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Quenching efficiency of pyrene fluorescence by nucleotide monophosphates in cationic micelles

机译:阳离子微团中单核苷酸核苷酸对pyr荧光的猝灭效率

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The fluorescence behaviour of pyrene solubilized in the hexadecyltrimethylammonium bromide (CTAB) aqueous micellar solution in the presence of different nucleotide-monophosphates (NMPs) was investigated by monitoring the quenching and dequenching of pyrene steady-state fluorescence. The data clearly show that diverse nucleotide-monophosphates influence in different way the fluorescence of micellized pyrene: guanosine 5'-monophosphate (GMP), uridine 5'-monophosphate (UMP) and thimydine 5'-monophosphate (TMP) lead to a reduction in fluorescence intensity (quenching), while adenosine 5'-monophosphate (AMP) and cytosine 5'-monophosphate (CMP) induce an increment in pyrene fluorescence (dequenching). For all the NMPs the photophysical effect saturates at concentration higher than 40mM. In the absence of micellar solution the fluorescence of pyrene follows the typical linear behaviour according to the Stern-Volmer relation. The quenching and dequenching efficiencies were analyzed according to a recently proposed model, based on the assumption that the anionic nucleotides compete with the surfactant counterion (bromide) for micelle surface. Results make available the follows of quenching efficiency order (GMP > UMP >TMP) and dequenching efficiency order (AMP > CMP). Zeta-potential measurements confirm that the predominant interaction occurs between the positively charged micellar surface and the negatively charged phosphate moieties on the nucleotides. The collected results clearly show that the fluorescence of pyrene solubilized in the CTAB micellar solution can be reduced (quenched) or enhanced (dequenched), depending on the chemical properties of the nucleobase.
机译:通过监测of稳态荧光的猝灭和猝灭,研究了在十六烷基三甲基溴化铵(CTAB)胶束溶液中存在不同核苷酸单磷酸酯(NMP)的of的荧光行为。数据清楚地表明,不同的核苷酸单磷酸酯以不同的方式影响胶束化pyr的荧光:鸟苷5'-单磷酸酯(GMP),尿苷5'-单磷酸酯(UMP)和嘧啶5'-单磷酸酯(TMP)降低了荧光强度(猝灭),而腺苷5'-单磷酸酯(AMP)和胞嘧啶5'-单磷酸酯(CMP)引起pyr荧光的增加(脱峰)。对于所有NMP,光物理效应在高于40mM的浓度下达到饱和。在没有胶束溶液的情况下,pyr的荧光遵循Stern-Volmer关系遵循典型的线性行为。基于阴离子核苷酸与表面活性剂抗衡离子(溴化物)竞争胶束表面的假设,根据最近提出的模型分析了淬灭和去猝灭效率。结果提供了以下淬灭效率等级(GMP> UMP> TMP)和淬灭效率等级(AMP> CMP)。 Zeta电位测量结果证实,主要的相互作用发生在核苷酸上带正电荷的胶束表面与带负电荷的磷酸盐部分之间。收集到的结果清楚地表明,取决于核碱基的化学性质,可减少(淬灭)或增强(分解)的溶解在CTAB胶束溶液中的fluorescence的荧光。

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