Organero Juan Angel, Martin Cristina, Cohen Boiko, Douhal Abderrazzak
Departamento de Química Física, Sección de Químicas, Facultad del Medio Ambiente, Universidad de Castilla La Mancha, Avenida Carlos III, S.N., Campus Tecnológico de Toledo, Toledo, Spain.
Langmuir. 2008 Sep 16;24(18):10352-7. doi: 10.1021/la801256h. Epub 2008 Aug 15.
We report studies of the interaction between a proton-transfer dye (1'-hydroxy,2'-acetonaphthone, HAN), with the human serum albumin (HSA) protein and a beta-cyclodextrin derivative (DM-beta-CD) in neutral water solutions. We used steady-state and picosecond time-resolved emission spectroscopy to follow the structural changes of HAN due to the hydrophobicity and confinement effect of these nanocavities. Upon encapsulation, the fluorescence intensity of the 1:1 inclusion complex in both cavities increases, and the emission lifetimes become longer. For the DM-beta-CD complexes, we obtained 430 and 920 ps, whereas for the HSA complexes we obtained 630 ps and 2 ns. Picosecond anisotropy measurements show strong confinement due to protein docking. The rotational time for the CD complex is 660 ps, whereas for the protein complex we find 6 ns. The process of energy transfer from the excited triptophan 214 (Trp214) of HSA to the trapped HAN occurs with high efficiency (71%), and the calculated distance between both chromophores is 17 A. We believe that the results are important for a better understanding of the processes occurring in inclusion complexes such as those in nanopharmacodynamics.
我们报告了在中性水溶液中质子转移染料(1'-羟基-2'-乙酰萘,HAN)与人血清白蛋白(HSA)蛋白以及β-环糊精衍生物(DM-β-CD)之间相互作用的研究。我们使用稳态和皮秒时间分辨发射光谱来跟踪由于这些纳米腔的疏水性和限制效应导致的HAN的结构变化。包封后,两个腔中1:1包合物的荧光强度增加,发射寿命变长。对于DM-β-CD复合物,我们测得的寿命分别为430皮秒和920皮秒,而对于HSA复合物,测得的寿命分别为630皮秒和2纳秒。皮秒各向异性测量表明由于蛋白质对接存在强烈的限制。CD复合物的旋转时间为660皮秒,而蛋白质复合物的旋转时间为6纳秒。从HSA的激发态色氨酸214(Trp214)到捕获的HAN的能量转移过程高效发生(71%),计算出的两个发色团之间的距离为17埃。我们认为这些结果对于更好地理解包合物中发生的过程(如纳米药效学中的那些过程)很重要。