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◆ Journal of the American Chemical Society2026-05-12· Chemistry

Ligand-Triggered Topology Switching Converts Transient Recognition into Durable Nanofibrillar Anchoring

Jun Liao, H LIU, Nana Li, Lidong Gong, Yi-Xiang Wang, Yijuan Wu, Yicheng Pu, Wenxiu He, Mingle Li, Xiaojun Peng, Zhiqiang Lin

原始摘要(英文原文)· Original abstract
Converting transient molecular recognition into persistent interfacial architectures under nonequilibrium conditions remains a fundamental challenge in supramolecular chemistry. Here, we report a ligand-triggered topology-switching strategy that overcomes hemodynamic washout by coupling receptor engagement with an in situ phase transition. Rationalized as a kinetically trapped metastable assembly, our system circulates as discrete nanospheres but executes a cooperative topological switch into an entangled nanofibrillar network upon specific integrin recognition. This ligand-induced fibrillation shifts the assembly from a mobile to an adhesive state, transforming short-lived binding events into durable interfacial retention. Using thrombosis as a stringent model, we demonstrate that this mechanism enables site-specific anchoring and gated bioactivity, effectively restoring vascular homeostasis. These findings establish ligand-triggered topology switching as a general chemical paradigm for translating transient biological interactions into robust functional materials.
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Ligand-Triggered Topology Switching Converts Transient Recognition into Durable Nanofibrillar Anchoring — 科研速览 Science Skim