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首页> 外文期刊>Chemical science >Self-assembled orthoester cryptands: orthoester scope, post-functionalization, kinetic locking and tunable degradation kinetics
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Self-assembled orthoester cryptands: orthoester scope, post-functionalization, kinetic locking and tunable degradation kinetics

机译:自组装的正交射门隐藏和:Orthoester范围,后功能化,动力学锁定和可调降解动力学

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Dynamic adaptability and biodegradability are key features of functional, 21 ~(st) 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功能的主要特征,21〜(ST)世纪的主机系统。我们最近发现了一类三码型超分子宿主,其中两个正交者充当宪法动态的桥头。先前展示了这些宿主的适应性,我们现在报告了综合和表征 - 包括八个固态结构 - 各种套房的套件,这为这一新主机课程的广泛范围提供了证据。用相同的化合物组,我们证明了正交交换和水解的速率可以在非常宽的范围内调节,从pH8的快速水解在pH1 1上几乎惰性,并且脱烯酯取代基的曲波参数允许足够的反应动力学预测。此外,alkyne-papped cratpedand的合成使Sonogashira和Cuaac“点击”反应使Orthoester Cryptands的后官能化。所得三唑的甲基化提供的粘附素,其在pH> 1的正交交换和水解中是动力学惰性的,这相当于通过还原通过拟合动态亚胺的“岔路元”。这些调查结果表明,俄勒斯笼笼可能比预期更广泛地有用,例如预期。作为药物递送剂,具有精确可调的生物降解性,或者由于动力学锁定策略,作为离子传感器。

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