凝聚
细胞内
药物输送
化学
生物物理学
热稳定性
药品
溶解
胞饮病
相变
光热治疗
亚稳态
纳米技术
相(物质)
过渡(遗传学)
毒品携带者
肽
细胞穿透肽
纳米凝胶
色谱中的热响应聚合物
靶向给药
肿瘤微环境
纳米囊
纳米颗粒
作者
Guobo Chen,Yifei Xu,Kun Dai,Meixin Wang,Qingming Ma,Chuanliang Feng,Yage Zhang,Yang Song
出处
期刊:ACS Nano
[American Chemical Society]
日期:2026-06-18
卷期号:20 (25): 18545-18556
标识
DOI:10.1021/acsnano.6c08094
摘要
Biological condensates formed via liquid–liquid phase separation (LLPS) have inspired the development of droplet-based vehicles for intracellular drug delivery. However, the inherent metastability impedes precise phase control for responsive drug release under pathological conditions. To address this challenge, we engineered peptide coacervates with thermoreversible disorder-to-order transition by incorporating the low-complexity aromatic-rich kinked segments (LARKS) as a phase modulator. Interestingly, loading small molecules (Nile Red, FITC, Rhodamine B) into the coacervates at body temperature (37 °C) triggers the formation of liquid-crystalline shells, thereby enhancing the thermostability of coacervates without sacrificing their liquid nature. In contrast, elevated acidity and glutathione (GSH) levels, characteristics of the tumor microenvironment (TME), trigger a reverse order-to-disorder transition and dissolution of coacervates for on-demand drug release. Using erastin as a model drug, we demonstrate that erastin-loaded coacervates are efficiently internalized into malignant melanoma cells via caveolin-mediated endocytosis. Upon GSH-triggered dissolution of coacervates, erastin is released into the cytosol, inducing ferroptosis more effectively than free erastin. This work establishes a gel-free, droplet-based delivery system that leverages reversible disorder-to-order transitions for TME-responsive intracellular drug delivery.
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