凝聚
螺吡喃
化学
模板
纳米技术
超分子化学
肽
光电开关
微型反应器
原细胞
自组装
生物物理学
组合化学
四苯乙烯
人工细胞
纳米反应器
静电学
光热治疗
分子开关
材料科学
静电
相(物质)
设计要素和原则
放松(心理学)
级联
调制(音乐)
纳米制造
作者
Yifan Zheng,Yingjie Liu,Hanbo Xu,Guodong Wang,Shuang Zhang,Yi Sun,Yue Yuan,Kohei Sato,Chuang Li
摘要
Peptide coacervates formed via liquid-liquid phase separation (LLPS) have emerged as versatile cell-like compartments for protocell studies and spatially confined catalysis. However, achieving remote, noninvasive modulation of their assembly‒disassembly lifecycle remains a key challenge. Here, we report a supramolecular design that enables light- and pH-gated reversible coacervation of peptides through non-covalent integration of spiropyran photoswitches. The mechanism relies on photoisomerization-induced charge shift in spiropyran, which consequently modulates interpeptide electrostatic interactions to drive coacervate formation. Dissociation occurs reversibly via thermal relaxation upon the cessation of light, a process further regulated by pH, thereby enabling distinct on-demand on- and off-coacervation regimes. We validate this principle through systematic structural variations of both components, establishing a direct link between molecular design and phase behavior. Exploiting their reversible sequestration capability, we demonstrate that these coacervates serve as efficient light‑ and pH-activated microreactors with OR logic gate functions that are capable of accelerating cascade reactions under dilute conditions and as dynamic reusable templates with cascaded OR-AND logic gate functions for recyclable synthesis of nanogels with tunable dimensions. This work establishes a versatile approach for dual-mode regulation of peptide coacervates, opening avenues for the development of photo- and pH-responsive microreactors and adaptive templates for material synthesis.
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