using computer-generated molecular modeling, 7 and 9 and their respective 7-hydroxylated derivatives 8 and 10 were docked onto DNA dodecamer d(CGCGAATTCGCG)2, the ligand-DNA complexes were energy minimized, and binding free energies and inhibition constants were calculated. Compound 7 was judged an appropriate target molecule and was synthesized. Compounds 1, 7, and 9 were incubated with Na(125)I or irradiated with (137)Cs gamma-rays, and the influence of pH, dose, type of radiation, and the concentration of indicator on fluorescence yield were determined. RESULTS: Non-fluorescent 7 and 9 are converted to fluorescent, 7-hydroxylated derivatives 8 and 10 after interaction with (*)OH in aqueous solution. For 1, 7, and 9, hydroxylation yield increases linearly with both Na(125)I dose (0-700 x 10(6) decays) and (137)Cs dose (0-11.0 Gy). Fluorescence induction is significantly reduced at acidic pH and the fluorescent quantum yield of 8 is approximately 3 times that of 2 or 10 at pH 7.0. With Na(125)I incubation and gamma-ray irradiation, the fluorescence signal of 7 increases linearly with concentration and saturates at approximately 50 microM. CONCLUSION: Compound 7 quantifies lower concentrations of (*)OH than do 1 and 9. This detector is therefore likely to be a good reporter of (*)OH produced within a few nanometers of DNA.
机译:用途:合成N-(3-(3-氨基丙基氨基)丙基)-2-氧代-2H-色烯-3-羧酰胺(7),一种新型的DNA结合,基于香豆素的荧光羟基自由基((*)OH)指示剂并评估其与香豆素-3-羧酸(1)和N1,N12-双[2-氧代-2H-色烯-3-羰基] -1,12-二胺-4,9-的量子效率。重氮十二烷(9)。材料与方法:使用计算机生成的分子模型,将7和9以及它们各自的7-羟基化衍生物8和10停靠在DNA dodecamer d(CGCGAATTCGCG)2上,使配体-DNA复合物的能量最小化,结合自由能和抑制作用计算常数。化合物7被认为是合适的靶分子并被合成。将化合物1、7和9与Na(125)I孵育或用(137)Csγ射线照射,然后测定pH,剂量,辐射类型和指示剂浓度对荧光产率的影响。结果:在水溶液中与(*)OH相互作用后,非荧光7和9转化为荧光7-羟基化衍生物8和10。对于1、7和9,羟基化产率随Na(125)I剂量(0-700 x 10(6)衰减)和(137)Cs剂量(0-11.0 Gy)线性增加。在酸性pH下,荧光诱导显着降低,在pH 7.0下,8的荧光量子产率约为2或10的荧光量子产率的3倍。在Na(125)I孵育和伽马射线照射下,7的荧光信号随浓度线性增加,并在大约50 microM处饱和。结论:化合物7定量的(*)OH浓度低于1和9浓度。因此,该检测器很可能是在几纳米的DNA中产生的(*)OH的良好报道分子。

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