Su Bo, Chi Teng, Ye Zhou, Xiang Yuanhui, Dong Ping, Liu Dongping, Addonizio Christopher J, Webber Matthew J
Department of Chemical & Biomolecular Engineering, University of Notre Dame, 46556, Notre Dame, IN, USA.
Angew Chem Int Ed Engl. 2023 Mar 6;62(11):e202216537. doi: 10.1002/anie.202216537. Epub 2023 Jan 24.
The transient self-assembly of molecules under the direction of a consumable fuel source is fundamental to biological processes such as cellular organization and motility. Such biomolecular assemblies exist in an out-of-equilibrium state, requiring continuous consumption of high energy molecules. At the same time, the creation of bioinspired supramolecular hydrogels has traditionally focused on associations occurring at the thermodynamic equilibrium state. Here, hydrogels are prepared from cucurbit[7]uril host-guest supramolecular interactions through transient physical crosslinking driven by the consumption of a reactive chemical fuel. Upon action from this fuel, the affinity and dynamics of CB[7]-guest recognition are altered. In this way, the lifetime of transient hydrogel formation and the dynamic modulus obtained are governed by fuel consumption, rather than being directed by equilibrium complex formation.
在可消耗燃料源的引导下分子的瞬时自组装对于诸如细胞组织和运动等生物过程至关重要。此类生物分子组装体处于非平衡状态,需要持续消耗高能分子。与此同时,传统上受生物启发的超分子水凝胶的制备侧重于在热力学平衡状态下发生的缔合。在此,通过消耗反应性化学燃料驱动的瞬时物理交联,由葫芦[7]脲主客体超分子相互作用制备水凝胶。在这种燃料的作用下,CB[7] - 客体识别的亲和力和动力学发生改变。通过这种方式,瞬时水凝胶形成的寿命和所获得的动态模量由燃料消耗决定,而非由平衡复合物形成所引导。