CEA, iBiTec-S/SCBM, LabEx LERMIT, F-91191 Gif-sur-Yvette, France.
Org Lett. 2013 Jun 7;15(11):2866-8. doi: 10.1021/ol4012019. Epub 2013 May 24.
The development of optimized xenon host systems is of crucial importance for the success of molecular imaging using hyperpolarized (129)Xe MRI. Cryptophane-111 is a promising candidate because of its encapsulation properties. The synthesis of cryptophane-111-based biosensors requires both water-solubilizing and chemically activatable groups. An expeditious synthesis of a water-soluble and functionalizable cryptophane-111 is described.
优化氙气主体系统的开发对于使用超极化(129)Xe MRI 进行分子成像的成功至关重要。隐笼烷-111 因其封装特性而成为很有前途的候选者。基于隐笼烷-111 的生物传感器的合成需要既具有水溶性又具有化学可活化性的基团。本文描述了一种水溶性和可功能化的隐笼烷-111 的快速合成方法。