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Effect of pH and counterions on the encapsulation properties of xenon in water-soluble cryptophanes

机译:pH和抗衡离子对氙在水溶性隐色子中包封性能的影响

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摘要

In the ~(129)XeNMR-based biosensing approach in which the hyperpolarized noble gas is transported to biological receptors for a sensitive molecular imaging, cryptophanes are excellent xenon host systems. However to avoid formation of self-organized systems, these hydrophobic cage molecules can be rendered water soluble by introduction of ionic groups. We show that the sensitivity of xenon to its local environment and the presence of these ionic functions can lead to interesting properties. For a first water-soluble cryptophane derivative, we show that a precise monitoring of the local pH can be performed. For a second cryptophane, the presence of ionic groups close to the cryptophane cavity modifies the xenon binding constant and inout exchange rate. The latter allows the tuning of physical properties of xenoncryptophane interactions without resorting to a change of the cavity size. These results open new perspectives on the influence of chemical modifications of cryptophanes for optimizing the biosensor properties.
机译:在基于〜(129)XeNMR的生物传感方法中,超极化的稀有气体被传输到生物受体以进行敏感的分子成像,隐色氨酸是出色的氙气宿主系统。然而,为了避免形成自组织系统,可以通过引入离子基团使这些疏水性笼状分子水溶性。我们表明氙对其局部环境的敏感性以及这些离子功能的存在会导致有趣的性质。对于第一种水溶性隐色氨酸衍生物,我们表明可以对局部pH值进行精确监控。对于第二个隐体,接近隐体腔的离子基团的存在改变了氙的结合常数和内向交换速率。后者允许在不诉诸腔尺寸改变的情​​况下调整异戊二烯相互作用的物理性质。这些结果为密码子的化学修饰对优化生物传感器性能的影响开辟了新的视角。

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