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Bioinspired nanovalves with selective permeability and pH sensitivity

机译:Bioinspired nanovalves选择性渗透和pH敏感性

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摘要

Biological systems with controlled permeability and release functionality, which are among the successful examples of living beings to survive in evolution, have attracted intensive investigation and have been mimicked due to their broad spectrum of applications. We present in this work, for the first time, an example of nuclear pore complexes (NPCs)-inspired controlled release system that exhibits on-demand release of angstrom-sized molecules. We do so in a cost-effective way by stabilizing porous cobalt basic carbonates as nanovalves and realizing pH-sensitive release of entrapped subnano cargo. The proof-of-concept work also consists of the establishment of two mathematical models to explain the selective permeability of the nanovalves. Finally, gram-sized (or larger) quantities of the bio-inspired controlled release system can be synthesized through a scaling-up strategy, which opens up opportunities for controlled release of functional molecules in wider practical applications.
机译:生物系统与控制渗透率是和发布功能成功的例子生物生存在进化过程中,吸引了密集调查,由于他们的模仿广泛的应用。这项工作,第一次的一个例子核孔复合体(npc)发布控制释放系统,展品按需释放angstrom-sized分子。通过稳定多孔钴具有成本效益的方式基本的碳酸盐nanovalves和实现pH-sensitive裹入subnano释放货物。概念验证工作也包括两个数学模型的建立解释的选择性渗透nanovalves。大量的仿生控制释放系统可以通过扩大合成战略,打开了机会控制释放的功能分子广泛的实际应用。

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