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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Inclusion Complexes of Nitroxides of Pyrrolidine and Imidazoline Series with Cucurbit[7]uril
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Inclusion Complexes of Nitroxides of Pyrrolidine and Imidazoline Series with Cucurbit[7]uril

机译:吡咯烷和咪唑啉系列一氧化氮与葫芦[7]尿素的包合物

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Inclusion of nitroxides into the cavity of molecular nanocontainers may prevent or significantly retard nitroxide reactions with cellular reductans and increase nitroxide lifetime. This paper is aimed at studying possible applications of cucurbit[7]uril (CB7) as a molecular nanocontainer for pH-sensitive nitroxides probes. Inclusion complexes of CB7 with different nitroxides—3-aminomethyl-proxyl (AMP), 3-hydroxymethyl-proxyl (HMP), 4-amino-2,2,5,5-tetramethyl-2,5-dihydroimidazole-1-oxyl (ATI), and 2,2,4,5,5-pentamethyl-2,5-dihydroimi-dazole-1-oxyl (MTI)—were studied. It was found that reversible formation of inclusion complexes AMP@CB7, AMPH~+@CB7, HMP@CB7, ATIH~+@CB7, and MTIH~+@CB7 is accompanied by a decrease of hyperfine interaction (HFI) constant on nitrogen of the nitroxide group and by a 5-7-fold increase of rotational correlation time monitored by electron paramagnetic resonance (EPR). The binding constants of nitroxide@CB7 complexes were determined, and the influence of alkali metal ions and pH on the equilibrium between free and encapsulated nitroxides was studied. The EPR spectra of CB7 mixtures with protonable nitroxides were found to be more sensitive to pH changes than the spectra of pure nitroxides, and the apparent pK of these mixtures was found to increase with CB7 concentration. The nitroxide@CB7 complexes showed higher resistance to chemical reduction with ascorbic acid compared to free nitroxides. Thus, CB7 can be used for the improvement of functional properties of nitroxides.
机译:在分子纳米容器的腔体中包含氮氧化物可能会阻止或显着延迟与细胞还原剂发生的氮氧化物反应,并延长氮氧化物的寿命。本文旨在研究葫芦[7]尿素(CB7)作为pH敏感型氮氧化物探针的分子纳米容器的可能应用。 CB7与不同氮氧化物的包合物-3-氨基甲基-脯氨酸(AMP),3-羟甲基-脯氨酸(HMP),4-氨基-2,2,5,5-四甲基-2,5-二氢咪唑-1-氧基( ATI)和2,2,4,5,5-五甲基-2,5-二氢咪唑-唑(1-甲基)-进行了研究。结果发现,包合物AMP @ CB7,AMPH〜+ @ CB7,HMP @ CB7,ATIH〜+ @ CB7和MTIH〜+ @ CB7的可逆形成伴随着在氮的氮上的超精细相互作用(HFI)的降低。并通过电子顺磁共振(EPR)监控旋转相关时间增加了5-7倍。确定了硝基氧@ CB7配合物的结合常数,并研究了碱金属离子和pH对游离和包封的氮氧化物之间平衡的影响。发现具有质子化氮氧化物的CB7混合物的EPR光谱比纯氮氧化物的光谱对pH变化更敏感,并且发现这些混合物的表观pK随着CB7浓度的增加而增加。与游离的一氧化氮相比,抗氧化的C @ B7配合物对化学还原具有更高的抵抗力。因此,CB7可用于改善氮氧化物的功能性质。

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