首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Effect of water molecules on the fluorescence enhancement of Aflatoxin B1 mediated by Aflatoxin B1 :beta-cyclodextrin complexes. A theoretical study
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Effect of water molecules on the fluorescence enhancement of Aflatoxin B1 mediated by Aflatoxin B1 :beta-cyclodextrin complexes. A theoretical study

机译:水分子对黄曲霉毒素B1:β-环糊精复合物介导的黄曲霉毒素B1荧光增强的影响。理论研究

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In order to explain the observed fluorescence enhancement of Aflatoxin B1 (AFB1) when forming AFB1: beta-cyclodextrin (AFB1: beta-CD) inclusion complexes, we have performed a theoretical (quantum chemistry calculations) study of AFB1 and AFB1: beta-CD in vacuum and in the presence of aqueous solvent. The AM1 method was used to calculate the absorption and emission wavelengths of these molecules. With the help of density functional theory (DFT) and time-dependent DFT (TDDFT) vibrational frequencies and related excitation energies of AFB1 and AFB1.(H2O)(m=4,5,6,11) were calculated. On the basis of these calculations we propose a plausible mechanism for the fluorescence enhancement of AFB1 in the presence of beta-CD: (1) before photoexcitation of AFB1 to its S-1 excited state, there is a vibrational coupling between the vibrational modes involving the AFB1 carbonyl groups and the bending modes of the nearby water molecules (CG + WM); (2) these interactions allow a thermal relaxation of the excited AFB1 molecules that results in fluorescence quenching; (3) when the AFB1 molecules form inclusion complexes with beta-CD the CG + WM interaction decreases; and (4) this gives rise to a fluorescence enhancement.
机译:为了解释在形成AFB1:β-环糊精(AFB1:β-CD)包合物时观察到的黄曲霉毒素B1(AFB1)荧光增强作用,我们进行了AFB1和AFB1:β-CD的理论研究(量子化学计算)在真空中和在水性溶剂存在下。 AM1方法用于计算这些分子的吸收和发射波长。借助密度泛函理论(DFT)和时变DFT(TDDFT)计算了AFB1和AFB1的振动频率和相关的激发能。(H2O)(m = 4,5,6,11)。根据这些计算,我们提出了在存在β-CD的情况下AFB1荧光增强的合理机制:(1)在将AFB1光激发至其S-1激发态之前,涉及的振动模式之间存在振动耦合AFB1羰基和附近水分子(CG + WM)的弯曲模式; (2)这些相互作用使激发的AFB1分子发生热弛豫,从而导致荧光猝灭; (3)当AFB1分子与β-CD形成包合物时,CG + WM相互作用降低; (4)这引起荧光增强。

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