首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Study on the interaction of 5-pyridine-10, 15,20-tris-(p-chlorophenyl)porphyrin with cyclodextrins and DNA by spectroscopy
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Study on the interaction of 5-pyridine-10, 15,20-tris-(p-chlorophenyl)porphyrin with cyclodextrins and DNA by spectroscopy

机译:光谱法研究5-吡啶-10、15,20-三(对氯苯基)卟啉与环糊精和DNA的相互作用

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The interaction of 5-pyridine-10,15,20-tris-(p-chlorophenyl)porphyrin (PyTPP) with beta-CD and TM-beta-CD were examined by UV-vis absorption, fluorescence and H-1 NMR spectroscopy. PyTPP prefers to form the 1: 1 inclusion complex with TM-beta-CD but hardly form inclusion complex with beta-CD. An inclusion constant (K) for the formation of PyTPP-TM-beta-CD inclusion complex has been evaluated to be 4.4 x 10(3) L/mol from the absorbance changes. This K value is nearly the same as that 4.5 x 10(3) L/mol obtained from the fluorescence intensity changes. Compared to beta-CD, the inclusion ability of TM-beta-CD with PyTPP is stronger. It indicates that the hydrophobic effect plays an important role in the inclusion procedure. The mechanism of inclusion interaction was carried out by H-1 NMR technique. Furthermore, the interaction of PyTPP with DNA is shown here. It can bind DNA by out-side stacking along the DNA helix but not by intercalation because of the high electron density in the porphyrin core. The binding constant and binding number of PyTPP to DNA are 4.3 x 10(3) and 1.3, respectively. The interaction of PyTPP with DNA was further carried out in the presence of TM-beta-CD. The significant decrease of the binding constant and binding number were observed and the interaction of porphyrin-bound DNA has been inhibited, which was due to the fact that PyTPP inter into the cavity of TM-beta-CD and influence binding affinity of PyTPP to DNA. (C) 2007 Elsevier B.V. All rights reserved.
机译:通过紫外可见吸收,荧光和H-1 NMR光谱检查了5-吡啶-10,15,20-三(对氯苯基)卟啉(PyTPP)与β-CD和TM-β-CD的相互作用。 PyTPP倾向于与TM-β-CD形成1:1的包合物,但几乎不与β-CD形成包合物。根据吸光度变化,形成PyTPP-TM-β-CD包合物的包合物常数(K)已评估为4.4 x 10(3)L / mol。该K值几乎与从荧光强度变化获得的4.5×10(3)L / mol相同。与β-CD相比,TM-β-CD与PyTPP的包合能力更强。这表明疏水作用在包合过程中起重要作用。包合物相互作用的机理通过H-1 NMR技术进行。此外,此处显示了PyTPP与DNA的相互作用。由于卟啉核心中的高电子密度,它可以通过沿着DNA螺旋的外部堆叠而结合DNA,但不能通过插入来结合。 PyTPP与DNA的结合常数和结合数分别为4.3×10(3)和1.3。在TM-β-CD的存在下,PyTPP与DNA的相互作用进一步进行。观察到结合常数和结合数的显着降低,并且卟啉结合的DNA的相互作用被抑制,这是由于PyTPP进入TM-β-CD腔并影响PyTPP与DNA的结合亲和力。 (C)2007 Elsevier B.V.保留所有权利。

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