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Self-assembled orthoester cryptands: orthoester scope post-functionalization kinetic locking and tunable degradation kinetics

机译:自组装的原酸酯基团:原酸酯范围后功能化动力学锁定和可调降解动力学

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摘要

Dynamic adaptability and biodegradability are key features of functional, 21st century host–guest systems. We have recently discovered a class of tripodal supramolecular hosts, in which two orthoesters act as constitutionally dynamic bridgeheads. Having previously demonstrated the adaptive nature of these hosts, we now report the synthesis and characterization – including eight solid state structures – of a diverse set of orthoester cages, which provides evidence for the broad scope of this new host class. With the same set of compounds, we demonstrated that the rates of orthoester exchange and hydrolysis can be tuned over a remarkably wide range, from rapid hydrolysis at pH 8 to nearly inert at pH 1, and that the Taft parameter of the orthoester substituent allows an adequate prediction of the reaction kinetics. Moreover, the synthesis of an alkyne-capped cryptand enabled the post-functionalization of orthoester cryptands by Sonogashira and CuAAC “click” reactions. The methylation of the resulting triazole furnished a cryptate that was kinetically inert towards orthoester exchange and hydrolysis at pH > 1, which is equivalent to the “turnoff” of constitutionally dynamic imines by means of reduction. These findings indicate that orthoester cages may be more broadly useful than anticipated, e.g. as drug delivery agents with precisely tunable biodegradability or, thanks to the kinetic locking strategy, as ion sensors.
机译:动态适应性和生物降解性是21世纪功能性主机系统的关键特征。我们最近发现了一类三脚架超分子宿主,其中两个原酸酯充当动态的桥头堡。先前已经证明了这些宿主的适应性后,我们现在报告各种原酸酯笼的合成和表征-包括八个固态结构-为这种新型宿主种类的广泛应用提供了证据。使用同一组化合物,我们证明原酸酯的交换和水解速率可以在很宽的范围内调节,从pH值为8的快速水解到pH值为1几乎是惰性的,并且原酸酯取代基的Taft参数允许充分预测反应动力学。此外,炔烃封端的配体的合成使得Sonogashira和CuAAC“喀哒”反应能够对原酸酯配体进行后功能化。所得三唑的甲基化提供了一种在pH> 1时对原酸酯交换和水解具有动力学惰性的隐窝状结构,这相当于通过还原使“动态”亚胺“关闭”。这些发现表明原酸酯笼可能比预期的具有更广泛的用途,例如。作为具有精确可调的生物降解性的药物输送剂,或者由于采用了动力学锁定策略,可以用作离子传感器。

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