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首页> 外文期刊>European journal of inorganic chemistry >Supramolecular adducts of negatively charged lanthanide(III) DOTP chelates and cyclodextrins functionalized with ammonium Groups: Mass spectrometry and nuclear magnetic resonance studies
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Supramolecular adducts of negatively charged lanthanide(III) DOTP chelates and cyclodextrins functionalized with ammonium Groups: Mass spectrometry and nuclear magnetic resonance studies

机译:带铵功能的带负电的镧系元素(III)DOTP螯合物和环糊精的超分子加合物:质谱和核磁共振研究

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摘要

The interaction of the negatively charged Ln ~(3+) chelate Ln-DOTP with β- and γ-cyclodextrins bearing ammonium groups at the upper rim (CD ~+s) was investigated using mass spectrometry and NMR spectroscopic techniques. Mass spectroscopy shows the presence of 1:1 adducts of Ln-DOTP and both β- or γ-CD ~+. The peak intensities increased upon increasing the pH of the samples from 7 to 9.0, suggesting an increase in the strength of the interaction. Lanthanide induced 1H NMR chemical shifts and relaxation ratesmeasured in aqueous solutions confirmed the presence of these adducts. The strength of the interactions appeared to be dependent on the pH, reflecting the strong electrostatic interactions between the oppositely charged host CD ~+ and guest Ln-DOTP chelate. Evaluation of the lanthanide induced relaxation rates showed that the Ln-DOTP does not enter the cavity of the CDs, but remains above it with a distance of 10-11 é between the Ln ~(3+) ion and the centre of the CD. Molecular modelling indicated that hydrogen bonds between the functionalized groups participating in the interaction sites contribute to the adduct stabilization. The apparent binding constants at pH 7 and 9 were obtained by using relaxometric measurements at 9 MHz. Fitting the NMRD profiles showed an increase in the number of second-sphere water molecules surrounding the phosphonate pendant arms of the Ln-DOTP chelate upon its interaction with the CDs. A brief description of the PARACEST properties of the supramolecular systems formed by Tm-DOTP and the positively charged CDs is presented. Both CDs display a shift of the saturation transfer peaks of the ammonium functions by the Tm complex, with an accentuated effect observed for the γ-CD derivative. The negatively charged Ln-DOTP chelate forms relatively strong 1:1 supramolecular adducts with β- and γ-cyclodextrins bearing ammonium groups at the upper rim. The strength of the host-guest interaction depends on the pH. The geometry of the adducts, obtained from paramagnetic shift and relaxation effects, shows that the host is outside the guest cavity.
机译:使用质谱和NMR光谱技术研究了带负电荷的Ln〜(3+)螯合物Ln-DOTP与在上边缘(CD〜+ s)带有铵基的β-和γ-环糊精的相互作用。质谱显示存在1:1的Ln-DOTP加合物以及β-或γ-CD〜+。当样品的pH从7增加到9.0时,峰强度增加,表明相互作用强度增加。镧系元素诱导的1 H NMR化学位移和在水溶液中测得的弛豫速率证实了这些加合物的存在。相互作用的强度似乎取决于pH,反映了带相反电荷的宿主CD〜+与客体Ln-DOTP螯合物之间的强静电相互作用。镧系元素引起的弛豫速率的评估表明,Ln-DOTP不会进入CD腔,而是保持在其上方,且Ln〜(3+)离子与CD中心之间的距离为10-11é。分子模型表明参与相互作用位点的官能团之间的氢键有助于加合物的稳定。通过在9 MHz下使用弛豫测量获得了pH为7和9时的表观结合常数。拟合NMRD图谱显示,随着Ln-DOTP与CD的相互作用,围绕Ln-DOTP的膦酸酯侧链的第二球水分子数量增加。简要描述了由Tm-DOTP和带正电荷的CD形成的超分子系统的PARACEST特性。两种CD都显示出Tm络合物对铵官能团的饱和转移峰的移动,并观察到γ-CD衍生物的加重效应。带负电荷的Ln-DOTP螯合物与在上缘带有铵基的β-和γ-环糊精形成相对较强的1:1超分子加合物。主客体相互作用的强度取决于pH。从顺磁位移和弛豫效应获得的加合物的几何形状表明,主体位于客体腔之外。

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