A Redox-responsive Selenium-containing Pillar[5]arene-based Macrocyclic Amphiphile: Synthesis, Controllable Self-assembly in Water, and Application in Controlled Release
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The first selenium-containing pillar[5]arene-based macrocyclic amphiphile was synthesized. This amphiphile self-assembled in water to form vesicles with redox responsiveness. Furthermore, these pillar[5]arene-based vesicles were used in the controlled release of small molecules with DOX as the model compound.
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Shi X, Tian Y, Zhai S, Liu Y, Chu S, Xiong Z Front Chem. 2023; 11:1115440.
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Yang X, Xing X, Li J, Liu Y, Wang N, Yu X RSC Adv. 2022; 9(11):6003-6010.
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Liu L, Zhou Q, He Q, Duan W, Huang Y Front Chem. 2021; 9:661143.
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Sun Y, Davis E Nanomaterials (Basel). 2021; 11(3).
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